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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: 62

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

Muse-Glimmer-30B-GGUFQ4_K_XL · GGUFunknown protocol · unknown agent
unsloth/Muse-Glimmer-30B-GGUF · 1 run · 1/13 shards · harness-scoped
86.5%
95% CI 81.190.6%
173/200 correct · 52.9% coverage
2
GLM-5.3-Flashexl3unknown protocol · unknown agent
zai-org/GLM-5.3-Flash · 2 runs · 1/13 shards · harness-scoped
82.8%
95% CI 78.786.3%
313/378 correct · 100.0% coverage
3
GLM-5.3-Flash-tr3-4bpwexl3unknown protocol · unknown agent
brandonmusic/GLM-5.3-Flash-tr3-4bpw · 1 run · 1/13 shards · harness-scoped
82.8%
95% CI 78.786.3%
313/378 correct · 100.0% coverage
4
GLM-5.3-FlashNVFP4unknown protocol · unknown agent
zai-org/GLM-5.3-Flash · 3 runs · 1/13 shards · harness-scoped
81.5%
95% CI 77.385.1%
308/378 correct · 100.0% coverage
5
DeepSeek-V4-Flash-0731FP8unknown protocol · unknown agent
deepseek-ai/DeepSeek-V4-Flash-0731 · 1 run · 1/13 shards · harness-scoped
80.4%
95% CI 76.184.1%
304/378 correct · 100.0% coverage
6
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
7
Qwen3.8-Flash-Next-NVFP4NVFP4unknown protocol · unknown agent
nvidia/Qwen3.8-Flash-Next-NVFP4 · 1 run · 1/13 shards · harness-scoped
79.1%
95% CI 74.782.9%
299/378 correct · 100.0% coverage
8
Qwen3.8-Flash-Next-NVFP4NVFP4unknown protocol · unknown agent
local-inference-lab/Qwen3.8-Flash-Next-NVFP4 · 1 run · 1/13 shards · harness-scoped
78.8%
95% CI 74.482.7%
298/378 correct · 100.0% coverage
9
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
10
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
11
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
12
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
13
Muse-Glimmer-30B-GGUFQ5_K_XL · GGUFunknown protocol · unknown agent
unsloth/Muse-Glimmer-30B-GGUF · 1 run · 1/13 shards · harness-scoped
79.5%
95% CI 73.484.5%
159/200 correct · 52.9% coverage
14
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
15
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
16
Qwen3.8-27B-GGUFQ6_K_XL · GGUFunknown protocol · unknown agent
unsloth/Qwen3.8-27B-GGUF · 7 runs · 7/13 shards · harness-scoped
76.8%
95% CI 72.380.8%
288/375 correct · 99.2% coverage
17
Qwen3.8-27B-GGUFQ4_K_XL · GGUFunknown protocol · unknown agent
unsloth/Qwen3.8-27B-GGUF · 9 runs · 9/13 shards · harness-scoped
76.5%
95% CI 71.980.5%
289/378 correct · 100.0% coverage
18
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
19
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
20
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
21
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
22
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
23
Unsloth-Ornith-1.5-35B-A3BQ2_K_XL · GGUFunknown protocol · unknown agent
peculiar-ragdoll/Unsloth-Ornith-1.5-35B-A3B · 10 runs · 10/13 shards · harness-scoped
69.1%
95% CI 63.574.3%
195/282 correct · 74.6% coverage
24
Ling-3.0-tiny-GGUFQ4_K_M · GGUFunknown protocol · unknown agent
bartowski/Ling-3.0-tiny-GGUF · 6 runs · 6/13 shards · harness-scoped
66.3%
95% CI 61.470.9%
248/374 correct · 98.9% coverage
25
Qwen3.8-27B-GGUFIQ1_M · GGUFunknown protocol · unknown agent
unsloth/Qwen3.8-27B-GGUF · 7 runs · 7/13 shards · harness-scoped
61.2%
95% CI 56.266.0%
230/376 correct · 99.5% 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.

Muse-Glimmer-30B-GGUFQ4_K_XL · GGUFunknown protocol · unknown agent
1 historical run · 200 unique questions
Canonical
86.5%
Row avg
86.5%
Run avg
86.5%
Repeated
0
Changed
0
GLM-5.3-Flashexl3unknown protocol · unknown agent
2 historical runs · 378 unique questions
Canonical
82.8%
Row avg
83.1%
Run avg
83.1%
Repeated
378
Changed
24
GLM-5.3-Flash-tr3-4bpwexl3unknown protocol · unknown agent
1 historical run · 378 unique questions
Canonical
82.8%
Row avg
82.8%
Run avg
82.8%
Repeated
0
Changed
0
GLM-5.3-FlashNVFP4unknown protocol · unknown agent
3 historical runs · 378 unique questions
Canonical
81.5%
Row avg
81.7%
Run avg
81.7%
Repeated
756
Changed
36
DeepSeek-V4-Flash-0731FP8unknown protocol · unknown agent
1 historical run · 378 unique questions
Canonical
80.4%
Row avg
80.4%
Run avg
80.4%
Repeated
0
Changed
0
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
Qwen3.8-Flash-Next-NVFP4NVFP4unknown protocol · unknown agent
1 historical run · 378 unique questions
Canonical
79.1%
Row avg
79.1%
Run avg
79.1%
Repeated
0
Changed
0
Qwen3.8-Flash-Next-NVFP4NVFP4unknown protocol · unknown agent
1 historical run · 378 unique questions
Canonical
78.8%
Row avg
78.8%
Run avg
78.8%
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
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
Qwen3.5-27B-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
Muse-Glimmer-30B-GGUFQ5_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
Qwen3.8-27B-GGUFQ6_K_XL · GGUFunknown protocol · unknown agent
7 historical runs · 375 unique questions
Canonical
76.8%
Row avg
76.9%
Run avg
77.1%
Repeated
855
Changed
6
Qwen3.8-27B-GGUFQ4_K_XL · GGUFunknown protocol · unknown agent
9 historical runs · 378 unique questions
Canonical
76.5%
Row avg
77.2%
Run avg
77.5%
Repeated
1,282
Changed
13
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
Unsloth-Ornith-1.5-35B-A3BQ2_K_XL · GGUFunknown protocol · unknown agent
10 historical runs · 282 unique questions
Canonical
69.1%
Row avg
69.6%
Run avg
69.6%
Repeated
218
Changed
12
Ling-3.0-tiny-GGUFQ4_K_M · GGUFunknown protocol · unknown agent
6 historical runs · 374 unique questions
Canonical
66.3%
Row avg
65.9%
Run avg
65.9%
Repeated
826
Changed
8
Qwen3.8-27B-GGUFIQ1_M · GGUFunknown protocol · unknown agent
7 historical runs · 376 unique questions
Canonical
61.2%
Row avg
60.7%
Run avg
60.6%
Repeated
854
Changed
45

Runs— sample traces per run

Qwen3.8-Flash-Next-NVFP4NVFP4unknown protocol · unknown agent
by Per0 · shard 9 · 9/5/2026, 10:41:48 PM · cmtoywh6o01aun701q2egacvn
79.1%
299/378 correct · 5 correct traces · 5 incorrect traces
Correct samples
sample 1 · mbpp-plus:270pass · 100.0% · 4229ms · 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):
    return sum(x for i, x in enumerate(lst) if i % 2 == 0 and x % 2 == 0)
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 3 · mbpp-plus:227pass · 100.0% · 1253ms · 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 6 · mbpp-plus:297pass · 100.0% · 4179ms · 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(lst):
    result = []
    for item in lst:
        if isinstance(item, list):
            result.extend(flatten_list(item))
        else:
            result.append(item)
    return result
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 7 · mbpp-plus:637pass · 100.0% · 3181ms · 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% · 2726ms · 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):
    return month in (4, 6, 9, 11)
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
Incorrect samples
sample 2 · mbpp-plus:771fail · 0.0% · 2563ms · 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(expression):
    stack = []
    pairs = {')': '(', ']': '[', '}': '{'}
    opening = set(pairs.values())

    for char in expression:
        if char in opening:
            stack.append(char)
        elif char in pairs:
            if not stack or stack[-1] != pairs[char]:
                return False
            stack.pop()

    return not stack
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmp58gjeoks/solution.py", line 42, in <module>
    assertion(check_expression(*inp), exp, 0)
  File "/tmp/tmp58gjeoks/solution.py", line 36, 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% · 4043ms · 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 >= 5:
        return 0
    result = 1
    for i in range(2, n + 1):
        result = (result * i) % 10
    return result
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmp_bntbb23/solution.py", line 35, in <module>
    assertion(last_Digit_Factorial(*inp), exp, 0)
              ^^^^^^^^^^^^^^^^^^^^^^^^^^
  File "/tmp/tmp_bntbb23/solution.py", line 5, in last_Digit_Factorial
    for i in range(2, n + 1):
             ^^^^^^^^^^^^^^^
TypeError: 'float' object cannot be interpreted as an integer
Extracted: fail · Gold: pass
sample 5 · mbpp-plus:597fail · 0.0% · 35141ms · 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):
    m, n = len(arr1), len(arr2)

    if k < 1 or k > m + n:
        return None

    low = max(0, k - n)
    high = min(k, m)

    while low <= high:
        i = (low + high) // 2
        j = k - i

        left1 = arr1[i - 1] if i > 0 else float("-inf")
        right1 = arr1[i] if i < m else float("inf")

        left2 = arr2[j - 1] if j > 0 else float("-inf")
        right2 = arr2[j] if j < n else float("inf")

        if left1 <= right2 and left2 <= right1:
            return max(left1, left2)
        elif left1 > right2:
            high = i - 1
        else:
            low = i + 1

    return None
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmp0pn2_sus/solution.py", line 55, in <module>
    assertion(find_kth(*inp), exp, 0)
  File "/tmp/tmp0pn2_sus/solution.py", line 49, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: False, exp: True
Extracted: fail · Gold: pass
sample 11 · mbpp-plus:563fail · 0.0% · 3732ms · 52f033a057b4
Question
Write a function to extract values between quotation marks from a string.

Your code should pass these tests:
assert extract_values('"Python", "PHP", "Java"')==['Python', 'PHP', 'Java']
assert extract_values('"python","program","language"')==['python','program','language']
assert extract_values('"red","blue","green","yellow"')==['red','blue','green','yellow']
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 from a string.

Your code should pass these tests:
assert extract_values('"Python", "PHP", "Java"')==['Python', 'PHP', 'Java']
assert extract_values('"python","program","language"')==['python','program','language']
assert extract_values('"red","blue","green","yellow"')==['red','blue','green','yellow']
Agent trace
def extract_values(s):
    return s.split('"')[1::2]
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpux4onvdf/solution.py", line 30, in <module>
    assertion(extract_values(*inp), exp, 0)
  File "/tmp/tmpux4onvdf/solution.py", line 24, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: ['This is a ', '', ''], exp: ['This is a ', '']
Extracted: fail · Gold: pass
sample 16 · mbpp-plus:790fail · 0.0% · 4580ms · 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):
    return all(x % 2 == 0 for x in lst[::2])
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpltlnuyk5/solution.py", line 30, in <module>
    assertion(even_position(*inp), exp, 0)
  File "/tmp/tmpltlnuyk5/solution.py", line 24, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: True, exp: False
Extracted: fail · Gold: pass
GLM-5.3-Flashexl3unknown protocol · unknown agent
by Per0 · shard 8 · 9/4/2026, 11:23:53 PM · cmtnkyqwg0154mm01qftsunlx
82.8%
313/378 correct · 5 correct traces · 5 incorrect traces
Correct samples
sample 2 · mbpp-plus:95pass · 100.0% · 15664ms · 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(lst):
    return min(len(x) for x in lst)
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 3 · mbpp-plus:89pass · 100.0% · 14447ms · 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:787pass · 100.0% · 32235ms · 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):
    if re.search(r'ab{3}', text):
        return True
    else:
        return False
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 6 · mbpp-plus:807pass · 100.0% · 23167ms · 5cb6c1722ceb
Question
Write a python function to find the first odd number in a given list of numbers.

Your code should pass these tests:
assert first_odd([1,3,5]) == 1
assert first_odd([2,4,1,3]) == 1
assert first_odd ([8,9,1]) == 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 python function to find the first odd number in a given list of numbers.

Your code should pass these tests:
assert first_odd([1,3,5]) == 1
assert first_odd([2,4,1,3]) == 1
assert first_odd ([8,9,1]) == 9
Agent trace
def first_odd(nums):
    for num in nums:
        if num % 2 != 0:
            return num
    return -1
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 7 · mbpp-plus:116pass · 100.0% · 23743ms · 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(test_tup):
    res = int(''.join(map(str, test_tup)))
    return res
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
Incorrect samples
sample 1 · mbpp-plus:3fail · 0.0% · 25967ms · 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):
    result = False
    for i in range(2, int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpodn8ymtq/solution.py", line 35, in <module>
    assertion(is_not_prime(*inp), exp, 0)
  File "/tmp/tmpodn8ymtq/solution.py", line 29, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: False, exp: True
Extracted: fail · Gold: pass
sample 4 · mbpp-plus:587fail · 0.0% · 22655ms · 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(list1):
    return tuple(list_tuple)
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmp1djyvter/solution.py", line 30, in <module>
    assertion(list_tuple(*inp), exp, 0)
              ^^^^^^^^^^^^^^^^
  File "/tmp/tmp1djyvter/solution.py", line 2, in list_tuple
    return tuple(list_tuple)
           ^^^^^^^^^^^^^^^^^
TypeError: 'function' object is not iterable
Extracted: fail · Gold: pass
sample 8 · mbpp-plus:415fail · 0.0% · 47948ms · 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): 
    arr_len = len(arr) 
    if (arr_len < 2): 
        return None 
    x = arr[0]
    y = arr[1] 
    for i in range(0, arr_len): 
        for j in range(i + 1, arr_len): 
            if (arr[i] * arr[j] > x * y): 
                x = arr[i]
                y = arr[j] 
    return x, y
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmphj3ko7fp/solution.py", line 40, in <module>
    assertion(max_Product(*inp), exp, 0)
  File "/tmp/tmphj3ko7fp/solution.py", line 34, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: (4000000, 4000000), exp: (3000000, 4000000)
Extracted: fail · Gold: pass
sample 19 · mbpp-plus:468fail · 0.0% · 69044ms · 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
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpfn91idm6/solution.py", line 29, in <module>
    assertion(max_product(*inp), exp, 0)
              ^^^^^^^^^^^
NameError: name 'max_product' is not defined
Extracted: fail · Gold: pass
sample 22 · mbpp-plus:113fail · 0.0% · 9730ms · 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(text):
    text = text.strip()
    if len(text) < 1:
        return False
    else:
        if (text[0] == '-' or text[0] == '+'):
            if len(text) > 1 and text[1:].isdigit():
                return True
            else:
                return False
        else:
            if text.isdigit():
                return True
            else:
                return False
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpph0gh3mc/solution.py", line 43, in <module>
    assertion(check_integer(*inp), exp, 0)
  File "/tmp/tmpph0gh3mc/solution.py", line 37, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: False, exp: None
Extracted: fail · Gold: pass
DeepSeek-V4-Flash-0731FP8unknown protocol · unknown agent
by Per0 · shard 7 · 9/4/2026, 3:47:03 AM · cmtmexc0000x0l601mzwhqamk
80.4%
304/378 correct · 5 correct traces · 5 incorrect traces
Correct samples
sample 1 · mbpp-plus:631pass · 100.0% · 4940ms · 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 ch in s:
        if ch == ' ':
            result.append('_')
        elif ch == '_':
            result.append(' ')
        else:
            result.append(ch)
    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% · 6055ms · 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
    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% · 3338ms · 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
import heapq

def heap_sort(lst):
    heapq.heapify(lst)
    return [heapq.heappop(lst) for _ in range(len(lst))]
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 4 · mbpp-plus:743pass · 100.0% · 2272ms · 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% · 7158ms · 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, k):
    products = {a * b for a in list1 for b in list2}
    return sorted(products, reverse=True)[:k]
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
Incorrect samples
sample 9 · mbpp-plus:459fail · 0.0% · 6397ms · 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(ch for ch in s if not ch.isupper())
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpwam8xe_z/solution.py", line 30, in <module>
    assertion(remove_uppercase(*inp), exp, 0)
  File "/tmp/tmpwam8xe_z/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 11 · mbpp-plus:741fail · 0.0% · 1991ms · 298dc2c48271
Question
Write a python function to check whether all the characters are same or not.

Your code should pass these tests:
assert all_Characters_Same("python") == False
assert all_Characters_Same("aaa") == True
assert all_Characters_Same("data") == 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 check whether all the characters are same or not.

Your code should pass these tests:
assert all_Characters_Same("python") == False
assert all_Characters_Same("aaa") == True
assert all_Characters_Same("data") == False
Agent trace
def all_Characters_Same(s):
    return len(set(s)) == 1
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmp0tukijmb/solution.py", line 30, in <module>
    assertion(all_Characters_Same(*inp), exp, 0)
  File "/tmp/tmp0tukijmb/solution.py", line 24, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: False, exp: True
Extracted: fail · Gold: pass
sample 17 · mbpp-plus:622fail · 0.0% · 12512ms · 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 len(merged) <= n:
        if i < n and (j >= n or arr1[i] <= arr2[j]):
            merged.append(arr1[i])
            i += 1
        else:
            merged.append(arr2[j])
            j += 1

    return (merged[n - 1] + merged[n]) / 2.0
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpbwwf5eng/solution.py", line 41, in <module>
    assertion(get_median(*inp), exp, 0)
  File "/tmp/tmpbwwf5eng/solution.py", line 33, in assertion
    assert np.allclose(out, exp, rtol=1e-07, atol=atol)
           ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
AssertionError
Extracted: fail · Gold: pass
sample 20 · mbpp-plus:468fail · 0.0% · 57992ms · 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
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpts6ekf03/solution.py", line 29, in <module>
    assertion(max_product(*inp), exp, 0)
              ^^^^^^^^^^^
NameError: name 'max_product' is not defined
Extracted: fail · Gold: pass
sample 24 · mbpp-plus:99fail · 0.0% · 3042ms · 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):
    return bin(n)[2:]
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmp8c6wk1sm/solution.py", line 30, in <module>
    assertion(decimal_to_binary(*inp), exp, 0)
  File "/tmp/tmp8c6wk1sm/solution.py", line 24, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: b101, exp: -101
Extracted: fail · Gold: pass
GLM-5.3-FlashNVFP4unknown protocol · unknown agent
by Per0 · shard 6 · 9/2/2026, 7:10:10 AM · cmtjrau0y03a6p701imofif8q
81.5%
308/378 correct · 5 correct traces · 5 incorrect traces
Correct samples
sample 1 · mbpp-plus:90pass · 100.0% · 1788ms · 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(list1):
    max_len = 0
    for word in list1:
        if len(word) > max_len:
            max_len = len(word)
    return max_len
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 2 · mbpp-plus:578pass · 100.0% · 4394ms · 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 a, b, c in zip(list1, list2, list3):
        result.extend([a, b, c])
    return result
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 3 · mbpp-plus:733pass · 100.0% · 9805ms · 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, x):
    for i in range(len(arr)):
        if arr[i] == x:
            return i
    return -1
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 4 · mbpp-plus:572pass · 100.0% · 5543ms · 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):
  result = []
  for i in nums:
    if nums.count(i) == 1:
      result.append(i)
  return result
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 6 · mbpp-plus:737pass · 100.0% · 4110ms · a94d75b13598
Question
Write a function to check whether the given string is starting with a vowel or not using regex.

Your code should pass these tests:
assert check_str("annie")
assert not check_str("dawood")
assert check_str("Else")
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 string is starting with a vowel or not using regex.

Your code should pass these tests:
assert check_str("annie")
assert not check_str("dawood")
assert check_str("Else")
Agent trace
import re
def check_str(string):
    return bool(re.match('^[aeiouAEIOU]', string))
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
Incorrect samples
sample 5 · mbpp-plus:286fail · 0.0% · 44125ms · 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
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpz32o_d0o/solution.py", line 29, in <module>
    assertion(max_sub_array_sum_repeated(*inp), exp, 0)
              ^^^^^^^^^^^^^^^^^^^^^^^^^^
NameError: name 'max_sub_array_sum_repeated' is not defined
Extracted: fail · Gold: pass
sample 24 · mbpp-plus:247fail · 0.0% · 45621ms · 5ff566789393
Question
Write a function to find the length of the longest palindromic subsequence in the given string.

Your code should pass these tests:
assert lps("TENS FOR TENS") == 5
assert lps("CARDIO FOR CARDS") == 7
assert lps("PART OF THE JOURNEY IS PART") == 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 length of the longest palindromic subsequence in the given string.

Your code should pass these tests:
assert lps("TENS FOR TENS") == 5
assert lps("CARDIO FOR CARDS") == 7
assert lps("PART OF THE JOURNEY IS PART") == 9
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpv46_bbfm/solution.py", line 29, in <module>
    assertion(lps(*inp), exp, 0)
              ^^^
NameError: name 'lps' is not defined
Extracted: fail · Gold: pass
sample 25 · mbpp-plus:102fail · 0.0% · 4932ms · 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(word):
    return ''.join(x.capitalize() for x in word.split('_'))
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmp85fdc6kk/solution.py", line 30, in <module>
    assertion(snake_to_camel(*inp), exp, 0)
  File "/tmp/tmp85fdc6kk/solution.py", line 24, 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% · 1862ms · 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(sample_names):
    return sum(len(name) for name in sample_names if name[0].isupper())
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmp0b6liwys/solution.py", line 30, in <module>
    assertion(sample_nam(*inp), exp, 0)
  File "/tmp/tmp0b6liwys/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% · 29934ms · 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):
    perrin = [3, 0, 2]
    if n < 3:
        return sum(perrin[:n + 1])
    for i in range(3, n + 1):
        perrin.append(perrin[-2] + perrin[-3])
    return sum(perrin)
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpzdre399c/solution.py", line 35, in <module>
    assertion(cal_sum(*inp), exp, 0)
  File "/tmp/tmpzdre399c/solution.py", line 29, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: 0, exp: 5
Extracted: fail · Gold: pass
GLM-5.3-FlashNVFP4unknown protocol · unknown agent
by Per0 · shard 5 · 9/2/2026, 6:01:36 AM · cmtjounhu024hp701o29bfeyu
81.0%
306/378 correct · 5 correct traces · 5 incorrect traces
Correct samples
sample 2 · mbpp-plus:559pass · 100.0% · 18294ms · 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, a_size):
    max_so_far = 0
    max_ending_here = 0
    for i in range(a_size):
        max_ending_here = max_ending_here + a[i]
        if max_so_far < max_ending_here:
            max_so_far = max_ending_here
        if max_ending_here < 0:
            max_ending_here = 0
    return max_so_far
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 3 · mbpp-plus:762pass · 100.0% · 3050ms · 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(monthnum):
    return monthnum in [4, 6, 9, 11]
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 4 · mbpp-plus:606pass · 100.0% · 3364ms · 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(degree):
    return degree * (math.pi / 180)
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 5 · mbpp-plus:725pass · 100.0% · 3185ms · 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(text1):
    return (re.findall(r'"(.*?)"', text1))
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 6 · mbpp-plus:633pass · 100.0% · 3697ms · 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):
    ans = 0
    for i in range(0, n):
        for j in range(i + 1, n):
            ans = ans + (arr[i] ^ arr[j])
    return ans
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
Incorrect samples
sample 1 · mbpp-plus:87fail · 0.0% · 39342ms · 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'}
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmp4l98jpg9/solution.py", line 29, in <module>
    assertion(merge_dictionaries_three(*inp), exp, 0)
              ^^^^^^^^^^^^^^^^^^^^^^^^
NameError: name 'merge_dictionaries_three' is not defined
Extracted: fail · Gold: pass
sample 8 · mbpp-plus:577fail · 0.0% · 8475ms · 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):
    fact = 1
    for i in range(1, n + 1):
        fact = (fact * i) % 10
    return fact
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmp3c5gbqve/solution.py", line 33, in <module>
    assertion(last_Digit_Factorial(*inp), exp, 0)
              ^^^^^^^^^^^^^^^^^^^^^^^^^^
  File "/tmp/tmp3c5gbqve/solution.py", line 3, 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 13 · mbpp-plus:620fail · 0.0% · 41336ms · 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
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpmzv3qtx6/solution.py", line 29, in <module>
    assertion(largest_subset(*inp), exp, 0)
              ^^^^^^^^^^^^^^
NameError: name 'largest_subset' is not defined
Extracted: fail · Gold: pass
sample 19 · mbpp-plus:129fail · 0.0% · 5573ms · d9c22fcb6c28
Question
Write a function to calculate whether the matrix is a magic square.

Your code should pass these tests:
assert magic_square_test([[7, 12, 1, 14], [2, 13, 8, 11], [16, 3, 10, 5], [9, 6, 15, 4]])==True
assert magic_square_test([[2, 7, 6], [9, 5, 1], [4, 3, 8]])==True
assert magic_square_test([[2, 7, 6], [9, 5, 1], [4, 3, 7]])==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 calculate whether the matrix is a magic square.

Your code should pass these tests:
assert magic_square_test([[7, 12, 1, 14], [2, 13, 8, 11], [16, 3, 10, 5], [9, 6, 15, 4]])==True
assert magic_square_test([[2, 7, 6], [9, 5, 1], [4, 3, 8]])==True
assert magic_square_test([[2, 7, 6], [9, 5, 1], [4, 3, 7]])==False
Agent trace
def magic_square_test(my_matrix):
    n = len(my_matrix)
    sum_list = []
    sum_list.extend([sum(row) for row in my_matrix])
    for i in range(n):
        sum_list.append(sum(row[i] for row in my_matrix))
    sum_list.append(sum(my_matrix[i][i] for i in range(n)))
    sum_list.append(sum(my_matrix[i][n - 1 - i] for i in range(n)))
    return len(set(sum_list)) == 1
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpgs1ann0o/solution.py", line 37, in <module>
    assertion(magic_square_test(*inp), exp, 0)
              ^^^^^^^^^^^^^^^^^^^^^^^
  File "/tmp/tmpgs1ann0o/solution.py", line 6, in magic_square_test
    sum_list.append(sum(row[i] for row in my_matrix))
                    ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
  File "/tmp/tmpgs1ann0o/solution.py", line 6, in <genexpr>
    sum_list.append(sum(row[i] for row in my_matrix))
                        ~~~^^^
IndexError: list index out of range
Extracted: fail · Gold: pass
sample 27 · mbpp-plus:781fail · 0.0% · 24345ms · c3b8b794464f
Question
Write a python function to check whether the count of divisors is even. https://www.w3resource.com/python-exercises/basic/python-basic-1-exercise-24.php

Your code should pass these tests:
assert count_divisors(10)
assert not count_divisors(100)
assert count_divisors(125)
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 count of divisors is even. https://www.w3resource.com/python-exercises/basic/python-basic-1-exercise-24.php

Your code should pass these tests:
assert count_divisors(10)
assert not count_divisors(100)
assert count_divisors(125)
Agent trace
def count_divisors(n):
    count = 0
    for i in range(1, n + 1):
        if n % i == 0:
            count += 1
    return count % 2 == 0
Additional reasoning trace
sandbox: passed=false returncode=-24 timed_out=false
Extracted: fail · Gold: pass
GLM-5.3-FlashNVFP4unknown protocol · unknown agent
by Per0 · shard 3 · 9/2/2026, 1:47:32 AM · cmtjfrxqs00vfp701y41dked1
82.5%
312/378 correct · 5 correct traces · 5 incorrect traces
Correct samples
sample 1 · mbpp-plus:766pass · 100.0% · 5055ms · 959efe0a7a85
Question
Write a function to return a list of all pairs of consecutive items in a given list.

Your code should pass these tests:
assert pair_wise([1,1,2,3,3,4,4,5])==[(1, 1), (1, 2), (2, 3), (3, 3), (3, 4), (4, 4), (4, 5)]
assert pair_wise([1,5,7,9,10])==[(1, 5), (5, 7), (7, 9), (9, 10)]
assert pair_wise([5,1,9,7,10])==[(5, 1), (1, 9), (9, 7), (7, 10)]
assert pair_wise([1,2,3,4,5,6,7,8,9,10])==[(1, 2), (2, 3), (3, 4), (4, 5), (5, 6), (6, 7), (7, 8), (8, 9), (9, 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 return a list of all pairs of consecutive items in a given list.

Your code should pass these tests:
assert pair_wise([1,1,2,3,3,4,4,5])==[(1, 1), (1, 2), (2, 3), (3, 3), (3, 4), (4, 4), (4, 5)]
assert pair_wise([1,5,7,9,10])==[(1, 5), (5, 7), (7, 9), (9, 10)]
assert pair_wise([5,1,9,7,10])==[(5, 1), (1, 9), (9, 7), (7, 10)]
assert pair_wise([1,2,3,4,5,6,7,8,9,10])==[(1, 2), (2, 3), (3, 4), (4, 5), (5, 6), (6, 7), (7, 8), (8, 9), (9, 10)]
Agent trace
def pair_wise(test_list):
    res = [(test_list[i], test_list[i + 1]) for i in range(len(test_list) - 1)]
    return (res)
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 2 · mbpp-plus:237pass · 100.0% · 7195ms · e7c5b4d93493
Question
Write a function that takes in a list of tuples and returns a dictionary mapping each unique tuple to the number of times it occurs in the list.

Your code should pass these tests:
assert check_occurences([(3, 1), (1, 3), (2, 5), (5, 2), (6, 3)] ) == {(1, 3): 2, (2, 5): 2, (3, 6): 1}
assert check_occurences([(4, 2), (2, 4), (3, 6), (6, 3), (7, 4)] ) == {(2, 4): 2, (3, 6): 2, (4, 7): 1}
assert check_occurences([(13, 2), (11, 23), (12, 25), (25, 12), (16, 23)] ) == {(2, 13): 1, (11, 23): 1, (12, 25): 2, (16, 23): 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 that takes in a list of tuples and returns a dictionary mapping each unique tuple to the number of times it occurs in the list.

Your code should pass these tests:
assert check_occurences([(3, 1), (1, 3), (2, 5), (5, 2), (6, 3)] ) == {(1, 3): 2, (2, 5): 2, (3, 6): 1}
assert check_occurences([(4, 2), (2, 4), (3, 6), (6, 3), (7, 4)] ) == {(2, 4): 2, (3, 6): 2, (4, 7): 1}
assert check_occurences([(13, 2), (11, 23), (12, 25), (25, 12), (16, 23)] ) == {(2, 13): 1, (11, 23): 1, (12, 25): 2, (16, 23): 1}
Agent trace
def check_occurences(test_list):
    res = {}
    for tup in test_list:
        key = tuple(sorted(tup))
        res[key] = res.get(key, 0) + 1
    return res
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 4 · mbpp-plus:79pass · 100.0% · 2770ms · 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 5 · mbpp-plus:294pass · 100.0% · 5032ms · d4ee7158c4dc
Question
Write a function to find the maximum value in a given heterogeneous list.

Your code should pass these tests:
assert max_val(['Python', 3, 2, 4, 5, 'version'])==5
assert max_val(['Python', 15, 20, 25])==25
assert max_val(['Python', 30, 20, 40, 50, 'version'])==50
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 value in a given heterogeneous list.

Your code should pass these tests:
assert max_val(['Python', 3, 2, 4, 5, 'version'])==5
assert max_val(['Python', 15, 20, 25])==25
assert max_val(['Python', 30, 20, 40, 50, 'version'])==50
Agent trace
def max_val(listval):
    return max(x for x in listval if isinstance(x, int))
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 6 · mbpp-plus:767pass · 100.0% · 8715ms · a05bf88c11c2
Question
Write a python function to count the number of pairs whose sum is equal to ‘sum’. The funtion gets as input a list of numbers and the sum,

Your code should pass these tests:
assert get_pairs_count([1,1,1,1],2) == 6
assert get_pairs_count([1,5,7,-1,5],6) == 3
assert get_pairs_count([1,-2,3],1) == 1
assert get_pairs_count([-1,-2,3],-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 python function to count the number of pairs whose sum is equal to ‘sum’. The funtion gets as input a list of numbers and the sum,

Your code should pass these tests:
assert get_pairs_count([1,1,1,1],2) == 6
assert get_pairs_count([1,5,7,-1,5],6) == 3
assert get_pairs_count([1,-2,3],1) == 1
assert get_pairs_count([-1,-2,3],-3) == 1
Agent trace
def get_pairs_count(arr, sum):
    count = 0
    n = len(arr)
    for i in range(n):
        for j in range(i + 1, n):
            if arr[i] + arr[j] == sum:
                count += 1
    return count
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
Incorrect samples
sample 3 · mbpp-plus:138fail · 0.0% · 28744ms · 6c53fc520fa2
Question
Write a python function to check whether the given number can be represented as sum of non-zero powers of 2 or not.

Your code should pass these tests:
assert is_Sum_Of_Powers_Of_Two(10) == True
assert is_Sum_Of_Powers_Of_Two(7) == False
assert is_Sum_Of_Powers_Of_Two(14) == 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 given number can be represented as sum of non-zero powers of 2 or not.

Your code should pass these tests:
assert is_Sum_Of_Powers_Of_Two(10) == True
assert is_Sum_Of_Powers_Of_Two(7) == False
assert is_Sum_Of_Powers_Of_Two(14) == True
Agent trace
def is_Sum_Of_Powers_Of_Two(n): 
    if (n % 2 != 0): 
        return False
    else: 
        return True
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmp_lr5a5rl/solution.py", line 33, in <module>
    assertion(is_Sum_Of_Powers_Of_Two(*inp), exp, 0)
  File "/tmp/tmp_lr5a5rl/solution.py", line 27, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: True, exp: False
Extracted: fail · Gold: pass
sample 8 · mbpp-plus:454fail · 0.0% · 6664ms · 877fa38323e0
Question
Write a function that matches a word containing 'z'.

Your code should pass these tests:
assert text_match_wordz("pythonz.")==True
assert text_match_wordz("xyz.")==True
assert text_match_wordz("  lang  .")==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 that matches a word containing 'z'.

Your code should pass these tests:
assert text_match_wordz("pythonz.")==True
assert text_match_wordz("xyz.")==True
assert text_match_wordz("  lang  .")==False
Agent trace
import re
def text_match_wordz(text):
    patterns = '\w*z.\w*'
    if re.search(patterns, text):
        return True
    else:
        return False
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
/tmp/tmpaf1_an4j/solution.py:3: SyntaxWarning: invalid escape sequence '\w'
  patterns = '\w*z.\w*'
Traceback (most recent call last):
  File "/tmp/tmpaf1_an4j/solution.py", line 35, in <module>
    assertion(text_match_wordz(*inp), exp, 0)
  File "/tmp/tmpaf1_an4j/solution.py", line 29, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: False, exp: True
Extracted: fail · Gold: pass
sample 12 · mbpp-plus:415fail · 0.0% · 25193ms · 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): 
    arr_len = len(arr) 
    if (arr_len < 2): 
        return None 
    x = arr[0]
    y = arr[1] 
    for i in range(0, arr_len): 
        for j in range(i + 1, arr_len): 
            if (arr[i] * arr[j] > x * y): 
                x = arr[i]
                y = arr[j] 
    return x, y
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpgjbor4kl/solution.py", line 40, in <module>
    assertion(max_Product(*inp), exp, 0)
  File "/tmp/tmpgjbor4kl/solution.py", line 34, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: (4000000, 4000000), exp: (3000000, 4000000)
Extracted: fail · Gold: pass
sample 13 · mbpp-plus:765fail · 0.0% · 38067ms · bcf0e83cbad8
Question
Write a function to find nth polite number. geeksforgeeks.org/n-th-polite-number/

Your code should pass these tests:
assert is_polite(7) == 11
assert is_polite(4) == 7
assert is_polite(9) == 13
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 nth polite number. geeksforgeeks.org/n-th-polite-number/

Your code should pass these tests:
assert is_polite(7) == 11
assert is_polite(4) == 7
assert is_polite(9) == 13
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpvbsd_k2w/solution.py", line 29, in <module>
    assertion(is_polite(*inp), exp, 0)
              ^^^^^^^^^
NameError: name 'is_polite' is not defined
Extracted: fail · Gold: pass
sample 18 · mbpp-plus:3fail · 0.0% · 3047ms · 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):
    result = False
    for i in range(2, int(math.sqrt(n)) + 1):
        if n % i == 0:
            result = True
    return result
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpef9en59u/solution.py", line 35, in <module>
    assertion(is_not_prime(*inp), exp, 0)
  File "/tmp/tmpef9en59u/solution.py", line 29, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: False, exp: True
Extracted: fail · Gold: pass
GLM-5.3-Flashexl3unknown protocol · unknown agent
by Per0 · shard 13 · 9/1/2026, 1:22:18 PM · cmtip5jn0059op401le18r4ot
83.3%
315/378 correct · 5 correct traces · 5 incorrect traces
Correct samples
sample 2 · mbpp-plus:85pass · 100.0% · 5922ms · 7f2f852d1745
Question
Write a function to find the surface area of a sphere.

Your code should pass these tests:
assert math.isclose(surfacearea_sphere(10), 1256.6370614359173, rel_tol=0.001)
assert math.isclose(surfacearea_sphere(15), 2827.4333882308138, rel_tol=0.001)
assert math.isclose(surfacearea_sphere(20), 5026.548245743669, 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 surface area of a sphere.

Your code should pass these tests:
assert math.isclose(surfacearea_sphere(10), 1256.6370614359173, rel_tol=0.001)
assert math.isclose(surfacearea_sphere(15), 2827.4333882308138, rel_tol=0.001)
assert math.isclose(surfacearea_sphere(20), 5026.548245743669, rel_tol=0.001)
Agent trace
import math
def surfacearea_sphere(r):
    return 4 * math.pi * r * r
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 3 · mbpp-plus:101pass · 100.0% · 4838ms · 164887d5337f
Question
Write a function to find the kth element in the given array using 1-based indexing.

Your code should pass these tests:
assert kth_element([12,3,5,7,19], 2) == 3
assert kth_element([17,24,8,23], 3) == 8
assert kth_element([16,21,25,36,4], 4) == 36
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 kth element in the given array using 1-based indexing.

Your code should pass these tests:
assert kth_element([12,3,5,7,19], 2) == 3
assert kth_element([17,24,8,23], 3) == 8
assert kth_element([16,21,25,36,4], 4) == 36
Agent trace
def kth_element(arr, k):
    return arr[k - 1]
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 5 · mbpp-plus:572pass · 100.0% · 12076ms · 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(lst):
    result = []
    for i in lst:
        if lst.count(i) == 1:
            result.append(i)
    return result
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 6 · mbpp-plus:465pass · 100.0% · 3330ms · 7c2413ccb409
Question
Write a function to drop empty items from a given dictionary.

Your code should pass these tests:
assert drop_empty({'c1': 'Red', 'c2': 'Green', 'c3':None})=={'c1': 'Red', 'c2': 'Green'}
assert drop_empty({'c1': 'Red', 'c2': None, 'c3':None})=={'c1': 'Red'}
assert drop_empty({'c1': None, 'c2': 'Green', 'c3':None})=={ 'c2': 'Green'}
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 drop empty items from a given dictionary.

Your code should pass these tests:
assert drop_empty({'c1': 'Red', 'c2': 'Green', 'c3':None})=={'c1': 'Red', 'c2': 'Green'}
assert drop_empty({'c1': 'Red', 'c2': None, 'c3':None})=={'c1': 'Red'}
assert drop_empty({'c1': None, 'c2': 'Green', 'c3':None})=={ 'c2': 'Green'}
Agent trace
def drop_empty(dict1):
  drop_dict = {key: value for (key, value) in dict1.items() if value is not None}
  return drop_dict
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 7 · mbpp-plus:271pass · 100.0% · 7632ms · 1b606d5232fd
Question
Write a python function that takes in an integer n and finds the sum of the first n even natural numbers that are raised to the fifth power.

Your code should pass these tests:
assert even_Power_Sum(2) == 1056
assert even_Power_Sum(3) == 8832
assert even_Power_Sum(1) == 32
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 that takes in an integer n and finds the sum of the first n even natural numbers that are raised to the fifth power.

Your code should pass these tests:
assert even_Power_Sum(2) == 1056
assert even_Power_Sum(3) == 8832
assert even_Power_Sum(1) == 32
Agent trace
def even_Power_Sum(n): 
    return sum((2 * i) ** 5 for i in range(1, n + 1))
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
Incorrect samples
sample 1 · mbpp-plus:753fail · 0.0% · 5960ms · 5e6562141f8d
Question
Write a function to find minimum k records from tuple list. https://www.geeksforgeeks.org/python-find-minimum-k-records-from-tuple-list/ - in this case a verbatim copy of test cases

Your code should pass these tests:
assert min_k([('Manjeet', 10), ('Akshat', 4), ('Akash', 2), ('Nikhil', 8)], 2) == [('Akash', 2), ('Akshat', 4)]
assert min_k([('Sanjeev', 11), ('Angat', 5), ('Akash', 3), ('Nepin', 9)], 3) == [('Akash', 3), ('Angat', 5), ('Nepin', 9)]
assert min_k([('tanmay', 14), ('Amer', 11), ('Ayesha', 9), ('SKD', 16)], 1) == [('Ayesha', 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 minimum k records from tuple list. https://www.geeksforgeeks.org/python-find-minimum-k-records-from-tuple-list/ - in this case a verbatim copy of test cases

Your code should pass these tests:
assert min_k([('Manjeet', 10), ('Akshat', 4), ('Akash', 2), ('Nikhil', 8)], 2) == [('Akash', 2), ('Akshat', 4)]
assert min_k([('Sanjeev', 11), ('Angat', 5), ('Akash', 3), ('Nepin', 9)], 3) == [('Akash', 3), ('Angat', 5), ('Nepin', 9)]
assert min_k([('tanmay', 14), ('Amer', 11), ('Ayesha', 9), ('SKD', 16)], 1) == [('Ayesha', 9)]
Agent trace
import heapq
def min_k(test_list, K):
    res = heapq.nsmallest(K, test_list, key=lambda x: x[1])
    return (res)
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpgh7lfzp6/solution.py", line 32, in <module>
    assertion(min_k(*inp), exp, 0)
  File "/tmp/tmpgh7lfzp6/solution.py", line 26, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: [], exp: [('Manjeet', 10), ('Akshat', 10, 'Akshat'), ('Akash', 10)]
Extracted: fail · Gold: pass
sample 4 · mbpp-plus:102fail · 0.0% · 8322ms · 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(word):
    return ''.join(x.capitalize() for x in word.split('_'))
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpmfonz66t/solution.py", line 30, in <module>
    assertion(snake_to_camel(*inp), exp, 0)
  File "/tmp/tmpmfonz66t/solution.py", line 24, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: PythonProgram, exp: ___PythonProgram
Extracted: fail · Gold: pass
sample 10 · mbpp-plus:757fail · 0.0% · 23506ms · 8edeefb53482
Question
Write a function to count the pairs of reverse strings in the given string list. https://www.geeksforgeeks.org/python-program-to-count-the-pairs-of-reverse-strings/

Your code should pass these tests:
assert count_reverse_pairs(["julia", "best", "tseb", "for", "ailuj"])== 2
assert count_reverse_pairs(["geeks", "best", "for", "skeeg"]) == 1
assert count_reverse_pairs(["makes", "best", "sekam", "for", "rof"]) == 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 function to count the pairs of reverse strings in the given string list. https://www.geeksforgeeks.org/python-program-to-count-the-pairs-of-reverse-strings/

Your code should pass these tests:
assert count_reverse_pairs(["julia", "best", "tseb", "for", "ailuj"])== 2
assert count_reverse_pairs(["geeks", "best", "for", "skeeg"]) == 1
assert count_reverse_pairs(["makes", "best", "sekam", "for", "rof"]) == 2
Agent trace
def count_reverse_pairs(test_list):
    res = sum(1 for i in range(len(test_list)) for j in range(i, len(test_list)) if test_list[j] == test_list[i][::-1])
    return res
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpwa306j9b/solution.py", line 31, in <module>
    assertion(count_reverse_pairs(*inp), exp, 0)
  File "/tmp/tmpwa306j9b/solution.py", line 25, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: 6, exp: 3
Extracted: fail · Gold: pass
sample 11 · mbpp-plus:391fail · 0.0% · 7062ms · 7059ffbe0cfc
Question
Write a function to convert more than one list to nested dictionary.

Your code should pass these tests:
assert convert_list_dictionary(["S001", "S002", "S003", "S004"],["Adina Park", "Leyton Marsh", "Duncan Boyle", "Saim Richards"] ,[85, 98, 89, 92])==[{'S001': {'Adina Park': 85}}, {'S002': {'Leyton Marsh': 98}}, {'S003': {'Duncan Boyle': 89}}, {'S004': {'Saim Richards': 92}}]
assert convert_list_dictionary(["abc","def","ghi","jkl"],["python","program","language","programs"],[100,200,300,400])==[{'abc':{'python':100}},{'def':{'program':200}},{'ghi':{'language':300}},{'jkl':{'programs':400}}]
assert convert_list_dictionary(["A1","A2","A3","A4"],["java","C","C++","DBMS"],[10,20,30,40])==[{'A1':{'java':10}},{'A2':{'C':20}},{'A3':{'C++':30}},{'A4':{'DBMS':40}}]
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 more than one list to nested dictionary.

Your code should pass these tests:
assert convert_list_dictionary(["S001", "S002", "S003", "S004"],["Adina Park", "Leyton Marsh", "Duncan Boyle", "Saim Richards"] ,[85, 98, 89, 92])==[{'S001': {'Adina Park': 85}}, {'S002': {'Leyton Marsh': 98}}, {'S003': {'Duncan Boyle': 89}}, {'S004': {'Saim Richards': 92}}]
assert convert_list_dictionary(["abc","def","ghi","jkl"],["python","program","language","programs"],[100,200,300,400])==[{'abc':{'python':100}},{'def':{'program':200}},{'ghi':{'language':300}},{'jkl':{'programs':400}}]
assert convert_list_dictionary(["A1","A2","A3","A4"],["java","C","C++","DBMS"],[10,20,30,40])==[{'A1':{'java':10}},{'A2':{'C':20}},{'A3':{'C++':30}},{'A4':{'DBMS':40}}]
Agent trace
def convert_list_dictionary(l1, l2, l3):
    result = [{l1[i]: {l2[i]: l3[i]}} for i in range(len(l1))]
    return result
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmphi8hhx_1/solution.py", line 31, in <module>
    assertion(convert_list_dictionary(*inp), exp, 0)
              ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
  File "/tmp/tmphi8hhx_1/solution.py", line 2, in convert_list_dictionary
    result = [{l1[i]: {l2[i]: l3[i]}} for i in range(len(l1))]
                              ~~^^^
IndexError: list index out of range
Extracted: fail · Gold: pass
sample 12 · mbpp-plus:311fail · 0.0% · 30539ms · 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 1
    for i in range(n.bit_length() - 1, -1, -1):
        if not (n >> i) & 1:
            return n | (1 << i)
    return n
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpd8qzfk1y/solution.py", line 35, in <module>
    assertion(set_left_most_unset_bit(*inp), exp, 0)
  File "/tmp/tmpd8qzfk1y/solution.py", line 29, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: 1, exp: 0
Extracted: fail · Gold: pass
GLM-5.3-Flash-tr3-4bpwexl3unknown protocol · unknown agent
by Per0 · shard 12 · 9/1/2026, 7:41:19 AM · cmticz1sp03g7p401z5jf3szq
82.8%
313/378 correct · 5 correct traces · 5 incorrect traces
Correct samples
sample 1 · mbpp-plus:424pass · 100.0% · 2839ms · b5e8c53a5c8b
Question
Write a function to extract only the rear index element of each string in the given tuple.

Your code should pass these tests:
assert extract_rear(('Mers', 'for', 'Vers') ) == ['s', 'r', 's']
assert extract_rear(('Avenge', 'for', 'People') ) == ['e', 'r', 'e']
assert extract_rear(('Gotta', 'get', 'go') ) == ['a', 't', 'o']
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 only the rear index element of each string in the given tuple.

Your code should pass these tests:
assert extract_rear(('Mers', 'for', 'Vers') ) == ['s', 'r', 's']
assert extract_rear(('Avenge', 'for', 'People') ) == ['e', 'r', 'e']
assert extract_rear(('Gotta', 'get', 'go') ) == ['a', 't', 'o']
Agent trace
def extract_rear(test_tuple):
    return [s[-1] for s in test_tuple]
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 2 · mbpp-plus:733pass · 100.0% · 19121ms · 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(A, x):
    (left, right) = (0, len(A) - 1)
    result = -1
    while left <= right:
        mid = (left + right) // 2
        if x == A[mid]:
            result = mid
            right = mid - 1
        elif x < A[mid]:
            right = mid - 1
        else:
            left = mid + 1
    return result
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 3 · mbpp-plus:226pass · 100.0% · 4915ms · 59e22af12e43
Question
Write a python function to remove the characters which have odd index values of a given string.

Your code should pass these tests:
assert odd_values_string('abcdef') == 'ace'
assert odd_values_string('python') == 'pto'
assert odd_values_string('data') == 'dt'
assert odd_values_string('lambs') == 'lms'
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 the characters which have odd index values of a given string.

Your code should pass these tests:
assert odd_values_string('abcdef') == 'ace'
assert odd_values_string('python') == 'pto'
assert odd_values_string('data') == 'dt'
assert odd_values_string('lambs') == 'lms'
Agent trace
def odd_values_string(str):
    return str[::2]
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 4 · mbpp-plus:764pass · 100.0% · 6256ms · 6022b04f8bc5
Question
Write a python function to count number of digits in a given string.

Your code should pass these tests:
assert number_ctr('program2bedone') == 1
assert number_ctr('3wonders') == 1
assert number_ctr('123') == 3
assert number_ctr('3wond-1ers2') == 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 count number of digits in a given string.

Your code should pass these tests:
assert number_ctr('program2bedone') == 1
assert number_ctr('3wonders') == 1
assert number_ctr('123') == 3
assert number_ctr('3wond-1ers2') == 3
Agent trace
def number_ctr(str):
    number_ctr = 0
    for i in range(len(str)):
        if str[i] >= '0' and str[i] <= '9':
            number_ctr += 1
    return number_ctr
Additional reasoning trace
sandbox: passed=true returncode=0 timed_out=false
Extracted: pass · Gold: pass
sample 5 · mbpp-plus:588pass · 100.0% · 2053ms · 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 14 · mbpp-plus:410fail · 0.0% · 10412ms · 99beca388833
Question
Write a function to find the minimum value in a given heterogeneous list.

Your code should pass these tests:
assert min_val(['Python', 3, 2, 4, 5, 'version'])==2
assert min_val(['Python', 15, 20, 25])==15
assert min_val(['Python', 30, 20, 40, 50, 'version'])==20
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 minimum value in a given heterogeneous list.

Your code should pass these tests:
assert min_val(['Python', 3, 2, 4, 5, 'version'])==2
assert min_val(['Python', 15, 20, 25])==15
assert min_val(['Python', 30, 20, 40, 50, 'version'])==20
Agent trace
def min_val(listval):
    return min(i for i in listval if isinstance(i, (int, float)))
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpdiq588tg/solution.py", line 30, in <module>
    assertion(min_val(*inp), exp, 0)
  File "/tmp/tmpdiq588tg/solution.py", line 24, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: 2.5, exp: 5
Extracted: fail · Gold: pass
sample 17 · mbpp-plus:16fail · 0.0% · 7148ms · 499676882309
Question
Write a function to that returns true if the input string contains sequences of lowercase letters joined with an underscore and false otherwise.

Your code should pass these tests:
assert text_lowercase_underscore("aab_cbbbc")==(True)
assert text_lowercase_underscore("aab_Abbbc")==(False)
assert text_lowercase_underscore("Aaab_abbbc")==(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 that returns true if the input string contains sequences of lowercase letters joined with an underscore and false otherwise.

Your code should pass these tests:
assert text_lowercase_underscore("aab_cbbbc")==(True)
assert text_lowercase_underscore("aab_Abbbc")==(False)
assert text_lowercase_underscore("Aaab_abbbc")==(False)
Agent trace
import re
def text_lowercase_underscore(text):
    patterns = '^[a-z]+_[a-z]+$'
    if re.search(patterns, text):
        return True
    else:
        return False
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpp3thddgl/solution.py", line 35, in <module>
    assertion(text_lowercase_underscore(*inp), exp, 0)
  File "/tmp/tmpp3thddgl/solution.py", line 29, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: False, exp: True
Extracted: fail · Gold: pass
sample 21 · mbpp-plus:446fail · 0.0% · 8461ms · 42cd4f935d26
Question
Write a python function to count the occurence of all elements of list in a tuple.

Your code should pass these tests:
assert count_Occurrence(('a', 'a', 'c', 'b', 'd'),['a', 'b'] ) == 3
assert count_Occurrence((1, 2, 3, 1, 4, 6, 7, 1, 4),[1, 4, 7]) == 6
assert count_Occurrence((1,2,3,4,5,6),[1,2]) == 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 occurence of all elements of list in a tuple.

Your code should pass these tests:
assert count_Occurrence(('a', 'a', 'c', 'b', 'd'),['a', 'b'] ) == 3
assert count_Occurrence((1, 2, 3, 1, 4, 6, 7, 1, 4),[1, 4, 7]) == 6
assert count_Occurrence((1,2,3,4,5,6),[1,2]) == 2
Agent trace
def count_Occurrence(tup, lst):
    count = 0
    for item in tup:
        if item in lst:
            count += 1
    return count
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmp26e_0_yw/solution.py", line 34, in <module>
    assertion(count_Occurrence(*inp), exp, 0)
  File "/tmp/tmp26e_0_yw/solution.py", line 28, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: 9, exp: 18
Extracted: fail · Gold: pass
sample 25 · mbpp-plus:735fail · 0.0% · 53105ms · 9c35a44d1d57
Question
Write a python function to toggle bits of the number except the first and the last bit. https://www.geeksforgeeks.org/toggle-bits-number-expect-first-last-bits/

Your code should pass these tests:
assert toggle_middle_bits(9) == 15
assert toggle_middle_bits(10) == 12
assert toggle_middle_bits(11) == 13
assert toggle_middle_bits(0b1000001) == 0b1111111
assert toggle_middle_bits(0b1001101) == 0b1110011
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 toggle bits of the number except the first and the last bit. https://www.geeksforgeeks.org/toggle-bits-number-expect-first-last-bits/

Your code should pass these tests:
assert toggle_middle_bits(9) == 15
assert toggle_middle_bits(10) == 12
assert toggle_middle_bits(11) == 13
assert toggle_middle_bits(0b1000001) == 0b1111111
assert toggle_middle_bits(0b1001101) == 0b1110011
Agent trace
```python
def set_middle_bits(n): 
    n |= n >> 1
    n |= n >> 2
    n |= n >> 4
    n |= n >> 8
    n |= n
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
File "/tmp/tmpwg6wqhib/solution.py", line 1
    ```python
    ^
SyntaxError: invalid syntax
Extracted: fail · Gold: pass
sample 31 · mbpp-plus:792fail · 0.0% · 5671ms · 1762888d70ba
Question
Write a python function to count the number of lists in a given number of lists.

Your code should pass these tests:
assert count_list([[1, 3], [5, 7], [9, 11], [13, 15, 17]]) == 4
assert count_list([[1,2],[2,3],[4,5]]) == 3
assert count_list([[1,0],[2,0]]) == 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 lists in a given number of lists.

Your code should pass these tests:
assert count_list([[1, 3], [5, 7], [9, 11], [13, 15, 17]]) == 4
assert count_list([[1,2],[2,3],[4,5]]) == 3
assert count_list([[1,0],[2,0]]) == 2
Agent trace
def count_list(input_list): 
    return len(input_list)
Additional reasoning trace
sandbox: passed=false returncode=1 timed_out=false
Traceback (most recent call last):
  File "/tmp/tmpki4cix7d/solution.py", line 30, in <module>
    assertion(count_list(*inp), exp, 0)
  File "/tmp/tmpki4cix7d/solution.py", line 24, in assertion
    assert out == exp, f"out: {out}, exp: {exp}"
           ^^^^^^^^^^
AssertionError: out: 3, exp: 1
Extracted: fail · Gold: pass