To convert a decimal number to a binary number, you need to have each number be an integer. So, the first step is to make sure your fractional part really is fractional. Convert each integer to binary separately.
1 and 4/5 to binary would be this:
1 -> 1
4 -> 100
5 -> 101
1 and 100/101 or 1001/101
If it's already in decimal form (instead of 1 and 4/5, you have 1.8), then there's no easy way to do it that I know of. This is partly because the only decimals in binary that don't continue on forever are those which, in fractions form, have denominators made only of 2's. 1/2, 1/4, 3/4, 1/8 and so on.
You cannot. A mixed number, by definition, has a fractional part. In converting to a decimal number, you cannot get rid of that fractional part and so you can never convert it to a decimal integer.
That question is defective, and it has no answer.' 125 ' is not a binary number.A binary number never has a digit bigger than ' 1 ' in it.
The binary representation of the decimal number 122 is 1111010. This is obtained by converting the decimal number into its binary form, where each bit represents a power of 2. In this case, 122 can be expressed as (64 + 32 + 16 + 8 + 2), corresponding to the binary digits.
110.101 is already a decimal number. Unless that is intended to be two binary numbers with a decimal point between them for some reason. (decimal points are not used to represent fractional numbers in the binary system).
The decimal number 166 can be represented as a binary number by converting it through repeated division by 2. The binary equivalent of 166 is 10100110. This means that in binary, 166 is composed of 1s and 0s that represent powers of 2.
You cannot. A mixed number, by definition, has a fractional part. In converting to a decimal number, you cannot get rid of that fractional part and so you can never convert it to a decimal integer.
That question is defective, and it has no answer.' 125 ' is not a binary number.A binary number never has a digit bigger than ' 1 ' in it.
25 and nothing that had a decimal point well the number 369.3125 decimal. to convert to binary it worked fine the whole number 369 by justnumber by just dividing the desired base so since i wanted binary
The binary representation of the decimal number 122 is 1111010. This is obtained by converting the decimal number into its binary form, where each bit represents a power of 2. In this case, 122 can be expressed as (64 + 32 + 16 + 8 + 2), corresponding to the binary digits.
110.101 is already a decimal number. Unless that is intended to be two binary numbers with a decimal point between them for some reason. (decimal points are not used to represent fractional numbers in the binary system).
The decimal number 166 can be represented as a binary number by converting it through repeated division by 2. The binary equivalent of 166 is 10100110. This means that in binary, 166 is composed of 1s and 0s that represent powers of 2.
You could call it writing a number in different forms.
To convert a decimal number to binary, you divide the decimal number by 2 and write down the remainder. Then, divide the quotient by 2 and write down the remainder again. Repeat this process until the quotient is 0. The binary number is the remainders read in reverse order.
The octal equivalent of decimal number 16 is 20. In octal, each digit represents three binary digits, so converting decimal 16 (which is 10000 in binary) into octal gives 20.
100, 104.858, or 95.367, depending on if you mean decimal to decimal, binary to binary, decimal to binary, or binary to decimal. Simply, decimal megabytes, used by the storage industry, is 1,000KB, where each KB is 1,000 bytes. Binary megabytes, used by programmers (such as Microsoft, Linux, etc) are 1,024 KB, where each KB is 1,024 bytes (2^10, or 0x0200). Converting from decimal to binary will yield a smaller number of megabytes, while converting from binary to decimal will result in more megabytes.
Steps to convert fractional decimal to binary: 1.Multiply the number fractional part) successively by 2 and note the integer part of product. 2.Repeat the process till the fractional part becomes 0 or required accuracy is reached. 3.Binary equivalent of fractional part are the carries i.e. integer which is noted separately. Write down these carries from top to bottom. e.g. Conversion of 0.75 to binary 0.75*2=1.50 1 0.50*2=1.00 1 ans==> (0.11)
In binary, the number 1000 is represented as 1111101000. This is calculated by converting the decimal number 1000 into binary, which involves dividing the number by 2 and recording the remainders. The binary representation uses only the digits 0 and 1, where each digit represents a power of 2.