No
To multiply the binary numbers 1011 (which is 11 in decimal) and 1001 (which is 9 in decimal), we perform binary multiplication similar to decimal multiplication. The steps involve shifting and adding based on the bits of the second number: 1011 0000 (this is 1011 shifted left by 0, as the last digit of 1001 is 1) 1011 (this is 1011 shifted left by 1, as the second digit of 1001 is 0, so we add nothing) 0000 (this is 1011 shifted left by 2, as the third digit of 1001 is 0, so we add nothing) 1011 (this is 1011 shifted left by 3, as the first digit of 1001 is 1) Adding these together gives us 10011111 in binary. Therefore, the product of 1011 and 1001 is 10011111, which is 99 in decimal.
a)5b39+39a2=101 1011 0011 1001+11 1001 1010 0010=1001 0100 1101 1011 af=0 sf=1 zf=0 cf=0 b)5b39+dc49=101 1011 0011 1001+1101 1100 0100 1001=1 0011 0111 1000 0010 af=1 sf=0 zf=0 cf=1
easy, 1011. in binary of course. convert 1011 binary to decimal you get 11.
A nibble consists of 4 bits. The binary number "1011 1101 1001 1110" contains 16 bits in total. Therefore, to find the number of nibbles, you divide the total number of bits by 4, which results in 4 nibbles.
The answer is 1001, which is just 2 more than 999.
To multiply the binary numbers 1011 (which is 11 in decimal) and 1001 (which is 9 in decimal), we perform binary multiplication similar to decimal multiplication. The steps involve shifting and adding based on the bits of the second number: 1011 0000 (this is 1011 shifted left by 0, as the last digit of 1001 is 1) 1011 (this is 1011 shifted left by 1, as the second digit of 1001 is 0, so we add nothing) 0000 (this is 1011 shifted left by 2, as the third digit of 1001 is 0, so we add nothing) 1011 (this is 1011 shifted left by 3, as the first digit of 1001 is 1) Adding these together gives us 10011111 in binary. Therefore, the product of 1011 and 1001 is 10011111, which is 99 in decimal.
The sum of 1,011 and 1,001 is 2,012. Unless they are binary numbers, in which case 1011 + 1001 = 10100
1001
a)5b39+39a2=101 1011 0011 1001+11 1001 1010 0010=1001 0100 1101 1011 af=0 sf=1 zf=0 cf=0 b)5b39+dc49=101 1011 0011 1001+1101 1100 0100 1001=1 0011 0111 1000 0010 af=1 sf=0 zf=0 cf=1
easy, 1011. in binary of course. convert 1011 binary to decimal you get 11.
1 10 11 100 101 110 111 1000 1001 1010 1011 1100 ...1 10 11 100 101 110 111 1000 1001 1010 1011 1100 ...1 10 11 100 101 110 111 1000 1001 1010 1011 1100 ...1 10 11 100 101 110 111 1000 1001 1010 1011 1100 ...
The smallest whole number is 1001.
They are: 999 and 1001
A nibble consists of 4 bits. The binary number "1011 1101 1001 1110" contains 16 bits in total. Therefore, to find the number of nibbles, you divide the total number of bits by 4, which results in 4 nibbles.
The ANSWER is 4
The answer to this would be 5b39+39a2=101 1011 0011 1001+11 1001 1010 0010=1001 0100 1101 1011 af=0 sf=1. This would be how this should be worked out to get the correct answer that af=0 and sf=1.
The answer is 1001, which is just 2 more than 999.