Run Details #651

Score

0

Correct (≥100)

0/1

Incorrect (<100)

1

Median Time

2760.0ms

Tokens Used

364

Cost

138µ$

Run Date: 2026-03-02 23:02:04
Coding question results (1)
0305_python_prime_factorization:0 Incorrect
Score: 0 • 2760ms • 364 tokens • 138µ$
Question: Write Python 3.12 code only. Define exactly one function named prime_factors(n). Return a list of prime factors in ascending order, with repetition. Raise TypeError if n is not an int. Raise ValueError if n <= 1. Do not use any imports (no numpy, requests, or other libraries). Sandbox note: dunder attribute access is blocked (for example, type(x).__name__). Avoid names/attributes starting with '__'. Expected output format: - Return exactly one fenced Markdown code block starting with ```python and ending with ```. - Put only valid Python code inside that block (no prose before/after). - Use 4 spaces for indentation (not tabs). - Do not return JSON and do not wrap code in a "function" key. Sample input/output behavior: - prime_factors(36) -> [2, 2, 3, 3] Task: Write a Python 3.12 function for prime factorization.
Submitted code
def prime_factors(n):
    if not isinstance(n, int):
        raise TypeError("Input must be an integer")
    if n <= 1:
        raise ValueError("Input must be a positive integer")

    factors = []
    i = 2
    while i * i <= n:
        if n % i == 0:
            factors.append(i)
            while n % i == 0:
                n //= i
        i += 1
    if n > 1:  
        factors.append(n)

    return sorted(factors)
``` 
Test case results
# Status Args Expected Actual Error
0 Fail - - - SyntaxError: invalid syntax