Question 5: Based on the for 32-bit division hardware diagram shown in the next page. Perform the division for 4 bits unsigned integers. Where the dividend is 1011 and the divisor is 0010. Write the division table, with header steps, action, quotient, divisor, and remainder. Divisor 64-DRALU Remainder 64 bits Shit right 64 bits Wile Control Quotient Shill left Convert the dividend, divisor, and the calculated results in question (5-1) to decimal to verify your results. Consider the number -1.36875 x 10¹ as the dividend and 5.625 x 10¹¹ as the divisor. Find their binary representation. Put the results that you got it in question (5-3) in the 8-bit quarter-precision format (1 for sign bit, 2 for exponent, and 5 for fraction) e. Show all the steps of the division to results that you got it in question (5-4). Indicate if there is overflow or underflow by assuming that there is a guard bit, a round bit, and a sticky bit. f. Find the decimal number representation for the bit pattern OxOBDO0000 if it is: 1. floating-point number. Use the IEEE 754 standard. 2. signed integer. →
Question 5: Based on the for 32-bit division hardware diagram shown in the next page. Perform the division for 4 bits unsigned integers. Where the dividend is 1011 and the divisor is 0010. Write the division table, with header steps, action, quotient, divisor, and remainder. Divisor 64-DRALU Remainder 64 bits Shit right 64 bits Wile Control Quotient Shill left Convert the dividend, divisor, and the calculated results in question (5-1) to decimal to verify your results. Consider the number -1.36875 x 10¹ as the dividend and 5.625 x 10¹¹ as the divisor. Find their binary representation. Put the results that you got it in question (5-3) in the 8-bit quarter-precision format (1 for sign bit, 2 for exponent, and 5 for fraction) e. Show all the steps of the division to results that you got it in question (5-4). Indicate if there is overflow or underflow by assuming that there is a guard bit, a round bit, and a sticky bit. f. Find the decimal number representation for the bit pattern OxOBDO0000 if it is: 1. floating-point number. Use the IEEE 754 standard. 2. signed integer. →
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![Question 5:
Based on the for 32-bit division hardware diagram shown in the next page. Perform the division for 4
bits unsigned integers. Where the dividend is 1011 and the divisor is 0010. Write the division table,
with header steps, action, quotient, divisor, and remainder.
Divisor
64-DRALU
Remainder
64 bits
Shit right
64 bits
Wile
Control
Quotient
Shill left
Convert the dividend, divisor, and the calculated results in question (5-1) to decimal to verify your
results.
Consider the number -1.36875 x 10¹ as the dividend and 5.625 x 10¹¹ as the divisor. Find their binary
representation.
Put the results that you got it in question (5-3) in the 8-bit quarter-precision format (1 for sign bit, 2 for
exponent, and 5 for fraction)
e. Show all the steps of the division to results that you got it in question (5-4). Indicate if there is overflow
or underflow by assuming that there is a guard bit, a round bit, and a sticky bit.
f. Find the decimal number representation for the bit pattern OxOBDO0000 if it is:
1. floating-point number. Use the IEEE 754 standard.
2. signed integer.
→](https://content.bartleby.com/qna-images/question/345dec79-fb0e-4a75-a1e7-edb61bb76b33/b1f523d4-b929-4477-8dd8-f2e90a251767/9ajh7xx_thumbnail.jpeg)
Transcribed Image Text:Question 5:
Based on the for 32-bit division hardware diagram shown in the next page. Perform the division for 4
bits unsigned integers. Where the dividend is 1011 and the divisor is 0010. Write the division table,
with header steps, action, quotient, divisor, and remainder.
Divisor
64-DRALU
Remainder
64 bits
Shit right
64 bits
Wile
Control
Quotient
Shill left
Convert the dividend, divisor, and the calculated results in question (5-1) to decimal to verify your
results.
Consider the number -1.36875 x 10¹ as the dividend and 5.625 x 10¹¹ as the divisor. Find their binary
representation.
Put the results that you got it in question (5-3) in the 8-bit quarter-precision format (1 for sign bit, 2 for
exponent, and 5 for fraction)
e. Show all the steps of the division to results that you got it in question (5-4). Indicate if there is overflow
or underflow by assuming that there is a guard bit, a round bit, and a sticky bit.
f. Find the decimal number representation for the bit pattern OxOBDO0000 if it is:
1. floating-point number. Use the IEEE 754 standard.
2. signed integer.
→
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