Objective Assessment | Actual Questions with Verified
Answers | New 2025/2026 Update | 100% Correct.
Create a solution that accepts any three integer inputs representing the base (b1,
b2) and height (h) measurements of a trapezoid in meters. Output the exact area
of the trapezoid in square meters as a float value. The exact area of a trapezoid
can be calculated by finding the average of the two base measurements, then
multiplying by the height measurement.
Trapezoid Area Formula:A = [(b1 + b2) / 2] * h
The solution output should be in the format
Trapezoid area: area_value square meters - answer- ;base_1 = int(input())
base_2 = int(input())
height = int(input())
area = 0.5 * (base_1 + base_2) * height
print(f'Trapezoid area: {area:.1f} square meters')
Create a solution that accepts five integer inputs. Output the sum of the five
inputs three times, converting the inputs to the requested data type prior to
finding the sum.
,First output: sum of five inputs maintained as integer values
Second output: sum of five inputs converted to float values
Third output: sum of five inputs converted to string values (concatenate)
The solution output should be in the format
Integer: integer_sum_value Float: float_sum_value String: string_sum_value -
answer- ;input1 = int(input())
input2 = int(input())
input3 = int(input())
input4 = int(input())
input5 = int(input())
intger_sum = input1 + input2 + input3 + input4 + input5
float_sum = float(input1 + input2 + input3 + input4 + input5)
string_sum = str(input1) + str(input2) + str(input3) + str(input4) + str(input5)
print(f'Integer: {intger_sum}')
print(f'Float: {float_sum}')
print(f'String: {string_sum}')
Task:
Create a solution that accepts an integer input representing a 9-digit unformatted
student identification number. Output the identification number as a string with
no spaces.
The solution output should be in the format
111-22-3333 - answer- ;id_num = int(input())
,format_id_num = f'{id_num // 1000000}-{(id_num // 10000) % 100}-{id_num %
10000:04d}'
print(format_id_num)
Task:
Create a solution that accepts an integer input to compare against the following
list:
predef_list = [4, -27, 15, 33, -10]
Output a Boolean value indicating whether the input value is greater than the
maximum value from predef_list
The solution output should be in the format
Greater Than Max? Boolean_value - answer- ;user = int(input())
greater_than = user > max(predef_list)
print(f'Greater Than Max? {greater_than}')
Task:
Create a solution that accepts one integer input representing the index value for
any of the string elements in the following list:
frameworks = ["Django", "Flask", "CherryPy", "Bottle", "Web2Py", "TurboGears"]
Output the string element of the index value entered. The solution should be
placed in a try block and implement an exception of "Error" if an incompatible
integer input is provided.
The solution output should be in the format
, frameworks_element - answer- ;try:
index = int(input())
if 0 <= index < len(frameworks):
print(frameworks[index])
else:
raise ValueError("Error")
except ValueError:
print("Error")
Task:
Create a solution that accepts an integer input representing water temperature in
degrees Fahrenheit. Output a description of the water state based on the
following scale:
If the temperature is below 33° F, the water is "Frozen".
If the water is between 33° F and 80° F (including 33), the water is "Cold".
If the water is between 80° F and 115° F (including 80), the water is "Warm".
If the water is between 115° F and 211° (including 115) F, the water is "Hot".
If the water is greater than or equal to 212° F, the water is "Boiling".
Additionally, output a safety comment only during the following circumstances:
If the water is exactly 212° F, the safety comment is "Caution: Hot!"
If the water temperature is less than 33° F, the safety comment is "Watch out for
ice!"
The solution output should be in the format
water_state
optional_safety_comment - answer- ;temperature = int(input())