[5.1] The hardware below is used to divide two unsigned integers. Divisor 64-bit ALU Remainder 64 bits 64 bits Shift right Write 32-bit ALU Divisor a. Find the 6-bit representation of the Dividend 41 ten and Divisor 5ten. b. Show the contents of each register at each step of a division, using a table with the head Iteration, Operation, Quotient, Divisor, Remainder. c. Consider the optimize division hardware shown below. Show the contents of each register each step of a division, using a table with the header: Iteration, Operation, Divis Remainder. Control test 32 bits Remainder 64 bits Quotient Shift left 32 bits Shift right Shift left Write d. Convert the result back to base 10 to verify your results. Control test

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[5.1] The hardware below is used to divide two unsigned integers.
Divisor
64-bit ALU
Remainder
64 bits
64 bits
Write
32-bit ALU
Divisor
Shift right.
a. Find the 6-bit representation of the Dividend 41 ten and Divisor 5ten.
b. Show the contents of each register at each step of a division, using a table with the header:
Iteration, Operation, Quotient, Divisor, Remainder.
c. Consider the optimize division hardware shown below. Show the contents of each register at
each step of a division, using a table with the header: Iteration, Operation, Divisor,
Remainder.
32 bits
Remainder
Control
test
64 bits
Quotient
Shift left
32 bits
Shift right
Shift left
Write
d. Convert the result back to base 10 to verify your results.
Control
test
Transcribed Image Text:[5.1] The hardware below is used to divide two unsigned integers. Divisor 64-bit ALU Remainder 64 bits 64 bits Write 32-bit ALU Divisor Shift right. a. Find the 6-bit representation of the Dividend 41 ten and Divisor 5ten. b. Show the contents of each register at each step of a division, using a table with the header: Iteration, Operation, Quotient, Divisor, Remainder. c. Consider the optimize division hardware shown below. Show the contents of each register at each step of a division, using a table with the header: Iteration, Operation, Divisor, Remainder. 32 bits Remainder Control test 64 bits Quotient Shift left 32 bits Shift right Shift left Write d. Convert the result back to base 10 to verify your results. Control test
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