101101101 = 16D
it is itself in a binary form :) but if its in decimal form.. then its binary equivalent will be..(10011100011011) if it is in binry form.. its equivalent will be..(19)
51 in binary is... 110011
The binary equivalent of the decimal number 14 is 00001110.
11 + ab is the expression.
The binary equivalent of Hexidecimal B3 = 1011 0011
101101101 = 16D
in hexidecimal, ten is A in binary, ten is 1010
1234 = 4d2
assuming that the full stops break up the binary numbers: Binary 1000100 = Hex 44 Binary 11010010 = Hex D2 Binary 1000011 = Hex 43 Binary 10110011 = Hex B3
13 and 14 respectively in decimal D and E respectively in Hexidecimal
Hexidecimal
Binary Form
That depends what you mean by "B", and what you mean by "binary code" assuming that by "binary code", you actually mean a binary representation of it's ascii value, then the answer is 1000010. The ascii value of the character "B" is 66 in decimal, which is 1000010 is that value in binary. If on the other hand, you mean "what is the binary value of the hexidecimal number B?", then the answer is 1011.
You need to separate the binary number into groups of 4 binary digit (starting from the right); then you look up each group in a conversion table. In this case, the separation is:0010 0000 So in hexadecimal, that would be: 20
with hexidecimal you neednt use as many chartictors to represent a number. in binary 15 would be 01111 where as in hex it would be E resulting in much quicker coding times
It's a form in music shown as "AB"