Date: 18 July, 2023
Model: gpt-3.5-turbo
Temperature: 0.2
Passing runs: 10
Total runs: 10
Success rate: 100%
Tokens: 147
def triangle_area(a, b, c):
'''
Given the lengths of the three sides of a triangle. Return the area of
the triangle rounded to 2 decimal points if the three sides form a valid triangle.
Otherwise return -1
Three sides make a valid triangle when the sum of any two sides is greater
than the third side.
Example:
triangle_area(3, 4, 5) == 6.00
triangle_area(1, 2, 10) == -1
'''
The above is an incomplete Python code fragment. Return the complete and correct code with no additional text.
def triangle_area(a, b, c):
'''
Given the lengths of the three sides of a triangle. Return the area of
the triangle rounded to 2 decimal points if the three sides form a valid triangle.
Otherwise return -1
Three sides make a valid triangle when the sum of any two sides is greater
than the third side.
Example:
triangle_area(3, 4, 5) == 6.00
triangle_area(1, 2, 10) == -1
'''if a + b <= c or a + c <= b or b + c <= a:
return -1
s = (a + b + c)/2
area = (s * (s - a) * (s - b) * (s - c)) ** 0.5
area = round(area, 2)
return area
def check(candidate):
# Check some simple cases
assert candidate(3, 4, 5) == 6.00, "This prints if this assert fails 1 (good for debugging!)"
assert candidate(1, 2, 10) == -1
assert candidate(4, 8, 5) == 8.18
assert candidate(2, 2, 2) == 1.73
assert candidate(1, 2, 3) == -1
assert candidate(10, 5, 7) == 16.25
assert candidate(2, 6, 3) == -1
# Check some edge cases that are easy to work out by hand.
assert candidate(1, 1, 1) == 0.43, "This prints if this assert fails 2 (also good for debugging!)"
assert candidate(2, 2, 10) == -1
Start time: 2023-07-18 17:17:47
Duration: 3.89s
Completion tokens: 92
Result: Pass
def triangle_area(a, b, c):
if a + b > c and a + c > b and b + c > a:
s = (a + b + c) / 2
area = (s * (s - a) * (s - b) * (s - c)) ** 0.5
return round(area, 2)
else:
return -1
Start time: 2023-07-18 17:17:43
Duration: 3.76s
Completion tokens: 87
Result: Pass
def triangle_area(a, b, c):
if a + b > c and a + c > b and b + c > a:
s = (a + b + c) / 2
area = (s * (s - a) * (s - b) * (s - c)) ** 0.5
return round(area, 2)
else:
return -1
Start time: 2023-07-18 17:17:39
Duration: 3.82s
Completion tokens: 87
Result: Pass
def triangle_area(a, b, c):
if a + b > c and a + c > b and b + c > a:
s = (a + b + c) / 2
area = (s * (s - a) * (s - b) * (s - c)) ** 0.5
return round(area, 2)
else:
return -1
Start time: 2023-07-18 17:17:35
Duration: 3.62s
Completion tokens: 87
Result: Pass
def triangle_area(a, b, c):
if a + b > c and a + c > b and b + c > a:
s = (a + b + c) / 2
area = (s * (s - a) * (s - b) * (s - c)) ** 0.5
return round(area, 2)
else:
return -1
Start time: 2023-07-18 17:17:01
Duration: 34.67s
Completion tokens: 87
Result: Pass
def triangle_area(a, b, c):
if a + b > c and a + c > b and b + c > a:
s = (a + b + c) / 2
area = (s * (s - a) * (s - b) * (s - c)) ** 0.5
return round(area, 2)
else:
return -1
Start time: 2023-07-18 17:16:57
Duration: 3.8s
Completion tokens: 87
Result: Pass
def triangle_area(a, b, c):
if a + b > c and a + c > b and b + c > a:
s = (a + b + c) / 2
area = (s * (s - a) * (s - b) * (s - c)) ** 0.5
return round(area, 2)
else:
return -1
Start time: 2023-07-18 17:16:53
Duration: 3.72s
Completion tokens: 87
Result: Pass
def triangle_area(a, b, c):
if a + b > c and a + c > b and b + c > a:
s = (a + b + c) / 2
area = (s * (s - a) * (s - b) * (s - c)) ** 0.5
return round(area, 2)
else:
return -1
Start time: 2023-07-18 17:16:49
Duration: 3.68s
Completion tokens: 87
Result: Pass
def triangle_area(a, b, c):
if a + b > c and a + c > b and b + c > a:
s = (a + b + c) / 2
area = (s * (s - a) * (s - b) * (s - c)) ** 0.5
return round(area, 2)
else:
return -1
Start time: 2023-07-18 17:16:45
Duration: 3.81s
Completion tokens: 87
Result: Pass
def triangle_area(a, b, c):
if a + b > c and a + c > b and b + c > a:
s = (a + b + c) / 2
area = (s * (s - a) * (s - b) * (s - c)) ** 0.5
return round(area, 2)
else:
return -1
Start time: 2023-07-18 17:16:42
Duration: 3.78s
Completion tokens: 87
Result: Pass
def triangle_area(a, b, c):
if a + b > c and a + c > b and b + c > a:
s = (a + b + c) / 2
area = (s * (s - a) * (s - b) * (s - c)) ** 0.5
return round(area, 2)
else:
return -1