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Python Program to find Average of N Numbers
Photo Credit to CodeToFun
π Introduction
In the world of programming, dealing with numerical data and performing calculations is a fundamental skill. One common task is finding the average of a set of numbers. This is a basic operation used in various applications, ranging from statistical analysis to data processing.
In this tutorial, we will explore a Python program designed to find the average of N numbers. The program takes a user-specified number of inputs, calculates their sum, and then computes the average.
π Example
Let's delve into the Python code that accomplishes this task.
# Function to find the average of N numbers
def find_average(n):
sum_of_numbers = 0
# Input N numbers from the user
print(f"Enter {n} numbers:")
for i in range(n):
# Input each number and add to the sum
number = float(input())
sum_of_numbers += number
# Calculate the average
average = sum_of_numbers / n
return average
# Driver program
# Replace this value with your desired number of inputs (N)
n = 5
# Call the function to find the average
result = find_average(n)
# Display the result
print(f"The average of the entered numbers is: {result}")
π» Testing the Program
To test the program with different numbers, modify the value of n in the code.
Enter 5 numbers: 1 2 3 4 5 The average of the entered numbers is: 3.000000
π§ How the Program Works
- The program defines a function find_average that takes an integer n as input, prompts the user to input n numbers, calculates their sum, and then computes and returns the average.
- Replace the value of n in the main program with your desired number of inputs.
- The program calls the find_average function, and the result is displayed.
π§ Understanding the Concept to find Average of N Numbers
Before delving into the code, let's understand the concept behind finding the average of N numbers. The program uses a loop to input N numbers, calculates their sum, and then divides the sum by N to find the average.
For example, if the user enters 5 numbers (10, 15, 20, 25, 30), the program calculates (10 + 15 + 20 + 25 + 30) / 5, resulting in an average of 20.
π’ Optimizing the Program
While the provided program is effective, consider exploring and implementing error handling for input validation to enhance the program's robustness.
Feel free to incorporate and modify this code as needed for your specific use case. Happy coding!
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