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Q: What is the decimal number 11111 converted into binary?

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It is number 31.

If that's binary, it becomes 31 base 10

11111 = 31

That is 31 in decimal

The largest decimal number is binary 11111, which is decimal 31.

11111 - 11111011 = −11011100 or converted to decimal 31 - 251 = −220

1 1 1 1 1 is already a binary whole number.When converted to base-10 (decimal) notation,you discover that it's the number 31 .

3124+23+22+21+20 = 16+8+4+2+131 base 10

31 - it's binary equivalent is 11111

The number 31 (decimal) can be represented as a binary number this way: 11111 ...which is 1 + 2 + 4 + 8 + 16 = 31 Note the number 31 is one less than a power of two. Numbers like that are always strings of 1's for binary digits.

31 is the correct answer. We arrive at the answer by the following process: 24 + 23 + 22 + 21 + 20 = 16+8+4+2+1=31 in decimal.

11111

31 in the binary system is 11111.

11111 (31 = 16 + 8 + 4 + 2 + 1)

It is -11111.

11111

( 1 1 1 1 1 )2 = ( 31 )10

11111 looks like a prime but it;s not. 41 * 271 = 11111. 11111 is a composite number.

There are an infinite number of numbers between 1 and 11111.

The factors of 11111 are 1, 41, 271, 11111, which makes it composite.

"Binary decimal" is a contradiction in terms. Decimal has a base of 10, binary a base of 2 and hexadecimal a base of 16.The way I would do it is:If you have a value in binary then convert this to a decimal value. Then convert it to hexadecimal remembering that the number will now be comprised by the following (where x represents the digit):The first digit (from right to left) will equal x * 160, the next will equal x * 161 and so forth...An example:So in binary 11111 = (1 * 20) + (1 * 21) + (1 * 22) + (1 * 23) + (1 * 24) = 1 + 2 + 4 + 8 + 16 = 31 (in decimal).To write this in hexadecimal, 31 would be (15 * 160) + (1 * 161) = 1FNote: A tip - If you are using a Windows operating system, then if you go to the Start menu and choose search/run and type in "calc" or "calculator" then you will get a virtual calculator to use. If you choose "programmer" from the View menu and then choose the "Bin" button and type in a binary value and then choose the "Hex" button then the binary value will be converted to hexadecimal. (The above certainly applies for Windows 7).

decimal form = .11111... percentage form = 11.11 %

1, 41, 271, 11111 11111 is composite.

Assuming you're talking about bits, the answer is always "2 to the x power" where in this case x is 3. This is obviously a homework question, so instead of giving you the answer, I'll give you the explanation. In the case of 4 bits, you'd have 16 values possible. 8 bits would be 256. If you consider a bit to be a digit where the lowest number is 0 and the highest number is 1, then there are 2 possible values a bit can be. In the case of decimal (your normal counting numbers), the lowest value is 0 and the highest is 9 which is a maximum of 10. If you have 3 decimal digits, there are 1000 possible decimal sequences or combinations that those numbers can be. Starting at 000 and working up to 999. So you can calculate that by saying 10 to the 3rd power or 10x10x10 is 1000. If you're solving for 2, then you'd multiply by 2 instead of 10. For example if you had 5 binary digits, your biggest number will be 11111 which is 31 in decimal, which means 5 digits of binary can go from 00000 to 11111 or 0 to 31. Or 32 possible values. You can calculate this easily by multiplying 2 five times. 2x2x2x2x2 = 32.

Approximately: 11111