Question: 10.18 Bit counting circuit, design. Using full adders, design a circuit that accepts a se3ven-bit input and outputs the number of inputs that are 1
10.18 Bit counting circuit, design. Using full adders, design a circuit that accepts a se3ven-bit input and outputs the number of inputs that are 1 as a three-bit binary number. (3 marks) 10.26 Negative number, II. Express -17 as an 8-bit sign-magnitude, 1complent and 2s compliment binary number. (3 marks) 10.41 Multiplication II. Multiply the following pair of unsigned binary numbers. (3 marks)
0110 * 0011
10.53 Binary division, II. Divide the following pair of unsigned binary numbers (show each step of the process): 101110_2011_2 (3 marks)
Chapter 11. 11.2 Fixed-point representation II, Convert the following fixed-point number to decimal: 11.0101 in s1.4 (6 marks) 11.6 Fixed-point representation II. Convert 0.3774 to the nearest fixed-point s1.5 representation. Give the absolute and relative errors. (6 marks) 11.14 Floating point representation II. Convert the following floating-point number with a bias of 3 to decimal: 1010E100 in 4E3. (6 marks) 11.18 Floating-point representation, II. Convert 100 000 to s3E5 floating-point format with a bias of 8. Give the relative and absolute errors. (6 marks)
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