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WGU D335 Introduction to Programming in Python questions with answers

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WGU D335 Introduction to Programming in Python questions with answers

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









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WGU D335 Introduction to Programming in Python
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WGU D335 Introduction to Programming in Python

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Uploaded on
June 14, 2025
Number of pages
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Written in
2024/2025
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WGU D335 Introduction to |\ |\ |\ |\




Programming in Python questions |\ |\ |\ |\




with answers |\




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 - CORRECT ANSWERS
|\ |\ |\ |\ |\ |\


✔✔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 - CORRECT
|\ |\ |\ |\ |\ |\ |\ |\


ANSWERS ✔✔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 - CORRECT ANSWERS
|\ |\ |\ |\ |\ |\


✔✔index_value = int(input()) |\ |\




data_type = type(various_data_types[index_value]).__name__
|\ |\




print(f"Element {index_value}: {data_type}") |\ |\

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