Answer this question, part (1), (2) & (3). Design a combinational logic circuit that converts a three-bit binary number from code A to code B, according to the table on the right. Answer the following questions: Code A Code B 000 000 001 001 011 010 010 011 110 100 111 101 101 110 100 111 Construct the truth table for the circuit. Derive the Sum-of-Products (SoPs) Boolean expression for each of the circuit outputs. Using Boolean algebra, simplify the expression you obtained in Part 2 above.

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Author:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
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Chapter1: Introduction
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Answer this question, part (1), (2) & (3).

Design a combinational logic circuit that converts a three-bit binary number from code A to code B, according to the table on the right. Answer the following questions:

Code A

Code B

000

000

001

001

011

010

010

011

110

100

111

101

101

110

100

111

  1. Construct the truth table for the circuit.
  2. Derive the Sum-of-Products (SoPs) Boolean expression for each of the circuit outputs.
  3. Using Boolean algebra, simplify the expression you obtained in Part 2 above.
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