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How do you Convert the 255 decimal to binary? - Answers

25510 = 111111112 To convert any number from one base to another, repeatedly divide by the target base, rounding down to each integer result, until the result is zero. Write down the remainders in reverse order, and you have the new representation. This works in the reverse order, such as going from base 2 to base 10. Just remember that the division is in the base, and per the rules, of the source base. In this case, you would be dividing by 10102, and getting remainders of 1012 (5), 1012 (5), and 102 (2).



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How do you Convert the 255 decimal to binary? - Answers

https://math.answers.com/math-and-arithmetic/How_do_you_Convert_the_255_decimal_to_binary

25510 = 111111112 To convert any number from one base to another, repeatedly divide by the target base, rounding down to each integer result, until the result is zero. Write down the remainders in reverse order, and you have the new representation. This works in the reverse order, such as going from base 2 to base 10. Just remember that the division is in the base, and per the rules, of the source base. In this case, you would be dividing by 10102, and getting remainders of 1012 (5), 1012 (5), and 102 (2).



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https://math.answers.com/math-and-arithmetic/How_do_you_Convert_the_255_decimal_to_binary

How do you Convert the 255 decimal to binary? - Answers

25510 = 111111112 To convert any number from one base to another, repeatedly divide by the target base, rounding down to each integer result, until the result is zero. Write down the remainders in reverse order, and you have the new representation. This works in the reverse order, such as going from base 2 to base 10. Just remember that the division is in the base, and per the rules, of the source base. In this case, you would be dividing by 10102, and getting remainders of 1012 (5), 1012 (5), and 102 (2).

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      25510 = 111111112 To convert any number from one base to another, repeatedly divide by the target base, rounding down to each integer result, until the result is zero. Write down the remainders in reverse order, and you have the new representation. This works in the reverse order, such as going from base 2 to base 10. Just remember that the division is in the base, and per the rules, of the source base. In this case, you would be dividing by 10102, and getting remainders of 1012 (5), 1012 (5), and 102 (2).
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