Decipher Binary Number
Swipe to start coding
So far, so good 😃 Convert binary code to the decimal one. Fill the gaps and follow the algorithm. The result of your manipulations is a specific number in math .
- Create variable
decimal_numberfor storing converted decimal number and assign0to it. - Print the binary number.
- Define the variable
powerand assign0to it. - Define the loop that executes till the
binary numberis0. - Count the remainder of division
binary_numberby10and assign it to the variablelast_digit. - Multiply
last_digitby the2raised to the relevant power. - Add the
resultto thedecimal_number. - Decrease
binary_numberusing integer division by10. - Increase
powerby1. - Print the
decimal number.
Solution
Note
You received one of the Armstrong number: the sum of the cubes of its own digits, let me explain this: 370 = 3^3 + 7^3 + 0^3 = 27 + 343 + 0 = 370
Merci pour vos commentaires !
single
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Decipher Binary Number
Glissez pour afficher le menu
Swipe to start coding
So far, so good 😃 Convert binary code to the decimal one. Fill the gaps and follow the algorithm. The result of your manipulations is a specific number in math .
- Create variable
decimal_numberfor storing converted decimal number and assign0to it. - Print the binary number.
- Define the variable
powerand assign0to it. - Define the loop that executes till the
binary numberis0. - Count the remainder of division
binary_numberby10and assign it to the variablelast_digit. - Multiply
last_digitby the2raised to the relevant power. - Add the
resultto thedecimal_number. - Decrease
binary_numberusing integer division by10. - Increase
powerby1. - Print the
decimal number.
Solution
Note
You received one of the Armstrong number: the sum of the cubes of its own digits, let me explain this: 370 = 3^3 + 7^3 + 0^3 = 27 + 343 + 0 = 370
Merci pour vos commentaires !
single