1. Show the results of the following operations. Write your final answer in hexadecimals. [(AB)16 XOR ((CD)16 OR (97)16)] 2. Normalize the following binary floating-point numbers. a. (0.00011011)2 b. 27 x (101.000101)2 3. Store the result in an 8-bit memory location after the following operation on integers is complete in two's complement format. 126-213 4. Store-520 in a 16-bit memory location using: a. Sign-and-magnitude representation. b. Two's complement representation. 5. What is the result stored if the arithmetic left shift is applied to a binary pattern (11110001)2? Assuming a pattern is an integer in two's complement format, show if the operation was valid or not and why. 6. Retrieve what is stored as 10101101 in an unsigned representation.
1. Show the results of the following operations. Write your final answer in hexadecimals. [(AB)16 XOR ((CD)16 OR (97)16)] 2. Normalize the following binary floating-point numbers. a. (0.00011011)2 b. 27 x (101.000101)2 3. Store the result in an 8-bit memory location after the following operation on integers is complete in two's complement format. 126-213 4. Store-520 in a 16-bit memory location using: a. Sign-and-magnitude representation. b. Two's complement representation. 5. What is the result stored if the arithmetic left shift is applied to a binary pattern (11110001)2? Assuming a pattern is an integer in two's complement format, show if the operation was valid or not and why. 6. Retrieve what is stored as 10101101 in an unsigned representation.
Database System Concepts
7th Edition
ISBN:9780078022159
Author:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Publisher:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Chapter1: Introduction
Section: Chapter Questions
Problem 1PE
Related questions
Question
![1. Show the results of the following operations. Write your final answer in
hexadecimals. [(AB)16 XOR ((CD)16 OR (97)16)]
2. Normalize the following binary floating-point numbers.
a. (0.00011011)2
b. 27 x (101.000101)2
3. Store the result in an 8-bit memory location after the following operation on integers
is complete in two's complement format. 126-213
4. Store-520 in a 16-bit memory location using:
a. Sign-and-magnitude representation.
b. Two's complement representation.
5. What is the result stored if the arithmetic left shift is applied to a binary pattern
(11110001)2? Assuming a pattern is an integer in two's complement format, show if
the operation was valid or not and why.
6. Retrieve what is stored as 10101101 in an unsigned representation.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa369541f-bd3f-458c-bebe-042a44120ac5%2F12455718-62d1-4aa5-b38b-bab742b51ddf%2Fvhfd5ek_processed.jpeg&w=3840&q=75)
Transcribed Image Text:1. Show the results of the following operations. Write your final answer in
hexadecimals. [(AB)16 XOR ((CD)16 OR (97)16)]
2. Normalize the following binary floating-point numbers.
a. (0.00011011)2
b. 27 x (101.000101)2
3. Store the result in an 8-bit memory location after the following operation on integers
is complete in two's complement format. 126-213
4. Store-520 in a 16-bit memory location using:
a. Sign-and-magnitude representation.
b. Two's complement representation.
5. What is the result stored if the arithmetic left shift is applied to a binary pattern
(11110001)2? Assuming a pattern is an integer in two's complement format, show if
the operation was valid or not and why.
6. Retrieve what is stored as 10101101 in an unsigned representation.
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