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WGU D335 Introduction to Programming in Python Exam Updated Questions and Answers (2026/2027) | Practice Review | A+ Verified

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WGU D335 Introduction to Programming in Python Exam Updated Questions and Answers (2026/2027) | Practice Review | A+ Verified

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WGU D335 Introduction To Programming In Python
Course
WGU D335 Introduction to Programming in Python

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WGU D335 Introduction to Programming
in Python Exam Updated Questions and
Answers (2026/2027) | Practice Review |
A+ Verified
• Create a solution that accepts three integer inputs representing the number of
times an employee travels to a job site. Output the total distance traveled to two
decimal places given the following miles per employee commute to the job site.
Output the total distance traveled to two decimal places given the following miles
per employee commute to the job site:
Employee A: 15.62 miles
Employee B: 41.85 miles
Employee C: 32.67 miles
The solution output should be in the format
Distance: total_miles_traveled miles -✓✓travels = {
"A": int(input()),
"B": int(input()),
"C": int(input())
}
miles_per_employee = {"A": 15.62, "B":41.85, "C": 32.67}
total_miles_traveled = sum(travels[employee] * miles_per_employee[employee]
for employee in travels)
print(f"Distance: {total_miles_traveled:.2f} miles")


• Create a solution that accepts an integer input representing any number of ounces.
Output the converted total number of tons, pounds, and remaining ounces based on
the input ounces value. There are 16 ounces in a pound and 2,000 pounds in a ton.
The solution output should be in the format

, Tons: value_1 Pounds: value_2 Ounces: value_3 -✓✓ounces = int(input())
value_1 = ounces // (16 * 2000)
value_2 = (ounces % (16 * 2000)) // 16
value_3 = ounces % 16
print(f"Tons: {value_1}")
print(f"Pounds: {value_2}")
print(f"Ounces: {value_3}")


• Create a solution that accepts an integer input representing the index value for
any any of the five elements in the following list:
various_data_types = [516, 112.49, True, "meow", ("Western", "Governors",
"University"), {"apple": 1, "pear": 5}]
Using the built-in function type() and getting its name by using the .name attribute,
output data type (e.g., int", "float", "bool", "str") based on the input index value of
the list element.
The solution output should be in the format
Element index_value: data_type -✓✓index_value = int(input())
data_type = type(various_data_types[index_value]).__name__
print(f"Element {index_value}: {data_type}")


• 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 -✓✓b1 = int(input())

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