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MBPP+

Official shard eval

MBPP+ randomized eval shards from evalplus/mbppplus:test. Question text lives in S3; Postgres stores only shard metadata and results.

Source
Category: CodingEval type: Shard evalQuestions: 378Shards: 13Runs: 12

Dry-run first:

lmx eval shard mbpp-plus --base-url http://localhost:8000 --questions 191 --dry-run

Then submit with a real model and hardware profile:

lmx eval shard mbpp-plus --base-url http://localhost:8000 --questions 191 --model <hfId> --hardware hardware.json --submit

Scores are pooled by unique question_id; the leaderboard is ranked by Wilson 95% lower bound.

Leaderboard

Qwen3.6-27B-GGUFQ4_K_XL · GGUFunknown protocol · unknown agent
unsloth/Qwen3.6-27B-GGUF · 1 run · 1/13 shards · harness-scoped
82.0%
95% CI 76.186.7%
164/200 correct · 52.9% coverage
2
Qwopus3.6-27B-Coder-MTP-GGUFQ5_K_M · ggufunknown protocol · unknown agent
Jackrong/Qwopus3.6-27B-Coder-MTP-GGUF · 1 run · 1/13 shards · harness-scoped
78.6%
95% CI 74.282.4%
297/378 correct · 100.0% coverage
3
Qwen3.5-27B-Uncensored-HauhauCS-AggressiveQ4_K_M · GGUFunknown protocol · unknown agent
HauhauCS/Qwen3.5-27B-Uncensored-HauhauCS-Aggressive · 1 run · 1/13 shards · harness-scoped
80.0%
95% CI 73.985.0%
160/200 correct · 52.9% coverage
4
Qwen3.5-27B-GGUFQ4_K_XL · GGUFunknown protocol · unknown agent
unsloth/Qwen3.5-27B-GGUF · 1 run · 1/13 shards · harness-scoped
79.5%
95% CI 73.484.5%
159/200 correct · 52.9% coverage
5
gemma-4-26B-A4B-it-GGUFQ4_K_XL · GGUFunknown protocol · unknown agent
unsloth/gemma-4-26B-A4B-it-GGUF · 1 run · 1/13 shards · harness-scoped
79.5%
95% CI 73.484.5%
159/200 correct · 52.9% coverage
6
Qwen3.6-35B-A3B-GGUFQ4_K_XL · GGUFunknown protocol · unknown agent
unsloth/Qwen3.6-35B-A3B-GGUF · 1 run · 1/13 shards · harness-scoped
81.0%
95% CI 73.087.1%
94/116 correct · 30.7% coverage
7
gemma-4-31B-it-GGUFQ4_K_XL · GGUFunknown protocol · unknown agent
unsloth/gemma-4-31B-it-GGUF · 1 run · 1/13 shards · harness-scoped
78.5%
95% CI 72.383.6%
157/200 correct · 52.9% coverage
8
Qwen3.6-35B-A3B-Uncensored-HauhauCS-AggressiveQ2_K_P · GGUFunknown protocol · unknown agent
HauhauCS/Qwen3.6-35B-A3B-Uncensored-HauhauCS-Aggressive · 1 run · 1/13 shards · harness-scoped
77.6%
95% CI 69.284.2%
90/116 correct · 30.7% coverage
9
Qwen3.6-35B-A3B-GGUFQ2_K_XL · GGUFunknown protocol · unknown agent
unsloth/Qwen3.6-35B-A3B-GGUF · 1 run · 1/13 shards · harness-scoped
76.7%
95% CI 68.383.5%
89/116 correct · 30.7% coverage
10
unsloth/gemma-4-26B-A4B-it-qat-GGUF · 1 run · 1/13 shards · harness-scoped
76.0%
95% CI 66.883.3%
76/100 correct · 26.5% coverage
11
gemma-4-12b-it-GGUFQ8_K_XL · gguf
unsloth/gemma-4-12b-it-GGUF · 1 run · 1/13 shards · harness-scoped
74.0%
95% CI 64.681.6%
74/100 correct · 26.5% coverage
12
Qwen3.6-35B-A3B-Uncensored-HauhauCS-AggressiveQ4_K_M · GGUFunknown protocol · unknown agent
HauhauCS/Qwen3.6-35B-A3B-Uncensored-HauhauCS-Aggressive · 1 run · 1/13 shards · harness-scoped
73.3%
95% CI 64.680.5%
85/116 correct · 30.7% coverage

Stability— historical rerun transparency

Leaderboard rank uses the canonical latest approved answer per question_id. These metrics include historical submissions too, so reruns and changed answers are visible but do not drive rank.

Qwen3.6-27B-GGUFQ4_K_XL · GGUFunknown protocol · unknown agent
1 historical run · 200 unique questions
Canonical
82.0%
Row avg
82.0%
Run avg
82.0%
Repeated
0
Changed
0
Qwopus3.6-27B-Coder-MTP-GGUFQ5_K_M · ggufunknown protocol · unknown agent
1 historical run · 378 unique questions
Canonical
78.6%
Row avg
78.6%
Run avg
78.6%
Repeated
0
Changed
0
Qwen3.5-27B-Uncensored-HauhauCS-AggressiveQ4_K_M · GGUFunknown protocol · unknown agent
1 historical run · 200 unique questions
Canonical
80.0%
Row avg
80.0%
Run avg
80.0%
Repeated
0
Changed
0
Qwen3.5-27B-GGUFQ4_K_XL · GGUFunknown protocol · unknown agent
1 historical run · 200 unique questions
Canonical
79.5%
Row avg
79.5%
Run avg
79.5%
Repeated
0
Changed
0
gemma-4-26B-A4B-it-GGUFQ4_K_XL · GGUFunknown protocol · unknown agent
1 historical run · 200 unique questions
Canonical
79.5%
Row avg
79.5%
Run avg
79.5%
Repeated
0
Changed
0
Qwen3.6-35B-A3B-GGUFQ4_K_XL · GGUFunknown protocol · unknown agent
1 historical run · 116 unique questions
Canonical
81.0%
Row avg
81.0%
Run avg
81.0%
Repeated
0
Changed
0
gemma-4-31B-it-GGUFQ4_K_XL · GGUFunknown protocol · unknown agent
1 historical run · 200 unique questions
Canonical
78.5%
Row avg
78.5%
Run avg
78.5%
Repeated
0
Changed
0
Qwen3.6-35B-A3B-Uncensored-HauhauCS-AggressiveQ2_K_P · GGUFunknown protocol · unknown agent
1 historical run · 116 unique questions
Canonical
77.6%
Row avg
77.6%
Run avg
77.6%
Repeated
0
Changed
0
Qwen3.6-35B-A3B-GGUFQ2_K_XL · GGUFunknown protocol · unknown agent
1 historical run · 116 unique questions
Canonical
76.7%
Row avg
76.7%
Run avg
76.7%
Repeated
0
Changed
0
0 historical runs · 100 unique questions
Canonical
76.0%
Row avg
Run avg
Repeated
0
Changed
0
gemma-4-12b-it-GGUFQ8_K_XL · gguf
0 historical runs · 100 unique questions
Canonical
74.0%
Row avg
Run avg
Repeated
0
Changed
0
Qwen3.6-35B-A3B-Uncensored-HauhauCS-AggressiveQ4_K_M · GGUFunknown protocol · unknown agent
1 historical run · 116 unique questions
Canonical
73.3%
Row avg
73.3%
Run avg
73.3%
Repeated
0
Changed
0

Runs— sample traces per run

Qwen3.6-27B-GGUFQ4_K_XL · GGUFunknown protocol · unknown agent
by messerli-wallace · shard 11 · 7/24/2026, 4:59:44 PM · cmrz6qy5d06mgo401809kfolq
82.0%
164/200 correct · 5 correct traces · 5 incorrect traces
Correct samples
sample 2 · mbpp-plus:628pass · 100.0% · 1462ms · d05e9dac5a9a
Question
Write a function to replace all spaces in the given string with '%20'.

Your code should pass these tests:
assert replace_spaces("My Name is Dawood") == 'My%20Name%20is%20Dawood'
assert replace_spaces("I am a Programmer") == 'I%20am%20a%20Programmer'
assert replace_spaces("I love Coding") == 'I%20love%20Coding'
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to replace all spaces in the given string with '%20'.

Your code should pass these tests:
assert replace_spaces("My Name is Dawood") == 'My%20Name%20is%20Dawood'
assert replace_spaces("I am a Programmer") == 'I%20am%20a%20Programmer'
assert replace_spaces("I love Coding") == 'I%20love%20Coding'
Agent trace
def replace_spaces(s):
    return s.replace(' ', '%20')
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 3 · mbpp-plus:808pass · 100.0% · 1078ms · bb552c7ee7b4
Question
Write a function to check if the given tuples contain the k or not.

Your code should pass these tests:
assert check_K((10, 4, 5, 6, 8), 6) == True
assert check_K((1, 2, 3, 4, 5, 6), 7) == False
assert check_K((7, 8, 9, 44, 11, 12), 11) == True
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to check if the given tuples contain the k or not.

Your code should pass these tests:
assert check_K((10, 4, 5, 6, 8), 6) == True
assert check_K((1, 2, 3, 4, 5, 6), 7) == False
assert check_K((7, 8, 9, 44, 11, 12), 11) == True
Agent trace
def check_K(tup, k):
    return k in tup
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 4 · mbpp-plus:568pass · 100.0% · 1137ms · c27cd71a7322
Question
Write a function to create a list of N empty dictionaries.

Your code should pass these tests:
assert empty_list(5)==[{},{},{},{},{}]
assert empty_list(6)==[{},{},{},{},{},{}]
assert empty_list(7)==[{},{},{},{},{},{},{}]
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to create a list of N empty dictionaries.

Your code should pass these tests:
assert empty_list(5)==[{},{},{},{},{}]
assert empty_list(6)==[{},{},{},{},{},{}]
assert empty_list(7)==[{},{},{},{},{},{},{}]
Agent trace
def empty_list(n):
    return [{} for _ in range(n)]
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 5 · mbpp-plus:79pass · 100.0% · 1128ms · 095e119c8957
Question
Write a python function to check whether the length of the word is odd or not.

Your code should pass these tests:
assert word_len("Hadoop") == False
assert word_len("great") == True
assert word_len("structure") == True
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a python function to check whether the length of the word is odd or not.

Your code should pass these tests:
assert word_len("Hadoop") == False
assert word_len("great") == True
assert word_len("structure") == True
Agent trace
def word_len(word):
    return len(word) % 2 != 0
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 6 · mbpp-plus:422pass · 100.0% · 1452ms · a7f442a6fb1c
Question
Write a python function to find the average of cubes of first n natural numbers.

Your code should pass these tests:
assert find_Average_Of_Cube(2) == 4.5
assert find_Average_Of_Cube(3) == 12
assert find_Average_Of_Cube(1) == 1
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a python function to find the average of cubes of first n natural numbers.

Your code should pass these tests:
assert find_Average_Of_Cube(2) == 4.5
assert find_Average_Of_Cube(3) == 12
assert find_Average_Of_Cube(1) == 1
Agent trace
def find_Average_Of_Cube(n):
    total = sum(i ** 3 for i in range(1, n + 1))
    return total / n
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
Incorrect samples
sample 1 · mbpp-plus:603fail · 0.0% · 38471ms · 710041e17726
Question
Write a function to get all lucid numbers smaller than or equal to a given integer.

Your code should pass these tests:
assert get_ludic(10) == [1, 2, 3, 5, 7]
assert get_ludic(25) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25]
assert get_ludic(45) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43]
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to get all lucid numbers smaller than or equal to a given integer.

Your code should pass these tests:
assert get_ludic(10) == [1, 2, 3, 5, 7]
assert get_ludic(25) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25]
assert get_ludic(45) == [1, 2, 3, 5, 7, 11, 13, 17, 23, 25, 29, 37, 41, 43]
Agent trace
def get_ludic(n):
    ludic = list(range(1, n + 1))
    i = 0
    while i < len(ludic) and ludic[i] <= n:
        p = ludic[i]
        if p > n:
            break
        # Remove every p-th element from the remaining list
        # The index to start removing is p-1 (0-indexed) relative to the current list
        # But we need to be careful: the list is shrinking
        # We remove elements at indices p-1, 2p-1, 3p-1, ... relative to the current list state
        # Actually, the standard algorithm:
        # Start with list L = [1, 2, 3, ...]
        # The first element is 1, keep it.
        # The next element is 2, keep it. Then remove every 2nd element starting from index 1 (0-indexed) i.e., 2, 4, 6...
        # Wait, let's trace:
        # L = [1, 2, 3, 4, 5, 6, 7, 8, 9, 10, ...]
        # i=0, p=1. Remove every 1st element starting from index 0? No, that would remove everything.
        # The definition: Start with the list of positive integers. The first number is 1.
        # The next number is 2. Remove every 2nd number from the list (starting from the 2nd position, i.e., index 1).
        # So remove indices 1, 3, 5, ... (0-indexed) from the current list.
        # L becomes [1, 3, 5, 7, 9, 11, ...]
        # The next number is 3. Remove every 3rd number from the remaining list (starting from the 3rd position, i.e., index 2).
        # So remove indices 2, 5, 8, ... from the current list.
        
        # Let's implement this carefully.
        # We iterate through the ludic list. For each ludic number p at index i,
        # we remove elements from the list starting at index p-1 (since p is the value, and we remove every p-th element).
        # However, the list is being modified, so we need to handle indices carefully.
        
        # A simpler approach: use a while loop to remove elements.
        # Start removal index at p-1 (0-indexed).
        # Remove elements at step p.
        
        # But wait, the index i in the outer loop refers to the position in the *current* ludic list.
        # After removals, the list shrinks. We need to continue from the next element.
        
        # Let's restart the logic with a fresh list and proper indexing.
        pass
    
    # Let's rewrite the function properly
    ludic = list(range(1, n + 1))
    idx = 0
    while idx < len(ludic):
        p = ludic[idx]
        if p > n:
            break
        # Remove every p-th element starting from index p-1
        # The elements to remove are at indices: p-1, p-1+p, p-1+2p, ...
        # We need to remove them in reverse order to avoid index shifting issues
        indices_to_remove = []
        j = p - 1
        while j < len(ludic):
            indices_to_remove.append(j)
            j += p
        
        # Remove in reverse order
        for j in reversed(indices_to_remove):
            if j < len(ludic):
                ludic.pop(j)
        
        idx += 1
    
    return [x for x in ludic if x <= n]
Additional reasoning trace
sandbox: passed=false returncode=-24 timed_out=false
Extracted: fail · Gold: pass
sample 18 · mbpp-plus:440fail · 0.0% · 2929ms · a72f989a81dc
Question
Write a function to find the first adverb and their positions in a given sentence.

Your code should pass these tests:
assert find_adverb_position("clearly!! we can see the sky")==(0, 7, 'clearly')
assert find_adverb_position("seriously!! there are many roses")==(0, 9, 'seriously')
assert find_adverb_position("unfortunately!! sita is going to home")==(0, 13, 'unfortunately')
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to find the first adverb and their positions in a given sentence.

Your code should pass these tests:
assert find_adverb_position("clearly!! we can see the sky")==(0, 7, 'clearly')
assert find_adverb_position("seriously!! there are many roses")==(0, 9, 'seriously')
assert find_adverb_position("unfortunately!! sita is going to home")==(0, 13, 'unfortunately')
Agent trace
import nltk
from nltk import pos_tag, word_tokenize

def find_adverb_position(sentence):
    tokens = word_tokenize(sentence)
    tagged = pos_tag(tokens)
    for i, (word, tag) in enumerate(tagged):
        if tag == 'RB':
            start = 0
            for j in range(i):
                start += len(tokens[j]) + 1
            end = start + len(word)
            return (start, end, word)
    return None
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmp7d3f0to_/solution.py", line 1, in <module>
    import nltk
ModuleNotFoundError: No module named 'nltk'
Extracted: fail · Gold: pass
sample 30 · mbpp-plus:435fail · 0.0% · 1071ms · 512ef1abb4e1
Question
Write a python function to find the last digit of a given number.

Your code should pass these tests:
assert last_Digit(123) == 3
assert last_Digit(25) == 5
assert last_Digit(30) == 0
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a python function to find the last digit of a given number.

Your code should pass these tests:
assert last_Digit(123) == 3
assert last_Digit(25) == 5
assert last_Digit(30) == 0
Agent trace
def last_Digit(n):
    return n % 10
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpr7656dex/solution.py", line 30, in <module>
    assertion(last_Digit(*inp), exp, 0)
  File "/tmp/tmpr7656dex/solution.py", line 24, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: 3, exp: 7
Extracted: fail · Gold: pass
sample 40 · mbpp-plus:630fail · 0.0% · 2013ms · acbf12a90456
Question
Write a function to extract all the adjacent coordinates of the given coordinate tuple.

Your code should pass these tests:
assert get_coordinates((3, 4)) == [[2, 3], [2, 4], [2, 5], [3, 3], [3, 4], [3, 5], [4, 3], [4, 4], [4, 5]]
assert get_coordinates((4, 5)) ==[[3, 4], [3, 5], [3, 6], [4, 4], [4, 5], [4, 6], [5, 4], [5, 5], [5, 6]]
assert get_coordinates((5, 6)) == [[4, 5], [4, 6], [4, 7], [5, 5], [5, 6], [5, 7], [6, 5], [6, 6], [6, 7]]
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to extract all the adjacent coordinates of the given coordinate tuple.

Your code should pass these tests:
assert get_coordinates((3, 4)) == [[2, 3], [2, 4], [2, 5], [3, 3], [3, 4], [3, 5], [4, 3], [4, 4], [4, 5]]
assert get_coordinates((4, 5)) ==[[3, 4], [3, 5], [3, 6], [4, 4], [4, 5], [4, 6], [5, 4], [5, 5], [5, 6]]
assert get_coordinates((5, 6)) == [[4, 5], [4, 6], [4, 7], [5, 5], [5, 6], [5, 7], [6, 5], [6, 6], [6, 7]]
Agent trace
def get_coordinates(coord):
    x, y = coord
    result = []
    for i in range(x - 1, x + 2):
        for j in range(y - 1, y + 2):
            result.append([i, j])
    return result
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpgppmsngs/solution.py", line 45, in <module>
    assertion(get_coordinates(*inp), ref_func(*inp), 0)
              ^^^^^^^^^^^^^^^^^^^^^
  File "/tmp/tmpgppmsngs/solution.py", line 2, in get_coordinates
    x, y = coord
    ^^^^
ValueError: too many values to unpack (expected 2)
Extracted: fail · Gold: pass
sample 55 · mbpp-plus:259fail · 0.0% · 1681ms · 74d62ae2881e
Question
Write a function to maximize the given two tuples.

Your code should pass these tests:
assert maximize_elements(((1, 3), (4, 5), (2, 9), (1, 10)), ((6, 7), (3, 9), (1, 1), (7, 3))) == ((6, 7), (4, 9), (2, 9), (7, 10))
assert maximize_elements(((2, 4), (5, 6), (3, 10), (2, 11)), ((7, 8), (4, 10), (2, 2), (8, 4))) == ((7, 8), (5, 10), (3, 10), (8, 11))
assert maximize_elements(((3, 5), (6, 7), (4, 11), (3, 12)), ((8, 9), (5, 11), (3, 3), (9, 5))) == ((8, 9), (6, 11), (4, 11), (9, 12))
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to maximize the given two tuples.

Your code should pass these tests:
assert maximize_elements(((1, 3), (4, 5), (2, 9), (1, 10)), ((6, 7), (3, 9), (1, 1), (7, 3))) == ((6, 7), (4, 9), (2, 9), (7, 10))
assert maximize_elements(((2, 4), (5, 6), (3, 10), (2, 11)), ((7, 8), (4, 10), (2, 2), (8, 4))) == ((7, 8), (5, 10), (3, 10), (8, 11))
assert maximize_elements(((3, 5), (6, 7), (4, 11), (3, 12)), ((8, 9), (5, 11), (3, 3), (9, 5))) == ((8, 9), (6, 11), (4, 11), (9, 12))
Agent trace
def maximize_elements(tup1, tup2):
    return tuple(max(a, b) for a, b in zip(tup1, tup2))
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmp0rwjhx3g/solution.py", line 30, in <module>
    assertion(maximize_elements(*inp), exp, 0)
  File "/tmp/tmp0rwjhx3g/solution.py", line 24, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: ((6, 7), (4, 5), (2, 9), (7, 3)), exp: ((6, 7), (4, 9), (2, 9), (7, 10))
Extracted: fail · Gold: pass
Qwen3.5-27B-Uncensored-HauhauCS-AggressiveQ4_K_M · GGUFunknown protocol · unknown agent
by messerli-wallace · shard 10 · 7/24/2026, 4:14:25 PM · cmrz54okz06aro4011o65cd37
80.0%
160/200 correct · 5 correct traces · 5 incorrect traces
Correct samples
sample 1 · mbpp-plus:479pass · 100.0% · 2609ms · 714a5f5995b2
Question
Write a python function to find the first digit of a given number.

Your code should pass these tests:
assert first_Digit(123) == 1
assert first_Digit(456) == 4
assert first_Digit(12) == 1
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a python function to find the first digit of a given number.

Your code should pass these tests:
assert first_Digit(123) == 1
assert first_Digit(456) == 4
assert first_Digit(12) == 1
Agent trace
def first_Digit(n):
    n = abs(n)
    while n >= 10:
        n //= 10
    return n
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 2 · mbpp-plus:283pass · 100.0% · 2710ms · f55412204f81
Question
Write a python function takes in an integer and check whether the frequency of each digit in the integer is less than or equal to the digit itself.

Your code should pass these tests:
assert validate(1234) == True
assert validate(51241) == False
assert validate(321) == True
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a python function takes in an integer and check whether the frequency of each digit in the integer is less than or equal to the digit itself.

Your code should pass these tests:
assert validate(1234) == True
assert validate(51241) == False
assert validate(321) == True
Agent trace
def validate(n):
    s = str(abs(n))
    from collections import Counter
    counts = Counter(s)
    for digit, count in counts.items():
        if count > int(digit):
            return False
    return True
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 3 · mbpp-plus:90pass · 100.0% · 1894ms · 2d11c5bbe2d8
Question
Write a python function to find the length of the longest word.

Your code should pass these tests:
assert len_log(["python","PHP","bigdata"]) == 7
assert len_log(["a","ab","abc"]) == 3
assert len_log(["small","big","tall"]) == 5
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a python function to find the length of the longest word.

Your code should pass these tests:
assert len_log(["python","PHP","bigdata"]) == 7
assert len_log(["a","ab","abc"]) == 3
assert len_log(["small","big","tall"]) == 5
Agent trace
def len_log(words):
    if not words:
        return 0
    return max(len(word) for word in words)
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 4 · mbpp-plus:769pass · 100.0% · 2455ms · ad7f817709cd
Question
Write a python function to get the difference between two lists.

Your code should pass these tests:
assert (Diff([10, 15, 20, 25, 30, 35, 40], [25, 40, 35])) == [10, 20, 30, 15]
assert (Diff([1,2,3,4,5], [6,7,1])) == [2,3,4,5,6,7]
assert (Diff([1,2,3], [6,7,1])) == [2,3,6,7]
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a python function to get the difference between two lists.

Your code should pass these tests:
assert (Diff([10, 15, 20, 25, 30, 35, 40], [25, 40, 35])) == [10, 20, 30, 15]
assert (Diff([1,2,3,4,5], [6,7,1])) == [2,3,4,5,6,7]
assert (Diff([1,2,3], [6,7,1])) == [2,3,6,7]
Agent trace
def Diff(list1, list2):
    set1 = set(list1)
    set2 = set(list2)
    diff = list(set1.symmetric_difference(set2))
    return diff
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 6 · mbpp-plus:588pass · 100.0% · 1483ms · 8f7d18fb7535
Question
Write a python function to find the difference between largest and smallest value in a given list.

Your code should pass these tests:
assert big_diff([1,2,3,4]) == 3
assert big_diff([4,5,12]) == 8
assert big_diff([9,2,3]) == 7
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a python function to find the difference between largest and smallest value in a given list.

Your code should pass these tests:
assert big_diff([1,2,3,4]) == 3
assert big_diff([4,5,12]) == 8
assert big_diff([9,2,3]) == 7
Agent trace
def big_diff(nums):
    return max(nums) - min(nums)
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
Incorrect samples
sample 5 · mbpp-plus:74fail · 0.0% · 5235ms · 9b89b4f51927
Question
Write a function to check whether it follows the sequence given in the patterns array.

Your code should pass these tests:
assert is_samepatterns(["red","green","green"], ["a", "b", "b"])==True
assert is_samepatterns(["red","green","greenn"], ["a","b","b"])==False
assert is_samepatterns(["red","green","greenn"], ["a","b"])==False
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to check whether it follows the sequence given in the patterns array.

Your code should pass these tests:
assert is_samepatterns(["red","green","green"], ["a", "b", "b"])==True
assert is_samepatterns(["red","green","greenn"], ["a","b","b"])==False
assert is_samepatterns(["red","green","greenn"], ["a","b"])==False
Agent trace
def is_samepatterns(words, patterns):
    if len(words) != len(patterns):
        return False
    
    word_to_pattern = {}
    pattern_to_word = {}
    
    for word, pattern in zip(words, patterns):
        if word in word_to_pattern:
            if word_to_pattern[word] != pattern:
                return False
        else:
            word_to_pattern[word] = pattern
            
        if pattern in pattern_to_word:
            if pattern_to_word[pattern] != word:
                return False
        else:
            pattern_to_word[pattern] = word
            
    return True
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpnn1g6zaz/solution.py", line 49, in <module>
    assertion(is_samepatterns(*inp), exp, 0)
  File "/tmp/tmpnn1g6zaz/solution.py", line 43, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: False, exp: True
Extracted: fail · Gold: pass
sample 10 · mbpp-plus:622fail · 0.0% · 8839ms · 32857039a506
Question
Write a function to find the median of two sorted lists of same size.

Your code should pass these tests:
assert get_median([1, 12, 15, 26, 38], [2, 13, 17, 30, 45], 5) == 16.0
assert get_median([2, 4, 8, 9], [7, 13, 19, 28], 4) == 8.5
assert get_median([3, 6, 14, 23, 36, 42], [2, 18, 27, 39, 49, 55], 6) == 25.0
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to find the median of two sorted lists of same size.

Your code should pass these tests:
assert get_median([1, 12, 15, 26, 38], [2, 13, 17, 30, 45], 5) == 16.0
assert get_median([2, 4, 8, 9], [7, 13, 19, 28], 4) == 8.5
assert get_median([3, 6, 14, 23, 36, 42], [2, 18, 27, 39, 49, 55], 6) == 25.0
Agent trace
def get_median(arr1, arr2, n):
    if n == 0:
        return 0.0
    
    # Merge the two sorted lists
    merged = []
    i = j = 0
    while i < n and j < n:
        if arr1[i] < arr2[j]:
            merged.append(arr1[i])
            i += 1
        else:
            merged.append(arr2[j])
            j += 1
    
    # Append remaining elements
    while i < n:
        merged.append(arr1[i])
        i += 1
    while j < n:
        merged.append(arr2[j])
        j += 1
    
    # Calculate median
    total_len = 2 * n
    if total_len % 2 == 1:
        return float(merged[total_len // 2])
    else:
        mid1 = merged[total_len // 2 - 1]
        mid2 = merged[total_len // 2]
        return (mid1 + mid2) / 2.0
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpdekwy5lj/solution.py", line 59, in <module>
    assertion(get_median(*inp), exp, 0)
  File "/tmp/tmpdekwy5lj/solution.py", line 51, in assertion
    assert np.allclose(out, exp, rtol=1e-07, atol=atol)
           ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
AssertionError
Extracted: fail · Gold: pass
sample 13 · mbpp-plus:556fail · 0.0% · 3280ms · 26a39e98d591
Question
Write a python function to count the number of pairs whose xor value is odd.

Your code should pass these tests:
assert find_Odd_Pair([5,4,7,2,1],5) == 6
assert find_Odd_Pair([7,2,8,1,0,5,11],7) == 12
assert find_Odd_Pair([1,2,3],3) == 2
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a python function to count the number of pairs whose xor value is odd.

Your code should pass these tests:
assert find_Odd_Pair([5,4,7,2,1],5) == 6
assert find_Odd_Pair([7,2,8,1,0,5,11],7) == 12
assert find_Odd_Pair([1,2,3],3) == 2
Agent trace
def find_Odd_Pair(arr, n):
    odd_count = 0
    even_count = 0
    for num in arr:
        if num % 2 == 1:
            odd_count += 1
        else:
            even_count += 1
    return odd_count * even_count
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpd7u2y7j9/solution.py", line 37, in <module>
    assertion(find_Odd_Pair(*inp), exp, 0)
  File "/tmp/tmpd7u2y7j9/solution.py", line 31, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: 30, exp: 25
Extracted: fail · Gold: pass
sample 21 · mbpp-plus:119fail · 0.0% · 8146ms · 7f1a43025f3b
Question
Write a python function to find the element that appears only once in a sorted array.

Your code should pass these tests:
assert search([1,1,2,2,3]) == 3
assert search([1,1,3,3,4,4,5,5,7,7,8]) == 8
assert search([1,2,2,3,3,4,4]) == 1
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a python function to find the element that appears only once in a sorted array.

Your code should pass these tests:
assert search([1,1,2,2,3]) == 3
assert search([1,1,3,3,4,4,5,5,7,7,8]) == 8
assert search([1,2,2,3,3,4,4]) == 1
Agent trace
def search(arr):
    if not arr:
        return None
    if len(arr) == 1:
        return arr[0]
    if arr[0] != arr[1]:
        return arr[0]
    if arr[-1] != arr[-2]:
        return arr[-1]
    
    left, right = 1, len(arr) - 2
    while left <= right:
        mid = (left + right) // 2
        if arr[mid] != arr[mid - 1] and arr[mid] != arr[mid + 1]:
            return arr[mid]
        if mid % 2 == 0:
            if arr[mid] == arr[mid + 1]:
                left = mid + 1
            else:
                right = mid - 1
        else:
            if arr[mid] == arr[mid - 1]:
                left = mid + 1
            else:
                right = mid - 1
    return None
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpvgaq9sgy/solution.py", line 54, in <module>
    assertion(search(*inp), exp, 0)
  File "/tmp/tmpvgaq9sgy/solution.py", line 48, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: None, exp: 0
Extracted: fail · Gold: pass
sample 23 · mbpp-plus:415fail · 0.0% · 8186ms · f9628f88259b
Question
Write a python function to find a pair with highest product from a given array of integers.

Your code should pass these tests:
assert max_Product([1,2,3,4,7,0,8,4]) == (7,8)
assert max_Product([0,-1,-2,-4,5,0,-6]) == (-4,-6)
assert max_Product([1,2,3]) == (2,3)
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a python function to find a pair with highest product from a given array of integers.

Your code should pass these tests:
assert max_Product([1,2,3,4,7,0,8,4]) == (7,8)
assert max_Product([0,-1,-2,-4,5,0,-6]) == (-4,-6)
assert max_Product([1,2,3]) == (2,3)
Agent trace
def max_Product(arr):
    if len(arr) < 2:
        return None
    
    # Initialize max and second max
    max1 = float('-inf')
    max2 = float('-inf')
    
    # Initialize min and second min (for negative numbers)
    min1 = float('inf')
    min2 = float('inf')
    
    for num in arr:
        # Update max values
        if num > max1:
            max2 = max1
            max1 = num
        elif num > max2:
            max2 = num
        
        # Update min values
        if num < min1:
            min2 = min1
            min1 = num
        elif num < min2:
            min2 = num
    
    # Compare product of two largest positives vs two smallest negatives
    if max1 * max2 > min1 * min2:
        return (max2, max1)
    else:
        return (min1, min2)
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmp8ibld7wh/solution.py", line 60, in <module>
    assertion(max_Product(*inp), exp, 0)
  File "/tmp/tmp8ibld7wh/solution.py", line 54, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: (-6, -4), exp: (-4, -6)
Extracted: fail · Gold: pass
gemma-4-31B-it-GGUFQ4_K_XL · GGUFunknown protocol · unknown agent
by messerli-wallace · shard 9 · 7/24/2026, 3:11:42 PM · cmrz2w0ky05xco401vg7a31c8
78.5%
157/200 correct · 5 correct traces · 5 incorrect traces
Correct samples
sample 1 · mbpp-plus:270pass · 100.0% · 4261ms · 195787b62643
Question
Write a python function to find the sum of even numbers at even positions of a list.

Your code should pass these tests:
assert sum_even_and_even_index([5, 6, 12, 1, 18, 8]) == 30
assert sum_even_and_even_index([3, 20, 17, 9, 2, 10, 18, 13, 6, 18]) == 26
assert sum_even_and_even_index([5, 6, 12, 1]) == 12
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a python function to find the sum of even numbers at even positions of a list.

Your code should pass these tests:
assert sum_even_and_even_index([5, 6, 12, 1, 18, 8]) == 30
assert sum_even_and_even_index([3, 20, 17, 9, 2, 10, 18, 13, 6, 18]) == 26
assert sum_even_and_even_index([5, 6, 12, 1]) == 12
Agent trace
def sum_even_and_even_index(lst):
    total = 0
    for i in range(0, len(lst), 2):
        if lst[i] % 2 == 0:
            total += lst[i]
    return total
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 3 · mbpp-plus:227pass · 100.0% · 2453ms · a29917ca0a9e
Question
Write a function to find minimum of three numbers.

Your code should pass these tests:
assert min_of_three(10,20,0)==0
assert min_of_three(19,15,18)==15
assert min_of_three(-10,-20,-30)==-30
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to find minimum of three numbers.

Your code should pass these tests:
assert min_of_three(10,20,0)==0
assert min_of_three(19,15,18)==15
assert min_of_three(-10,-20,-30)==-30
Agent trace
def min_of_three(a, b, c):
    return min(a, b, c)
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 7 · mbpp-plus:637pass · 100.0% · 2551ms · d83e57e2252e
Question
Write a function to check whether the given amount has no profit and no loss

Your code should pass these tests:
assert noprofit_noloss(1500,1200)==False
assert noprofit_noloss(100,100)==True
assert noprofit_noloss(2000,5000)==False
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to check whether the given amount has no profit and no loss

Your code should pass these tests:
assert noprofit_noloss(1500,1200)==False
assert noprofit_noloss(100,100)==True
assert noprofit_noloss(2000,5000)==False
Agent trace
def noprofit_noloss(cost_price, selling_price):
    return cost_price == selling_price
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 8 · mbpp-plus:762pass · 100.0% · 3666ms · 0e6fd68599d2
Question
Write a function to check whether the given month number contains 30 days or not. Months are given as number from 1 to 12.

Your code should pass these tests:
assert check_monthnumber_number(6)==True
assert check_monthnumber_number(2)==False
assert check_monthnumber_number(12)==False
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to check whether the given month number contains 30 days or not. Months are given as number from 1 to 12.

Your code should pass these tests:
assert check_monthnumber_number(6)==True
assert check_monthnumber_number(2)==False
assert check_monthnumber_number(12)==False
Agent trace
def check_monthnumber_number(month):
    # Months with 30 days are April (4), June (6), September (9), and November (11)
    return month in [4, 6, 9, 11]
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 9 · mbpp-plus:71pass · 100.0% · 6388ms · b18b11c2c869
Question
Write a function to sort a list of elements.

Your code should pass these tests:
assert comb_sort([5, 15, 37, 25, 79]) == [5, 15, 25, 37, 79]
assert comb_sort([41, 32, 15, 19, 22]) == [15, 19, 22, 32, 41]
assert comb_sort([99, 15, 13, 47]) == [13, 15, 47, 99]
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to sort a list of elements.

Your code should pass these tests:
assert comb_sort([5, 15, 37, 25, 79]) == [5, 15, 25, 37, 79]
assert comb_sort([41, 32, 15, 19, 22]) == [15, 19, 22, 32, 41]
assert comb_sort([99, 15, 13, 47]) == [13, 15, 47, 99]
Agent trace
def comb_sort(arr):
    n = len(arr)
    gap = n
    swapped = True
    while gap > 1 or swapped:
        gap = int(gap / 1.3) if gap > 1 else 1
        swapped = False
        for i in range(0, n - gap):
            if arr[i] > arr[i + gap]:
                arr[i], arr[i + gap] = arr[i + gap], arr[i]
                swapped = True
    return arr
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
Incorrect samples
sample 2 · mbpp-plus:771fail · 0.0% · 4761ms · 102084f0725a
Question
Write a function to check if the given expression is balanced or not. https://www.geeksforgeeks.org/check-for-balanced-parentheses-in-an-expression/

Your code should pass these tests:
assert check_expression("{()}[{}]") == True
assert check_expression("{()}[{]") == False
assert check_expression("{()}[{}][]({})") == True
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to check if the given expression is balanced or not. https://www.geeksforgeeks.org/check-for-balanced-parentheses-in-an-expression/

Your code should pass these tests:
assert check_expression("{()}[{}]") == True
assert check_expression("{()}[{]") == False
assert check_expression("{()}[{}][]({})") == True
Agent trace
def check_expression(expr):
    stack = []
    mapping = {')': '(', '}': '{', ']': '['}
    for char in expr:
        if char in mapping.values():
            stack.append(char)
        elif char in mapping.keys():
            if not stack or stack.pop() != mapping[char]:
                return False
    return not stack
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpaemsia0i/solution.py", line 38, in <module>
    assertion(check_expression(*inp), exp, 0)
  File "/tmp/tmpaemsia0i/solution.py", line 32, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: True, exp: False
Extracted: fail · Gold: pass
sample 4 · mbpp-plus:577fail · 0.0% · 4985ms · 65e33f93cc33
Question
Write a python function to find the last digit in factorial of a given number.

Your code should pass these tests:
assert last_Digit_Factorial(4) == 4
assert last_Digit_Factorial(21) == 0
assert last_Digit_Factorial(30) == 0
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a python function to find the last digit in factorial of a given number.

Your code should pass these tests:
assert last_Digit_Factorial(4) == 4
assert last_Digit_Factorial(21) == 0
assert last_Digit_Factorial(30) == 0
Agent trace
def last_Digit_Factorial(n):
    if n < 0:
        return None
    if n == 0:
        return 1
    if n == 1:
        return 1
    if n == 2:
        return 2
    if n == 3:
        return 6
    if n == 4:
        return 4
    return 0
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpu48j5400/solution.py", line 42, in <module>
    assertion(last_Digit_Factorial(*inp), exp, 0)
  File "/tmp/tmpu48j5400/solution.py", line 34, in assertion
    assert np.allclose(out, exp, rtol=1e-07, atol=atol)
           ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
AssertionError
Extracted: fail · Gold: pass
sample 5 · mbpp-plus:597fail · 0.0% · 8061ms · e36dde26ddc1
Question
Write a function to find kth element from the given two sorted arrays.

Your code should pass these tests:
assert find_kth([2, 3, 6, 7, 9], [1, 4, 8, 10], 5) == 6
assert find_kth([100, 112, 256, 349, 770], [72, 86, 113, 119, 265, 445, 892], 7) == 256
assert find_kth([3, 4, 7, 8, 10], [2, 5, 9, 11], 6) == 8
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to find kth element from the given two sorted arrays.

Your code should pass these tests:
assert find_kth([2, 3, 6, 7, 9], [1, 4, 8, 10], 5) == 6
assert find_kth([100, 112, 256, 349, 770], [72, 86, 113, 119, 265, 445, 892], 7) == 256
assert find_kth([3, 4, 7, 8, 10], [2, 5, 9, 11], 6) == 8
Agent trace
def find_kth(arr1, arr2, k):
    res = []
    i = 0
    j = 0
    while i < len(arr1) and j < len(arr2):
        if arr1[i] < arr2[j]:
            res.append(arr1[i])
            i += 1
        else:
            res.append(arr2[j])
            j += 1
    
    while i < len(arr1):
        res.append(arr1[i])
        i += 1
    while j < len(arr2):
        res.append(arr2[j])
        j += 1
        
    return res[k-1]
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmp1w7yvvc9/solution.py", line 48, in <module>
    assertion(find_kth(*inp), exp, 0)
  File "/tmp/tmp1w7yvvc9/solution.py", line 42, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: False, exp: True
Extracted: fail · Gold: pass
sample 6 · mbpp-plus:297fail · 0.0% · 4363ms · 9713f3854128
Question
Write a function to flatten a given nested list structure.

Your code should pass these tests:
assert flatten_list([0, 10, [20, 30], 40, 50, [60, 70, 80], [90, 100, 110, 120]])==[0, 10, 20, 30, 40, 50, 60, 70, 80, 90, 100, 110, 120]
assert flatten_list([[10, 20], [40], [30, 56, 25], [10, 20], [33], [40]])==[10, 20, 40, 30, 56, 25, 10, 20, 33, 40]
assert flatten_list([[1,2,3], [4,5,6], [10,11,12], [7,8,9]])==[1, 2, 3, 4, 5, 6, 10, 11, 12, 7, 8, 9]
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to flatten a given nested list structure.

Your code should pass these tests:
assert flatten_list([0, 10, [20, 30], 40, 50, [60, 70, 80], [90, 100, 110, 120]])==[0, 10, 20, 30, 40, 50, 60, 70, 80, 90, 100, 110, 120]
assert flatten_list([[10, 20], [40], [30, 56, 25], [10, 20], [33], [40]])==[10, 20, 40, 30, 56, 25, 10, 20, 33, 40]
assert flatten_list([[1,2,3], [4,5,6], [10,11,12], [7,8,9]])==[1, 2, 3, 4, 5, 6, 10, 11, 12, 7, 8, 9]
Agent trace
def flatten_list(nested_list):
    flat_list = []
    for item in nested_list:
        if isinstance(item, list):
            flat_list.extend(item)
        else:
            flat_list.append(item)
    return flat_list
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpp8_4eek3/solution.py", line 36, in <module>
    assertion(flatten_list(*inp), exp, 0)
  File "/tmp/tmpp8_4eek3/solution.py", line 30, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: [[1, 2], [3, 4], [5, 6], [7, 8]], exp: [1, 2, 3, 4, 5, 6, 7, 8]
Extracted: fail · Gold: pass
sample 16 · mbpp-plus:790fail · 0.0% · 3263ms · a7ad13c6a218
Question
Write a python function to check whether every even index contains even numbers of a given list.

Your code should pass these tests:
assert even_position([3,2,1]) == False
assert even_position([1,2,3]) == False
assert even_position([2,1,4]) == True
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a python function to check whether every even index contains even numbers of a given list.

Your code should pass these tests:
assert even_position([3,2,1]) == False
assert even_position([1,2,3]) == False
assert even_position([2,1,4]) == True
Agent trace
def even_position(lst):
    for i in range(0, len(lst), 2):
        if lst[i] % 2 != 0:
            return False
    return True
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmp1jbof6bx/solution.py", line 33, in <module>
    assertion(even_position(*inp), exp, 0)
  File "/tmp/tmp1jbof6bx/solution.py", line 27, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: True, exp: False
Extracted: fail · Gold: pass
gemma-4-26B-A4B-it-GGUFQ4_K_XL · GGUFunknown protocol · unknown agent
by messerli-wallace · shard 8 · 7/24/2026, 2:04:37 PM · cmrz0hqsm05klo401s7xf79fc
79.5%
159/200 correct · 5 correct traces · 5 incorrect traces
Correct samples
sample 1 · mbpp-plus:3pass · 100.0% · 1297ms · e6dba35ecdc1
Question
Write a python function to identify non-prime numbers.

Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
assert is_not_prime(37) == False
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a python function to identify non-prime numbers.

Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
assert is_not_prime(37) == False
Agent trace
import math

def is_not_prime(n):
    if n < 2:
        return True
    result = False
    for i in range(2, int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
            break
    return result
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 2 · mbpp-plus:95pass · 100.0% · 797ms · 9a51b1e45536
Question
Write a python function to find the length of the smallest list in a list of lists.

Your code should pass these tests:
assert Find_Min_Length([[1],[1,2]]) == 1
assert Find_Min_Length([[1,2],[1,2,3],[1,2,3,4]]) == 2
assert Find_Min_Length([[3,3,3],[4,4,4,4]]) == 3
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a python function to find the length of the smallest list in a list of lists.

Your code should pass these tests:
assert Find_Min_Length([[1],[1,2]]) == 1
assert Find_Min_Length([[1,2],[1,2,3],[1,2,3,4]]) == 2
assert Find_Min_Length([[3,3,3],[4,4,4,4]]) == 3
Agent trace
def Find_Min_Length(list_of_lists):
    return min(len(lst) for lst in list_of_lists)
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 3 · mbpp-plus:89pass · 100.0% · 602ms · 3ea09701fb19
Question
Write a function to find the closest smaller number than n.

Your code should pass these tests:
assert closest_num(11) == 10
assert closest_num(7) == 6
assert closest_num(12) == 11
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to find the closest smaller number than n.

Your code should pass these tests:
assert closest_num(11) == 10
assert closest_num(7) == 6
assert closest_num(12) == 11
Agent trace
def closest_num(n):
    return n - 1
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 4 · mbpp-plus:587pass · 100.0% · 630ms · e5d9214daf17
Question
Write a function to convert a list to a tuple.

Your code should pass these tests:
assert list_tuple([5, 10, 7, 4, 15, 3])==(5, 10, 7, 4, 15, 3)
assert list_tuple([2, 4, 5, 6, 2, 3, 4, 4, 7])==(2, 4, 5, 6, 2, 3, 4, 4, 7)
assert list_tuple([58,44,56])==(58,44,56)
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to convert a list to a tuple.

Your code should pass these tests:
assert list_tuple([5, 10, 7, 4, 15, 3])==(5, 10, 7, 4, 15, 3)
assert list_tuple([2, 4, 5, 6, 2, 3, 4, 4, 7])==(2, 4, 5, 6, 2, 3, 4, 4, 7)
assert list_tuple([58,44,56])==(58,44,56)
Agent trace
def list_tuple(lst):
    return tuple(lst)
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 5 · mbpp-plus:787pass · 100.0% · 925ms · e227488a4a8c
Question
Write a function that matches a string that has an a followed by three 'b'.

Your code should pass these tests:
assert not text_match_three("ac")
assert not text_match_three("dc")
assert text_match_three("abbbba")
assert text_match_three("caacabbbba")
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function that matches a string that has an a followed by three 'b'.

Your code should pass these tests:
assert not text_match_three("ac")
assert not text_match_three("dc")
assert text_match_three("abbbba")
assert text_match_three("caacabbbba")
Agent trace
import re

def text_match_three(text):
    patterns = 'ab{3}'
    if re.search(patterns, text):
        return True
    else:
        return False
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
Incorrect samples
sample 7 · mbpp-plus:116fail · 0.0% · 860ms · f28901751c2b
Question
Write a function to convert a given tuple of positive integers into a single integer.

Your code should pass these tests:
assert tuple_to_int((1,2,3))==123
assert tuple_to_int((4,5,6))==456
assert tuple_to_int((5,6,7))==567
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to convert a given tuple of positive integers into a single integer.

Your code should pass these tests:
assert tuple_to_int((1,2,3))==123
assert tuple_to_int((4,5,6))==456
assert tuple_to_int((5,6,7))==567
Agent trace
def tuple_to_int(tup):
    res = 0
    for digit in tup:
        res = res * 10 + digit
    return res
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmp851xs0s8/solution.py", line 33, in <module>
    assertion(tuple_to_int(*inp), exp, 0)
  File "/tmp/tmp851xs0s8/solution.py", line 27, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: 17649, exp: 123456789
Extracted: fail · Gold: pass
sample 8 · mbpp-plus:415fail · 0.0% · 2100ms · f9628f88259b
Question
Write a python function to find a pair with highest product from a given array of integers.

Your code should pass these tests:
assert max_Product([1,2,3,4,7,0,8,4]) == (7,8)
assert max_Product([0,-1,-2,-4,5,0,-6]) == (-4,-6)
assert max_Product([1,2,3]) == (2,3)
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a python function to find a pair with highest product from a given array of integers.

Your code should pass these tests:
assert max_Product([1,2,3,4,7,0,8,4]) == (7,8)
assert max_Product([0,-1,-2,-4,5,0,-6]) == (-4,-6)
assert max_Product([1,2,3]) == (2,3)
Agent trace
def max_Product(arr):
    if len(arr) < 2:
        return None
    
    # Sort the array to easily find the largest and smallest numbers
    arr.sort()
    
    # The highest product can come from:
    # 1. The two largest positive numbers
    # 2. The two smallest negative numbers (since negative * negative = positive)
    
    prod1 = arr[-1] * arr[-2]
    prod2 = arr[0] * arr[1]
    
    if prod1 >= prod2:
        return (arr[-2], arr[-1])
    else:
        return (arr[0], arr[1])
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpqjyqmy4l/solution.py", line 46, in <module>
    assertion(max_Product(*inp), exp, 0)
  File "/tmp/tmpqjyqmy4l/solution.py", line 40, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: (-6, -4), exp: (-4, -6)
Extracted: fail · Gold: pass
sample 17 · mbpp-plus:594fail · 0.0% · 1652ms · 0d8ba8f62390
Question
Write a function to find the difference of the first even and first odd number of a given list.

Your code should pass these tests:
assert diff_even_odd([1,3,5,7,4,1,6,8])==3
assert diff_even_odd([1,2,3,4,5,6,7,8,9,10])==1
assert diff_even_odd([1,5,7,9,10])==9
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to find the difference of the first even and first odd number of a given list.

Your code should pass these tests:
assert diff_even_odd([1,3,5,7,4,1,6,8])==3
assert diff_even_odd([1,2,3,4,5,6,7,8,9,10])==1
assert diff_even_odd([1,5,7,9,10])==9
Agent trace
def diff_even_odd(lst):
    first_even = None
    first_odd = None
    for num in lst:
        if first_even is None and num % 2 == 0:
            first_even = num
        if first_odd is None and num % 2 != 0:
            first_odd = num
        if first_even is not None and first_odd is not None:
            break
    return abs(first_even - first_odd)
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpmnn7vcaa/solution.py", line 39, in <module>
    assertion(diff_even_odd(*inp), exp, 0)
  File "/tmp/tmpmnn7vcaa/solution.py", line 33, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: 3, exp: -3
Extracted: fail · Gold: pass
sample 19 · mbpp-plus:468fail · 0.0% · 1724ms · bba260284dbe
Question
Write a function to find the maximum product formed by multiplying numbers of an increasing subsequence of that array.

Your code should pass these tests:
assert max_product([3, 100, 4, 5, 150, 6]) == 3000
assert max_product([4, 42, 55, 68, 80]) == 50265600
assert max_product([10, 22, 9, 33, 21, 50, 41, 60]) == 2460
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to find the maximum product formed by multiplying numbers of an increasing subsequence of that array.

Your code should pass these tests:
assert max_product([3, 100, 4, 5, 150, 6]) == 3000
assert max_product([4, 42, 55, 68, 80]) == 50265600
assert max_product([10, 22, 9, 33, 21, 50, 41, 60]) == 2460
Agent trace
def max_product(arr):
    if not arr:
        return 0
    n = len(arr)
    # dp[i] stores the maximum product of an increasing subsequence ending at index i
    dp = list(arr)
    
    for i in range(1, n):
        for j in range(i):
            if arr[i] > arr[j]:
                dp[i] = max(dp[i], dp[j] * arr[i])
                
    return max(dp)
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpg77i7n7k/solution.py", line 41, in <module>
    assertion(max_product(*inp), exp, 0)
  File "/tmp/tmpg77i7n7k/solution.py", line 35, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: 45000, exp: 3000
Extracted: fail · Gold: pass
sample 22 · mbpp-plus:113fail · 0.0% · 780ms · cba7e863a6cf
Question
Write a function to check if a string represents an integer or not.

Your code should pass these tests:
assert check_integer("python")==False
assert check_integer("1")==True
assert check_integer("12345")==True
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to check if a string represents an integer or not.

Your code should pass these tests:
assert check_integer("python")==False
assert check_integer("1")==True
assert check_integer("12345")==True
Agent trace
def check_integer(s):
    try:
        int(s)
        return True
    except ValueError:
        return False
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpqu6nrfd5/solution.py", line 34, in <module>
    assertion(check_integer(*inp), exp, 0)
  File "/tmp/tmpqu6nrfd5/solution.py", line 28, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: False, exp: None
Extracted: fail · Gold: pass
Qwen3.5-27B-GGUFQ4_K_XL · GGUFunknown protocol · unknown agent
by messerli-wallace · shard 7 · 7/24/2026, 1:03:12 PM · cmryyarip0554o401mlf8lroj
79.5%
159/200 correct · 5 correct traces · 5 incorrect traces
Correct samples
sample 1 · mbpp-plus:631pass · 100.0% · 3737ms · 29a990a6be16
Question
Write a function to replace whitespaces with an underscore and vice versa in a given string.

Your code should pass these tests:
assert replace_spaces('Jumanji The Jungle') == 'Jumanji_The_Jungle'
assert replace_spaces('The_Avengers') == 'The Avengers'
assert replace_spaces('Fast and Furious') == 'Fast_and_Furious'
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to replace whitespaces with an underscore and vice versa in a given string.

Your code should pass these tests:
assert replace_spaces('Jumanji The Jungle') == 'Jumanji_The_Jungle'
assert replace_spaces('The_Avengers') == 'The Avengers'
assert replace_spaces('Fast and Furious') == 'Fast_and_Furious'
Agent trace
def replace_spaces(s):
    result = []
    for char in s:
        if char == ' ':
            result.append('_')
        elif char == '_':
            result.append(' ')
        else:
            result.append(char)
    return ''.join(result)
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 2 · mbpp-plus:626pass · 100.0% · 2170ms · 4bc01db16384
Question
Write a python function to find the area of the largest triangle that can be inscribed in a semicircle with a given radius.

Your code should pass these tests:
assert triangle_area(-1) == None
assert triangle_area(0) == 0
assert triangle_area(2) == 4
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a python function to find the area of the largest triangle that can be inscribed in a semicircle with a given radius.

Your code should pass these tests:
assert triangle_area(-1) == None
assert triangle_area(0) == 0
assert triangle_area(2) == 4
Agent trace
def triangle_area(r):
    if r < 0:
        return None
    if r == 0:
        return 0
    return r * r
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 3 · mbpp-plus:635pass · 100.0% · 8316ms · 6e9233abbb87
Question
Write a function to sort the given list.

Your code should pass these tests:
assert heap_sort([1, 3, 5, 7, 9, 2, 4, 6, 8, 0])==[0, 1, 2, 3, 4, 5, 6, 7, 8, 9]
assert heap_sort([25, 35, 22, 85, 14, 65, 75, 25, 58])==[14, 22, 25, 25, 35, 58, 65, 75, 85]
assert heap_sort( [7, 1, 9, 5])==[1,5,7,9]
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to sort the given list.

Your code should pass these tests:
assert heap_sort([1, 3, 5, 7, 9, 2, 4, 6, 8, 0])==[0, 1, 2, 3, 4, 5, 6, 7, 8, 9]
assert heap_sort([25, 35, 22, 85, 14, 65, 75, 25, 58])==[14, 22, 25, 25, 35, 58, 65, 75, 85]
assert heap_sort( [7, 1, 9, 5])==[1,5,7,9]
Agent trace
def heap_sort(arr):
    def heapify(n, i):
        largest = i
        l = 2 * i + 1
        r = 2 * i + 2

        if l < n and arr[l] > arr[largest]:
            largest = l

        if r < n and arr[r] > arr[largest]:
            largest = r

        if largest != i:
            arr[i], arr[largest] = arr[largest], arr[i]
            heapify(n, largest)

    n = len(arr)

    # Build a maxheap
    for i in range(n // 2 - 1, -1, -1):
        heapify(n, i)

    # Extract elements one by one
    for i in range(n - 1, 0, -1):
        arr[i], arr[0] = arr[0], arr[i]
        heapify(i, 0)

    return arr
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 4 · mbpp-plus:743pass · 100.0% · 2520ms · ac0285decd0d
Question
Write a function to rotate a given list by specified number of items to the right direction. https://www.geeksforgeeks.org/python-program-right-rotate-list-n/

Your code should pass these tests:
assert rotate_right([1, 2, 3, 4, 5, 6, 7, 8, 9, 10],3)==[8, 9, 10, 1, 2, 3, 4, 5, 6, 7]
assert rotate_right([1, 2, 3, 4, 5, 6, 7, 8, 9, 10],2)==[9, 10, 1, 2, 3, 4, 5, 6, 7, 8]
assert rotate_right([1, 2, 3, 4, 5, 6, 7, 8, 9, 10],5)==[6, 7, 8, 9, 10, 1, 2, 3, 4, 5]
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to rotate a given list by specified number of items to the right direction. https://www.geeksforgeeks.org/python-program-right-rotate-list-n/

Your code should pass these tests:
assert rotate_right([1, 2, 3, 4, 5, 6, 7, 8, 9, 10],3)==[8, 9, 10, 1, 2, 3, 4, 5, 6, 7]
assert rotate_right([1, 2, 3, 4, 5, 6, 7, 8, 9, 10],2)==[9, 10, 1, 2, 3, 4, 5, 6, 7, 8]
assert rotate_right([1, 2, 3, 4, 5, 6, 7, 8, 9, 10],5)==[6, 7, 8, 9, 10, 1, 2, 3, 4, 5]
Agent trace
def rotate_right(lst, n):
    if not lst:
        return lst
    n = n % len(lst)
    return lst[-n:] + lst[:-n]
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 5 · mbpp-plus:308pass · 100.0% · 2973ms · 56a42fcb9593
Question
Write a function to find the specified number of largest products from two given lists, selecting one factor from each list.

Your code should pass these tests:
assert large_product([1, 2, 3, 4, 5, 6],[3, 6, 8, 9, 10, 6],3)==[60, 54, 50]
assert large_product([1, 2, 3, 4, 5, 6],[3, 6, 8, 9, 10, 6],4)==[60, 54, 50, 48]
assert large_product([1, 2, 3, 4, 5, 6],[3, 6, 8, 9, 10, 6],5)==[60, 54, 50, 48, 45]
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to find the specified number of largest products from two given lists, selecting one factor from each list.

Your code should pass these tests:
assert large_product([1, 2, 3, 4, 5, 6],[3, 6, 8, 9, 10, 6],3)==[60, 54, 50]
assert large_product([1, 2, 3, 4, 5, 6],[3, 6, 8, 9, 10, 6],4)==[60, 54, 50, 48]
assert large_product([1, 2, 3, 4, 5, 6],[3, 6, 8, 9, 10, 6],5)==[60, 54, 50, 48, 45]
Agent trace
def large_product(list1, list2, n):
    products = []
    for x in list1:
        for y in list2:
            products.append(x * y)
    products.sort(reverse=True)
    return products[:n]
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
Incorrect samples
sample 8 · mbpp-plus:437fail · 0.0% · 1804ms · 784e69de62a3
Question
Write a function to remove odd characters in a string.

Your code should pass these tests:
assert remove_odd("python")==("yhn")
assert remove_odd("program")==("rga")
assert remove_odd("language")==("agae")
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to remove odd characters in a string.

Your code should pass these tests:
assert remove_odd("python")==("yhn")
assert remove_odd("program")==("rga")
assert remove_odd("language")==("agae")
Agent trace
def remove_odd(s):
    return "".join(c for c in s if ord(c) % 2 == 0)
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpwk9pf8ev/solution.py", line 30, in <module>
    assertion(remove_odd(*inp), exp, 0)
  File "/tmp/tmpwk9pf8ev/solution.py", line 24, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: pthn, exp: yhn
Extracted: fail · Gold: pass
sample 9 · mbpp-plus:459fail · 0.0% · 1781ms · 6ac42684d657
Question
Write a function to remove uppercase substrings from a given string.

Your code should pass these tests:
assert remove_uppercase('cAstyoUrFavoRitETVshoWs') == 'cstyoravoitshos'
assert remove_uppercase('wAtchTheinTernEtrAdIo') == 'wtchheinerntrdo'
assert remove_uppercase('VoicESeaRchAndreComMendaTionS') == 'oiceachndreomendaion'
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to remove uppercase substrings from a given string.

Your code should pass these tests:
assert remove_uppercase('cAstyoUrFavoRitETVshoWs') == 'cstyoravoitshos'
assert remove_uppercase('wAtchTheinTernEtrAdIo') == 'wtchheinerntrdo'
assert remove_uppercase('VoicESeaRchAndreComMendaTionS') == 'oiceachndreomendaion'
Agent trace
def remove_uppercase(s):
    return ''.join(char for char in s if not char.isupper())
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpxglkv2a_/solution.py", line 30, in <module>
    assertion(remove_uppercase(*inp), exp, 0)
  File "/tmp/tmpxglkv2a_/solution.py", line 24, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: hi%^%!s&a(m)est%i*ng, exp: hisamesting
Extracted: fail · Gold: pass
sample 17 · mbpp-plus:622fail · 0.0% · 8115ms · 32857039a506
Question
Write a function to find the median of two sorted lists of same size.

Your code should pass these tests:
assert get_median([1, 12, 15, 26, 38], [2, 13, 17, 30, 45], 5) == 16.0
assert get_median([2, 4, 8, 9], [7, 13, 19, 28], 4) == 8.5
assert get_median([3, 6, 14, 23, 36, 42], [2, 18, 27, 39, 49, 55], 6) == 25.0
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to find the median of two sorted lists of same size.

Your code should pass these tests:
assert get_median([1, 12, 15, 26, 38], [2, 13, 17, 30, 45], 5) == 16.0
assert get_median([2, 4, 8, 9], [7, 13, 19, 28], 4) == 8.5
assert get_median([3, 6, 14, 23, 36, 42], [2, 18, 27, 39, 49, 55], 6) == 25.0
Agent trace
def get_median(arr1, arr2, n):
    merged = []
    i = j = 0
    while i < n and j < n:
        if arr1[i] < arr2[j]:
            merged.append(arr1[i])
            i += 1
        else:
            merged.append(arr2[j])
            j += 1
    while i < n:
        merged.append(arr1[i])
        i += 1
    while j < n:
        merged.append(arr2[j])
        j += 1
    
    total_len = 2 * n
    if total_len % 2 == 1:
        return float(merged[total_len // 2])
    else:
        mid1 = merged[total_len // 2 - 1]
        mid2 = merged[total_len // 2]
        return (mid1 + mid2) / 2.0
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpl4nuj2gt/solution.py", line 52, in <module>
    assertion(get_median(*inp), exp, 0)
              ^^^^^^^^^^^^^^^^
  File "/tmp/tmpl4nuj2gt/solution.py", line 22, in get_median
    mid1 = merged[total_len // 2 - 1]
           ~~~~~~^^^^^^^^^^^^^^^^^^^^
IndexError: list index out of range
Extracted: fail · Gold: pass
sample 20 · mbpp-plus:468fail · 0.0% · 5096ms · bba260284dbe
Question
Write a function to find the maximum product formed by multiplying numbers of an increasing subsequence of that array.

Your code should pass these tests:
assert max_product([3, 100, 4, 5, 150, 6]) == 3000
assert max_product([4, 42, 55, 68, 80]) == 50265600
assert max_product([10, 22, 9, 33, 21, 50, 41, 60]) == 2460
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to find the maximum product formed by multiplying numbers of an increasing subsequence of that array.

Your code should pass these tests:
assert max_product([3, 100, 4, 5, 150, 6]) == 3000
assert max_product([4, 42, 55, 68, 80]) == 50265600
assert max_product([10, 22, 9, 33, 21, 50, 41, 60]) == 2460
Agent trace
def max_product(arr):
    if not arr:
        return 0
    
    n = len(arr)
    # dp[i] stores the maximum product of an increasing subsequence ending at index i
    dp = [1] * n
    
    for i in range(n):
        dp[i] = arr[i]  # Initialize with the element itself
        for j in range(i):
            if arr[j] < arr[i]:
                dp[i] = max(dp[i], dp[j] * arr[i])
    
    return max(dp)
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmp9p09l818/solution.py", line 43, in <module>
    assertion(max_product(*inp), exp, 0)
  File "/tmp/tmp9p09l818/solution.py", line 37, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: 45000, exp: 3000
Extracted: fail · Gold: pass
sample 24 · mbpp-plus:99fail · 0.0% · 2809ms · 3db1974ed333
Question
Write a function to convert the given decimal number to its binary equivalent, represented as a string with no leading zeros.

Your code should pass these tests:
assert decimal_to_binary(8) == '1000'
assert decimal_to_binary(18) == '10010'
assert decimal_to_binary(7) == '111'
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to convert the given decimal number to its binary equivalent, represented as a string with no leading zeros.

Your code should pass these tests:
assert decimal_to_binary(8) == '1000'
assert decimal_to_binary(18) == '10010'
assert decimal_to_binary(7) == '111'
Agent trace
def decimal_to_binary(n):
    if n == 0:
        return '0'
    binary = ''
    while n > 0:
        binary = str(n % 2) + binary
        n //= 2
    return binary
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmptm6pewex/solution.py", line 36, in <module>
    assertion(decimal_to_binary(*inp), exp, 0)
  File "/tmp/tmptm6pewex/solution.py", line 30, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: , exp: -101
Extracted: fail · Gold: pass
Qwen3.6-35B-A3B-GGUFQ4_K_XL · GGUFunknown protocol · unknown agent
by messerli-wallace · shard 6 · 7/14/2026, 5:45:15 AM · cmrk8918903ttmj01bddk657x
81.0%
94/116 correct · 5 correct traces · 5 incorrect traces
Correct samples
sample 1 · mbpp-plus:90pass · 100.0% · 1746ms · 2d11c5bbe2d8
Question
Write a python function to find the length of the longest word.

Your code should pass these tests:
assert len_log(["python","PHP","bigdata"]) == 7
assert len_log(["a","ab","abc"]) == 3
assert len_log(["small","big","tall"]) == 5
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a python function to find the length of the longest word.

Your code should pass these tests:
assert len_log(["python","PHP","bigdata"]) == 7
assert len_log(["a","ab","abc"]) == 3
assert len_log(["small","big","tall"]) == 5
Agent trace
def len_log(words):
    return max(len(word) for word in words)
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 2 · mbpp-plus:578pass · 100.0% · 1610ms · 5dd7a4d6ce6d
Question
Write a function to interleave 3 lists of the same length into a single flat list.

Your code should pass these tests:
assert interleave_lists([1,2,3,4,5,6,7],[10,20,30,40,50,60,70],[100,200,300,400,500,600,700])==[1, 10, 100, 2, 20, 200, 3, 30, 300, 4, 40, 400, 5, 50, 500, 6, 60, 600, 7, 70, 700]
assert interleave_lists([10,20],[15,2],[5,10])==[10,15,5,20,2,10]
assert interleave_lists([11,44], [10,15], [20,5])==[11,10,20,44,15,5]
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to interleave 3 lists of the same length into a single flat list.

Your code should pass these tests:
assert interleave_lists([1,2,3,4,5,6,7],[10,20,30,40,50,60,70],[100,200,300,400,500,600,700])==[1, 10, 100, 2, 20, 200, 3, 30, 300, 4, 40, 400, 5, 50, 500, 6, 60, 600, 7, 70, 700]
assert interleave_lists([10,20],[15,2],[5,10])==[10,15,5,20,2,10]
assert interleave_lists([11,44], [10,15], [20,5])==[11,10,20,44,15,5]
Agent trace
def interleave_lists(list1, list2, list3):
    result = []
    for i in range(len(list1)):
        result.append(list1[i])
        result.append(list2[i])
        result.append(list3[i])
    return result
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 3 · mbpp-plus:733pass · 100.0% · 2231ms · 90cacb64be34
Question
Write a function to find the index of the first occurrence of a given number in a sorted array.

Your code should pass these tests:
assert find_first_occurrence([2, 5, 5, 5, 6, 6, 8, 9, 9, 9], 5) == 1
assert find_first_occurrence([2, 3, 5, 5, 6, 6, 8, 9, 9, 9], 5) == 2
assert find_first_occurrence([2, 4, 1, 5, 6, 6, 8, 9, 9, 9], 6) == 4
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to find the index of the first occurrence of a given number in a sorted array.

Your code should pass these tests:
assert find_first_occurrence([2, 5, 5, 5, 6, 6, 8, 9, 9, 9], 5) == 1
assert find_first_occurrence([2, 3, 5, 5, 6, 6, 8, 9, 9, 9], 5) == 2
assert find_first_occurrence([2, 4, 1, 5, 6, 6, 8, 9, 9, 9], 6) == 4
Agent trace
def find_first_occurrence(arr, target):
    left, right = 0, len(arr) - 1
    result = -1
    while left <= right:
        mid = (left + right) // 2
        if arr[mid] == target:
            result = mid
            right = mid - 1
        elif arr[mid] < target:
            left = mid + 1
        else:
            right = mid - 1
    return result
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 4 · mbpp-plus:572pass · 100.0% · 1224ms · 72ac111b65ff
Question
Write a python function to remove duplicate numbers from a given number of lists.

Your code should pass these tests:
assert two_unique_nums([1,2,3,2,3,4,5]) == [1, 4, 5]
assert two_unique_nums([1,2,3,2,4,5]) == [1, 3, 4, 5]
assert two_unique_nums([1,2,3,4,5]) == [1, 2, 3, 4, 5]
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a python function to remove duplicate numbers from a given number of lists.

Your code should pass these tests:
assert two_unique_nums([1,2,3,2,3,4,5]) == [1, 4, 5]
assert two_unique_nums([1,2,3,2,4,5]) == [1, 3, 4, 5]
assert two_unique_nums([1,2,3,4,5]) == [1, 2, 3, 4, 5]
Agent trace
def two_unique_nums(nums):
    from collections import Counter
    counts = Counter(nums)
    return [num for num in nums if counts[num] == 1]
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 5 · mbpp-plus:286pass · 100.0% · 6876ms · afe37bf13f52
Question
Write a function to find the largest sum of a contiguous array in the modified array which is formed by repeating the given array k times.

Your code should pass these tests:
assert max_sub_array_sum_repeated([10, 20, -30, -1], 4, 3) == 30
assert max_sub_array_sum_repeated([-1, 10, 20], 3, 2) == 59
assert max_sub_array_sum_repeated([-1, -2, -3], 3, 3) == -1
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to find the largest sum of a contiguous array in the modified array which is formed by repeating the given array k times.

Your code should pass these tests:
assert max_sub_array_sum_repeated([10, 20, -30, -1], 4, 3) == 30
assert max_sub_array_sum_repeated([-1, 10, 20], 3, 2) == 59
assert max_sub_array_sum_repeated([-1, -2, -3], 3, 3) == -1
Agent trace
def max_sub_array_sum_repeated(arr, n, k):
    # Kadane's algorithm for a single array
    def kadane(arr):
        max_so_far = arr[0]
        current_max = arr[0]
        for i in range(1, len(arr)):
            current_max = max(arr[i], current_max + arr[i])
            max_so_far = max(max_so_far, current_max)
        return max_so_far

    # Case 1: k == 1, just run Kadane on the original array
    if k == 1:
        return kadane(arr)

    # Case 2: Compute Kadane on arr concatenated twice
    # This handles cases where the max subarray wraps around the boundary
    arr2 = arr + arr
    max_kadane_2 = kadane(arr2)

    # Case 3: If the total sum of arr is positive, the max subarray might span multiple copies
    # In that case, the max sum is: (k-2) * total_sum + max_kadane_2
    # But we need to be careful: if total_sum <= 0, then we just take max_kadane_2
    total_sum = sum(arr)

    if total_sum > 0:
        # The max subarray can extend into the middle copies
        # It's essentially: max_kadane_2 + (k - 2) * total_sum
        # But only if k >= 2. For k=2, it's just max_kadane_2.
        if k >= 2:
            result = max_kadane_2 + (k - 2) * total_sum
        else:
            result = max_kadane_2
    else:
        # If total sum is not positive, the best we can do is within 2 copies
        result = max_kadane_2

    return result
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
Incorrect samples
sample 8 · mbpp-plus:581fail · 0.0% · 4132ms · 9556823104d4
Question
Write a python function to find the surface area of a square pyramid with a given base edge and height.

Your code should pass these tests:
assert surface_Area(3,4) == 33
assert surface_Area(4,5) == 56
assert surface_Area(1,2) == 5
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a python function to find the surface area of a square pyramid with a given base edge and height.

Your code should pass these tests:
assert surface_Area(3,4) == 33
assert surface_Area(4,5) == 56
assert surface_Area(1,2) == 5
Agent trace
import math

def surface_Area(base_edge, height):
    # Base area
    base_area = base_edge ** 2
    
    # Slant height calculation
    # The slant height is the hypotenuse of a right triangle with:
    # - one leg = height of the pyramid
    # - other leg = half the base edge (distance from center of base to midpoint of a side)
    slant_height = math.sqrt(height**2 + (base_edge / 2)**2)
    
    # Lateral surface area = 4 * (1/2 * base_edge * slant_height) = 2 * base_edge * slant_height
    lateral_area = 2 * base_edge * slant_height
    
    # Total surface area = base area + lateral area
    total_area = base_area + lateral_area
    
    # Return rounded to nearest integer to match test expectations
    return round(total_area)
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmppmpgmu1b/solution.py", line 48, in <module>
    assertion(surface_Area(*inp), exp, 0)
  File "/tmp/tmppmpgmu1b/solution.py", line 42, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: 35, exp: 33
Extracted: fail · Gold: pass
sample 20 · mbpp-plus:748fail · 0.0% · 1162ms · 8f0ff1fd731b
Question
Write a function to put spaces between words starting with capital letters in a given string.

Your code should pass these tests:
assert capital_words_spaces("Python") == 'Python'
assert capital_words_spaces("PythonProgrammingExamples") == 'Python Programming Examples'
assert capital_words_spaces("GetReadyToBeCodingFreak") == 'Get Ready To Be Coding Freak'
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to put spaces between words starting with capital letters in a given string.

Your code should pass these tests:
assert capital_words_spaces("Python") == 'Python'
assert capital_words_spaces("PythonProgrammingExamples") == 'Python Programming Examples'
assert capital_words_spaces("GetReadyToBeCodingFreak") == 'Get Ready To Be Coding Freak'
Agent trace
import re

def capital_words_spaces(s):
    return re.sub(r'([a-z])([A-Z])', r'\1 \2', s)
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpeo1lmenf/solution.py", line 32, in <module>
    assertion(capital_words_spaces(*inp), exp, 0)
  File "/tmp/tmpeo1lmenf/solution.py", line 26, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: My Name Is AIAnd IAm Here To Help You, exp: My Name Is AI And IAm Here To Help You
Extracted: fail · Gold: pass
sample 25 · mbpp-plus:102fail · 0.0% · 1070ms · 325a94b99c75
Question
Write a function to convert a snake case string to camel case string.

Your code should pass these tests:
assert snake_to_camel('python_program')=='PythonProgram'
assert snake_to_camel('python_language')==('PythonLanguage')
assert snake_to_camel('programming_language')==('ProgrammingLanguage')
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to convert a snake case string to camel case string.

Your code should pass these tests:
assert snake_to_camel('python_program')=='PythonProgram'
assert snake_to_camel('python_language')==('PythonLanguage')
assert snake_to_camel('programming_language')==('ProgrammingLanguage')
Agent trace
def snake_to_camel(s):
    words = s.split('_')
    return ''.join(word.capitalize() for word in words)
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpkwv0g03h/solution.py", line 31, in <module>
    assertion(snake_to_camel(*inp), exp, 0)
  File "/tmp/tmpkwv0g03h/solution.py", line 25, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: PythonProgram, exp: ___PythonProgram
Extracted: fail · Gold: pass
sample 32 · mbpp-plus:639fail · 0.0% · 1112ms · a1e35d6cce60
Question
Write a function to sum the length of the names of a given list of names after removing the names that start with a lowercase letter.

Your code should pass these tests:
assert sample_nam(['sally', 'Dylan', 'rebecca', 'Diana', 'Joanne', 'keith'])==16
assert sample_nam(["php", "res", "Python", "abcd", "Java", "aaa"])==10
assert sample_nam(["abcd", "Python", "abba", "aba"])==6
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to sum the length of the names of a given list of names after removing the names that start with a lowercase letter.

Your code should pass these tests:
assert sample_nam(['sally', 'Dylan', 'rebecca', 'Diana', 'Joanne', 'keith'])==16
assert sample_nam(["php", "res", "Python", "abcd", "Java", "aaa"])==10
assert sample_nam(["abcd", "Python", "abba", "aba"])==6
Agent trace
def sample_nam(names):
    return sum(len(name) for name in names if name and name[0].isupper())
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmp5aakvol0/solution.py", line 30, in <module>
    assertion(sample_nam(*inp), exp, 0)
  File "/tmp/tmp5aakvol0/solution.py", line 24, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: 17, exp: 0
Extracted: fail · Gold: pass
sample 36 · mbpp-plus:448fail · 0.0% · 2395ms · 004ec4038793
Question
Write a function to calculate the sum of perrin numbers.

Your code should pass these tests:
assert cal_sum(9) == 49
assert cal_sum(10) == 66
assert cal_sum(11) == 88
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to calculate the sum of perrin numbers.

Your code should pass these tests:
assert cal_sum(9) == 49
assert cal_sum(10) == 66
assert cal_sum(11) == 88
Agent trace
def cal_sum(n):
    if n <= 0:
        return 0
    # Perrin sequence: P(0)=3, P(1)=0, P(2)=2, P(n)=P(n-2)+P(n-3)
    perrin = [3, 0, 2]
    for i in range(3, n + 1):
        perrin.append(perrin[i-2] + perrin[i-3])
    return sum(perrin[:n+1])
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmppve48cjl/solution.py", line 36, in <module>
    assertion(cal_sum(*inp), exp, 0)
  File "/tmp/tmppve48cjl/solution.py", line 30, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: 0, exp: 5
Extracted: fail · Gold: pass
Qwen3.6-35B-A3B-Uncensored-HauhauCS-AggressiveQ4_K_M · GGUFunknown protocol · unknown agent
by messerli-wallace · shard 5 · 7/14/2026, 5:40:20 AM · cmrk82poa03pxmj01fn8wv3cr
73.3%
85/116 correct · 5 correct traces · 5 incorrect traces
Correct samples
sample 1 · mbpp-plus:87pass · 100.0% · 1911ms · 3f8c9437ea25
Question
Write a function to merge three dictionaries into a single dictionary.

Your code should pass these tests:
assert merge_dictionaries_three({ "R": "Red", "B": "Black", "P": "Pink" }, { "G": "Green", "W": "White" },{ "O": "Orange", "W": "White", "B": "Black" })=={'B': 'Black', 'R': 'Red', 'P': 'Pink', 'G': 'Green', 'W': 'White', 'O': 'Orange'}
assert merge_dictionaries_three({ "R": "Red", "B": "Black", "P": "Pink" }, { "G": "Green", "W": "White" },{"L":"lavender","B":"Blue"})=={'W': 'White', 'P': 'Pink', 'B': 'Black', 'R': 'Red', 'G': 'Green', 'L': 'lavender'}
assert merge_dictionaries_three({ "R": "Red", "B": "Black", "P": "Pink" },{"L":"lavender","B":"Blue"},{ "G": "Green", "W": "White" })=={'B': 'Black', 'P': 'Pink', 'R': 'Red', 'G': 'Green', 'L': 'lavender', 'W': 'White'}
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to merge three dictionaries into a single dictionary.

Your code should pass these tests:
assert merge_dictionaries_three({ "R": "Red", "B": "Black", "P": "Pink" }, { "G": "Green", "W": "White" },{ "O": "Orange", "W": "White", "B": "Black" })=={'B': 'Black', 'R': 'Red', 'P': 'Pink', 'G': 'Green', 'W': 'White', 'O': 'Orange'}
assert merge_dictionaries_three({ "R": "Red", "B": "Black", "P": "Pink" }, { "G": "Green", "W": "White" },{"L":"lavender","B":"Blue"})=={'W': 'White', 'P': 'Pink', 'B': 'Black', 'R': 'Red', 'G': 'Green', 'L': 'lavender'}
assert merge_dictionaries_three({ "R": "Red", "B": "Black", "P": "Pink" },{"L":"lavender","B":"Blue"},{ "G": "Green", "W": "White" })=={'B': 'Black', 'P': 'Pink', 'R': 'Red', 'G': 'Green', 'L': 'lavender', 'W': 'White'}
Agent trace
def merge_dictionaries_three(dict1, dict2, dict3):
    merged = dict1.copy()
    merged.update(dict2)
    merged.update(dict3)
    return merged
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 3 · mbpp-plus:762pass · 100.0% · 939ms · 0e6fd68599d2
Question
Write a function to check whether the given month number contains 30 days or not. Months are given as number from 1 to 12.

Your code should pass these tests:
assert check_monthnumber_number(6)==True
assert check_monthnumber_number(2)==False
assert check_monthnumber_number(12)==False
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to check whether the given month number contains 30 days or not. Months are given as number from 1 to 12.

Your code should pass these tests:
assert check_monthnumber_number(6)==True
assert check_monthnumber_number(2)==False
assert check_monthnumber_number(12)==False
Agent trace
def check_monthnumber_number(month):
    if month in [4, 6, 9, 11]:
        return True
    return False
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 4 · mbpp-plus:606pass · 100.0% · 766ms · ebf20f1c1351
Question
Write a function to convert degrees to radians.

Your code should pass these tests:
assert radian_degree(90)==1.5707963267948966
assert radian_degree(60)==1.0471975511965976
assert radian_degree(120)==2.0943951023931953
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to convert degrees to radians.

Your code should pass these tests:
assert radian_degree(90)==1.5707963267948966
assert radian_degree(60)==1.0471975511965976
assert radian_degree(120)==2.0943951023931953
Agent trace
import math
def radian_degree(degrees):
    return math.radians(degrees)
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 5 · mbpp-plus:725pass · 100.0% · 842ms · 2bc71efa63cd
Question
Write a function to extract values between quotation marks " " of the given string.

Your code should pass these tests:
assert extract_quotation('Cortex "A53" Based "multi" tasking "Processor"') == ['A53', 'multi', 'Processor']
assert extract_quotation('Cast your "favorite" entertainment "apps"') == ['favorite', 'apps']
assert extract_quotation('Watch content "4k Ultra HD" resolution with "HDR 10" Support') == ['4k Ultra HD', 'HDR 10']
assert extract_quotation("Watch content '4k Ultra HD' resolution with 'HDR 10' Support") == []
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to extract values between quotation marks " " of the given string.

Your code should pass these tests:
assert extract_quotation('Cortex "A53" Based "multi" tasking "Processor"') == ['A53', 'multi', 'Processor']
assert extract_quotation('Cast your "favorite" entertainment "apps"') == ['favorite', 'apps']
assert extract_quotation('Watch content "4k Ultra HD" resolution with "HDR 10" Support') == ['4k Ultra HD', 'HDR 10']
assert extract_quotation("Watch content '4k Ultra HD' resolution with 'HDR 10' Support") == []
Agent trace
import re

def extract_quotation(s):
    return re.findall(r'"([^"]*)"', s)
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 6 · mbpp-plus:633pass · 100.0% · 1239ms · 549c06564ebb
Question
Write a python function to find the sum of xor of all pairs of numbers in the given list.

Your code should pass these tests:
assert pair_xor_Sum([5,9,7,6],4) == 47
assert pair_xor_Sum([7,3,5],3) == 12
assert pair_xor_Sum([7,3],2) == 4
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a python function to find the sum of xor of all pairs of numbers in the given list.

Your code should pass these tests:
assert pair_xor_Sum([5,9,7,6],4) == 47
assert pair_xor_Sum([7,3,5],3) == 12
assert pair_xor_Sum([7,3],2) == 4
Agent trace
def pair_xor_Sum(arr, n):
    total_xor_sum = 0
    for i in range(n):
        for j in range(i + 1, n):
            total_xor_sum += arr[i] ^ arr[j]
    return total_xor_sum
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
Incorrect samples
sample 2 · mbpp-plus:559fail · 0.0% · 1494ms · d8ecd9b50982
Question
Write a function to find the sum of the largest contiguous sublist in the given list.

Your code should pass these tests:
assert max_sub_array_sum([-2, -3, 4, -1, -2, 1, 5, -3], 8) == 7
assert max_sub_array_sum([-3, -4, 5, -2, -3, 2, 6, -4], 8) == 8
assert max_sub_array_sum([-4, -5, 6, -3, -4, 3, 7, -5], 8) == 10
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to find the sum of the largest contiguous sublist in the given list.

Your code should pass these tests:
assert max_sub_array_sum([-2, -3, 4, -1, -2, 1, 5, -3], 8) == 7
assert max_sub_array_sum([-3, -4, 5, -2, -3, 2, 6, -4], 8) == 8
assert max_sub_array_sum([-4, -5, 6, -3, -4, 3, 7, -5], 8) == 10
Agent trace
def max_sub_array_sum(a, size):
    max_so_far = a[0]
    current_max = a[0]
    for i in range(1, size):
        current_max = max(a[i], current_max + a[i])
        max_so_far = max(max_so_far, current_max)
    return max_so_far
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpfkjk6yo8/solution.py", line 35, in <module>
    assertion(max_sub_array_sum(*inp), exp, 0)
              ^^^^^^^^^^^^^^^^^^^^^^^
  File "/tmp/tmpfkjk6yo8/solution.py", line 2, in max_sub_array_sum
    max_so_far = a[0]
                 ~^^^
IndexError: list index out of range
Extracted: fail · Gold: pass
sample 8 · mbpp-plus:577fail · 0.0% · 1592ms · 65e33f93cc33
Question
Write a python function to find the last digit in factorial of a given number.

Your code should pass these tests:
assert last_Digit_Factorial(4) == 4
assert last_Digit_Factorial(21) == 0
assert last_Digit_Factorial(30) == 0
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a python function to find the last digit in factorial of a given number.

Your code should pass these tests:
assert last_Digit_Factorial(4) == 4
assert last_Digit_Factorial(21) == 0
assert last_Digit_Factorial(30) == 0
Agent trace
def last_Digit_Factorial(n):
    if n < 0:
        return -1
    if n == 0 or n == 1:
        return 1
    if n >= 5:
        return 0
    factorial = 1
    for i in range(1, n + 1):
        factorial *= i
    return factorial % 10
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpadjjjcbs/solution.py", line 39, in <module>
    assertion(last_Digit_Factorial(*inp), exp, 0)
              ^^^^^^^^^^^^^^^^^^^^^^^^^^
  File "/tmp/tmpadjjjcbs/solution.py", line 9, in last_Digit_Factorial
    for i in range(1, n + 1):
             ^^^^^^^^^^^^^^^
TypeError: 'float' object cannot be interpreted as an integer
Extracted: fail · Gold: pass
sample 10 · mbpp-plus:754fail · 0.0% · 1449ms · af0adf1c5a0a
Question
We say that an element is common for lists l1, l2, l3 if it appears in all three lists under the same index. Write a function to find common elements from three lists. The function should return a list.

Your code should pass these tests:
assert extract_index_list([1, 1, 3, 4, 5, 6, 7],[0, 1, 2, 3, 4, 5, 7],[0, 1, 2, 3, 4, 5, 7])==[1, 7]
assert extract_index_list([1, 1, 3, 4, 5, 6, 7],[0, 1, 2, 3, 4, 6, 5],[0, 1, 2, 3, 4, 6, 7])==[1, 6]
assert extract_index_list([1, 1, 3, 4, 6, 5, 6],[0, 1, 2, 3, 4, 5, 7],[0, 1, 2, 3, 4, 5, 7])==[1, 5]
assert extract_index_list([1, 2, 3, 4, 6, 6, 6],[0, 1, 2, 3, 4, 5, 7],[0, 1, 2, 3, 4, 5, 7])==[]
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

We say that an element is common for lists l1, l2, l3 if it appears in all three lists under the same index. Write a function to find common elements from three lists. The function should return a list.

Your code should pass these tests:
assert extract_index_list([1, 1, 3, 4, 5, 6, 7],[0, 1, 2, 3, 4, 5, 7],[0, 1, 2, 3, 4, 5, 7])==[1, 7]
assert extract_index_list([1, 1, 3, 4, 5, 6, 7],[0, 1, 2, 3, 4, 6, 5],[0, 1, 2, 3, 4, 6, 7])==[1, 6]
assert extract_index_list([1, 1, 3, 4, 6, 5, 6],[0, 1, 2, 3, 4, 5, 7],[0, 1, 2, 3, 4, 5, 7])==[1, 5]
assert extract_index_list([1, 2, 3, 4, 6, 6, 6],[0, 1, 2, 3, 4, 5, 7],[0, 1, 2, 3, 4, 5, 7])==[]
Agent trace
def extract_index_list(l1, l2, l3):
    result = []
    for i in range(len(l1)):
        if l1[i] == l2[i] and l2[i] == l3[i]:
            result.append(l1[i])
    return result
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmp7sgpx4t2/solution.py", line 34, in <module>
    assertion(extract_index_list(*inp), exp, 0)
              ^^^^^^^^^^^^^^^^^^^^^^^^
  File "/tmp/tmp7sgpx4t2/solution.py", line 4, in extract_index_list
    if l1[i] == l2[i] and l2[i] == l3[i]:
                ~~^^^
IndexError: list index out of range
Extracted: fail · Gold: pass
sample 13 · mbpp-plus:620fail · 0.0% · 2912ms · 62670fa973b9
Question
Write a function to find the size of the largest subset of a list of numbers so that every pair is divisible.

Your code should pass these tests:
assert largest_subset([ 1, 3, 6, 13, 17, 18 ]) == 4
assert largest_subset([10, 5, 3, 15, 20]) == 3
assert largest_subset([18, 1, 3, 6, 13, 17]) == 4
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to find the size of the largest subset of a list of numbers so that every pair is divisible.

Your code should pass these tests:
assert largest_subset([ 1, 3, 6, 13, 17, 18 ]) == 4
assert largest_subset([10, 5, 3, 15, 20]) == 3
assert largest_subset([18, 1, 3, 6, 13, 17]) == 4
Agent trace
def largest_subset(nums):
    if not nums:
        return 0
    
    nums.sort()
    n = len(nums)
    
    # dp[i] will store the size of the largest divisible subset ending with nums[i]
    dp = [1] * n
    # To reconstruct the subset, we can store the previous index
    prev = [-1] * n
    
    max_size = 1
    max_index = 0
    
    for i in range(1, n):
        for j in range(i):
            if nums[i] % nums[j] == 0:
                if dp[j] + 1 > dp[i]:
                    dp[i] = dp[j] + 1
                    prev[i] = j
        if dp[i] > max_size:
            max_size = dp[i]
            max_index = i
    
    return max_size
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmppk79b5gb/solution.py", line 54, in <module>
    assertion(largest_subset(*inp), exp, 0)
  File "/tmp/tmppk79b5gb/solution.py", line 48, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: 3, exp: 4
Extracted: fail · Gold: pass
sample 14 · mbpp-plus:311fail · 0.0% · 3968ms · 80bdf86daff0
Question
Write a python function to set the left most unset bit.

Your code should pass these tests:
assert set_left_most_unset_bit(10) == 14
assert set_left_most_unset_bit(12) == 14
assert set_left_most_unset_bit(15) == 15
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a python function to set the left most unset bit.

Your code should pass these tests:
assert set_left_most_unset_bit(10) == 14
assert set_left_most_unset_bit(12) == 14
assert set_left_most_unset_bit(15) == 15
Agent trace
def set_left_most_unset_bit(n):
    if n < 0:
        return n
    # Find the position of the leftmost unset bit
    # We need to find the highest bit position that is 0
    # One approach: invert n, then find the highest set bit in ~n
    # But we need to consider only bits up to the highest set bit in n
    # Actually, we want to set the leftmost 0 bit in the binary representation
    
    # Let's find the number of bits needed to represent n
    if n == 0:
        return 1  # leftmost unset bit of 0 (considering at least 1 bit) is bit 0
    
    # Find the position of the most significant bit
    msb_pos = n.bit_length() - 1
    
    # Check from the highest bit down to 0 for the first unset bit
    for i in range(msb_pos, -1, -1):
        if not (n & (1 << i)):
            # Set this bit
            return n | (1 << i)
    
    # If all bits up to msb_pos are set, we need to set the next bit
    return n | (1 << (msb_pos + 1))
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpit3w30k5/solution.py", line 52, in <module>
    assertion(set_left_most_unset_bit(*inp), exp, 0)
  File "/tmp/tmpit3w30k5/solution.py", line 46, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: 31, exp: 15
Extracted: fail · Gold: pass
Qwen3.6-35B-A3B-GGUFQ2_K_XL · GGUFunknown protocol · unknown agent
by messerli-wallace · shard 4 · 7/14/2026, 5:22:27 AM · cmrk7fpwa03lrmj01qixthtwl
76.7%
89/116 correct · 5 correct traces · 5 incorrect traces
Correct samples
sample 2 · mbpp-plus:268pass · 100.0% · 1464ms · d76235150c10
Question
Write a function to find the n'th star number.

Your code should pass these tests:
assert find_star_num(3) == 37
assert find_star_num(4) == 73
assert find_star_num(5) == 121
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to find the n'th star number.

Your code should pass these tests:
assert find_star_num(3) == 37
assert find_star_num(4) == 73
assert find_star_num(5) == 121
Agent trace
def find_star_num(n):
    return 6 * n * (n - 1) + 1
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 3 · mbpp-plus:453pass · 100.0% · 2984ms · dde5fbfd32b2
Question
Write a python function to find the sum of even factors of a number.

Your code should pass these tests:
assert sumofFactors(18) == 26
assert sumofFactors(30) == 48
assert sumofFactors(6) == 8
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a python function to find the sum of even factors of a number.

Your code should pass these tests:
assert sumofFactors(18) == 26
assert sumofFactors(30) == 48
assert sumofFactors(6) == 8
Agent trace
def sumofFactors(n):
    if n == 0:
        return 0
    res = 0
    for i in range(1, int(n**0.5) + 1):
        if n % i == 0:
            if i % 2 == 0:
                res += i
            other = n // i
            if other != i and other % 2 == 0:
                res += other
    return res
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 4 · mbpp-plus:89pass · 100.0% · 1201ms · 3ea09701fb19
Question
Write a function to find the closest smaller number than n.

Your code should pass these tests:
assert closest_num(11) == 10
assert closest_num(7) == 6
assert closest_num(12) == 11
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to find the closest smaller number than n.

Your code should pass these tests:
assert closest_num(11) == 10
assert closest_num(7) == 6
assert closest_num(12) == 11
Agent trace
def closest_num(n):
    return n - 1
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 5 · mbpp-plus:284pass · 100.0% · 1410ms · 1c6624b0aa17
Question
Write a function that takes in a list and element and checks whether all items in the list are equal to the given element.

Your code should pass these tests:
assert check_element(["green", "orange", "black", "white"],'blue')==False
assert check_element([1,2,3,4],7)==False
assert check_element(["green", "green", "green", "green"],'green')==True
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function that takes in a list and element and checks whether all items in the list are equal to the given element.

Your code should pass these tests:
assert check_element(["green", "orange", "black", "white"],'blue')==False
assert check_element([1,2,3,4],7)==False
assert check_element(["green", "green", "green", "green"],'green')==True
Agent trace
def check_element(lst, element):
    return all(item == element for item in lst)
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 7 · mbpp-plus:728pass · 100.0% · 1640ms · b0ab3f219a0f
Question
Write a function takes as input two lists [a_1,...,a_n], [b_1,...,b_n] and returns [a_1+b_1,...,a_n+b_n].

Your code should pass these tests:
assert sum_list([10,20,30],[15,25,35])==[25,45,65]
assert sum_list([1,2,3],[5,6,7])==[6,8,10]
assert sum_list([15,20,30],[15,45,75])==[30,65,105]
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function takes as input two lists [a_1,...,a_n], [b_1,...,b_n] and returns [a_1+b_1,...,a_n+b_n].

Your code should pass these tests:
assert sum_list([10,20,30],[15,25,35])==[25,45,65]
assert sum_list([1,2,3],[5,6,7])==[6,8,10]
assert sum_list([15,20,30],[15,45,75])==[30,65,105]
Agent trace
def sum_list(a, b):
    return [x + y for x, y in zip(a, b)]
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
Incorrect samples
sample 1 · mbpp-plus:785fail · 0.0% · 2139ms · 59345717feaa
Question
Write a function to convert tuple string to integer tuple.

Your code should pass these tests:
assert tuple_str_int("(7, 8, 9)") == (7, 8, 9)
assert tuple_str_int("(1, 2, 3)") == (1, 2, 3)
assert tuple_str_int("(4, 5, 6)") == (4, 5, 6)
assert tuple_str_int("(7, 81, 19)") == (7, 81, 19)
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to convert tuple string to integer tuple.

Your code should pass these tests:
assert tuple_str_int("(7, 8, 9)") == (7, 8, 9)
assert tuple_str_int("(1, 2, 3)") == (1, 2, 3)
assert tuple_str_int("(4, 5, 6)") == (4, 5, 6)
assert tuple_str_int("(7, 81, 19)") == (7, 81, 19)
Agent trace
def tuple_str_int(s):
    import ast
    return tuple(ast.literal_eval(s))
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpui4wlx8b/solution.py", line 31, in <module>
    assertion(tuple_str_int(*inp), exp, 0)
              ^^^^^^^^^^^^^^^^^^^
  File "/tmp/tmpui4wlx8b/solution.py", line 3, in tuple_str_int
    return tuple(ast.literal_eval(s))
                 ^^^^^^^^^^^^^^^^^^^
  File "/usr/local/lib/python3.12/ast.py", line 66, in literal_eval
    node_or_string = parse(node_or_string.lstrip(" \t"), mode='eval')
                     ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
  File "/usr/local/lib/python3.12/ast.py", line 52, in parse
    return compile(source, filename, mode, flags,
           ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
  File "<unknown>", line 1
    ((7, 8, 9)
    ^
SyntaxError: '(' was never closed
Extracted: fail · Gold: pass
sample 6 · mbpp-plus:597fail · 0.0% · 5123ms · e36dde26ddc1
Question
Write a function to find kth element from the given two sorted arrays.

Your code should pass these tests:
assert find_kth([2, 3, 6, 7, 9], [1, 4, 8, 10], 5) == 6
assert find_kth([100, 112, 256, 349, 770], [72, 86, 113, 119, 265, 445, 892], 7) == 256
assert find_kth([3, 4, 7, 8, 10], [2, 5, 9, 11], 6) == 8
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to find kth element from the given two sorted arrays.

Your code should pass these tests:
assert find_kth([2, 3, 6, 7, 9], [1, 4, 8, 10], 5) == 6
assert find_kth([100, 112, 256, 349, 770], [72, 86, 113, 119, 265, 445, 892], 7) == 256
assert find_kth([3, 4, 7, 8, 10], [2, 5, 9, 11], 6) == 8
Agent trace
def find_kth(arr1, arr2, k):
    i, j = 0, 0
    count = 0
    while i < len(arr1) and j < len(arr2):
        if arr1[i] < arr2[j]:
            i += 1
        else:
            j += 1
        count += 1
        if count == k:
            return min(arr1[i] if i < len(arr1) else float('inf'), arr2[j] if j < len(arr2) else float('inf'))
    
    while i < len(arr1):
        i += 1
        count += 1
        if count == k:
            return arr1[i - 1]
    
    while j < len(arr2):
        j += 1
        count += 1
        if count == k:
            return arr2[j - 1]
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmp86xqxwpi/solution.py", line 51, in <module>
    assertion(find_kth(*inp), exp, 0)
  File "/tmp/tmp86xqxwpi/solution.py", line 45, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: 7, exp: 6
Extracted: fail · Gold: pass
sample 10 · mbpp-plus:742fail · 0.0% · 1642ms · aeb48fad121c
Question
Write a function to caluclate the area of a tetrahedron.

Your code should pass these tests:
assert area_tetrahedron(3)==15.588457268119894
assert area_tetrahedron(20)==692.8203230275509
assert area_tetrahedron(10)==173.20508075688772
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to caluclate the area of a tetrahedron.

Your code should pass these tests:
assert area_tetrahedron(3)==15.588457268119894
assert area_tetrahedron(20)==692.8203230275509
assert area_tetrahedron(10)==173.20508075688772
Agent trace
import math

def area_tetrahedron(a):
    return (math.sqrt(3) / 4) * a**2
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmp_jqnzz_g/solution.py", line 32, in <module>
    assertion(area_tetrahedron(*inp), exp, 0.0001)
  File "/tmp/tmp_jqnzz_g/solution.py", line 24, in assertion
    assert np.allclose(out, exp, rtol=1e-07, atol=atol)
           ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
AssertionError
Extracted: fail · Gold: pass
sample 15 · mbpp-plus:398fail · 0.0% · 2336ms · c161d5e83977
Question
Write a function to compute the sum of digits of each number of a given list.

Your code should pass these tests:
assert sum_of_digits([10,2,56])==14
assert sum_of_digits([[10,20,4,5,'b',70,'a']])==19
assert sum_of_digits([10,20,-4,5,-70])==19
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to compute the sum of digits of each number of a given list.

Your code should pass these tests:
assert sum_of_digits([10,2,56])==14
assert sum_of_digits([[10,20,4,5,'b',70,'a']])==19
assert sum_of_digits([10,20,-4,5,-70])==19
Agent trace
def sum_of_digits(lst):
    total = 0
    for item in lst:
        if isinstance(item, list):
            total += sum_of_digits(item)
        elif isinstance(item, int):
            total += sum(abs(int(digit)) for digit in str(abs(item)))
    return total
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmplqfxdhhm/solution.py", line 36, in <module>
    assertion(sum_of_digits(*inp), exp, 0)
  File "/tmp/tmplqfxdhhm/solution.py", line 30, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: 6, exp: 14
Extracted: fail · Gold: pass
sample 18 · mbpp-plus:300fail · 0.0% · 7150ms · da773283af8e
Question
Write a function to find the count of all binary sequences of length 2n such that sum of first n bits is same as sum of last n bits.

Your code should pass these tests:
assert math.isclose(count_binary_seq(1), 2.0, rel_tol=0.001)
assert math.isclose(count_binary_seq(2), 6.0, rel_tol=0.001)
assert math.isclose(count_binary_seq(3), 20.0, rel_tol=0.001)
Rendered prompt
Here are examples of Python tasks and correct solutions.

Write a function to find the minimum cost path to reach (m, n) from (0, 0) for the given cost matrix cost[][] and a position (m, n) in cost[][].
Your code should pass these tests:
assert min_cost([[1, 2, 3], [4, 8, 2], [1, 5, 3]], 2, 2) == 8
assert min_cost([[2, 3, 4], [5, 9, 3], [2, 6, 4]], 2, 2) == 12
assert min_cost([[3, 4, 5], [6, 10, 4], [3, 7, 5]], 2, 2) == 16
```python
R = 3
C = 3
def min_cost(cost, m, n): 
	tc = [[0 for x in range(C)] for x in range(R)] 
	tc[0][0] = cost[0][0] 
	for i in range(1, m+1): 
		tc[i][0] = tc[i-1][0] + cost[i][0] 
	for j in range(1, n+1): 
		tc[0][j] = tc[0][j-1] + cost[0][j] 
	for i in range(1, m+1): 
		for j in range(1, n+1): 
			tc[i][j] = min(tc[i-1][j-1], tc[i-1][j], tc[i][j-1]) + cost[i][j] 
	return tc[m][n]
```

Write a function to find the similar elements from the given two tuple lists.
Your code should pass these tests:
assert similar_elements((3, 4, 5, 6),(5, 7, 4, 10)) == (4, 5)
assert similar_elements((1, 2, 3, 4),(5, 4, 3, 7)) == (3, 4)
assert similar_elements((11, 12, 14, 13),(17, 15, 14, 13)) == (13, 14)
```python
def similar_elements(test_tup1, test_tup2):
  res = tuple(set(test_tup1) & set(test_tup2))
  return (res) 
```

Write a python function to identify non-prime numbers.
Your code should pass these tests:
assert is_not_prime(2) == False
assert is_not_prime(10) == True
assert is_not_prime(35) == True
```python
import math
def is_not_prime(n):
    result = False
    for i in range(2,int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
```

Now complete this task. Reply with only the implementation in a single ```python code block and no prose.

Write a function to find the count of all binary sequences of length 2n such that sum of first n bits is same as sum of last n bits.

Your code should pass these tests:
assert math.isclose(count_binary_seq(1), 2.0, rel_tol=0.001)
assert math.isclose(count_binary_seq(2), 6.0, rel_tol=0.001)
assert math.isclose(count_binary_seq(3), 20.0, rel_tol=0.001)
Agent trace
import math

def count_binary_seq(n):
    # The number of binary sequences of length 2n where the sum of the first n bits
    # equals the sum of the last n bits.
    # For each possible sum k (from 0 to n), the number of ways to have sum k in the first n bits
    # is C(n, k). Similarly for the last n bits.
    # So for a fixed k, the number of sequences is C(n, k) * C(n, k).
    # Total count = sum_{k=0}^{n} [C(n, k)]^2
    # This is a known identity: sum_{k=0}^{n} C(n, k)^2 = C(2n, n)
    
    if n == 0:
        return 1.0
    
    # Calculate C(2n, n)
    # C(2n, n) = (2n)! / (n! * n!)
    # We can compute this using math.comb in Python 3.8+
    try:
        result = math.comb(2 * n, n)
    except AttributeError:
        # Fallback for older Python versions
        result = 1
        for i in range(n):
            result = result * (2 * n - i) // (i + 1)
    
    return float(result)
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmppnjmlxnb/solution.py", line 54, in <module>
    assertion(count_binary_seq(*inp), exp, 0.0001)
              ^^^^^^^^^^^^^^^^^^^^^^
  File "/tmp/tmppnjmlxnb/solution.py", line 26, in count_binary_seq
    return float(result)
           ^^^^^^^^^^^^^
OverflowError: int too large to convert to float
Extracted: fail · Gold: pass