Part a Design a logic circuit using the truth table Inputs output F shown. Use only basic logic gates (AND, OR, NOT). Also, the circuit should use the FEWEST number of gates and the FEWEST number of inputs to the gates. Fully label all the inputs and outputs. a 1 1 1 1 1 1 1 1 1 1 1 1 1 Part b Implement a 3-input XOR gate using only a 4x1 multiplexer and an inverter. Alsa complete the truth table in your answer sheets with the correct labels and function solution. Fully label all inputs and outputs. Part c Design a full-adder using half-adders and A- additional logic using the half-adder shown here. Pi Gi

Computer Networking: A Top-Down Approach (7th Edition)
7th Edition
ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
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Problem R1RQ: What is the difference between a host and an end system? List several different types of end...
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Part a
Design a logic circuit using the truth table
Inputs
output
shown. Use only basic logic gates (AND, OR, NOT). Also, the
circuit should use the FEWEST number of gates and the
FEWEST number of inputs to the gates. Fully label all the
inputs and outputs.
a
b.
1
1
1
1
1.
1
1
Part b
Implement a 3-input XOR gate using only a 4x1 multiplexer and an inverter. Also
complete the truth table in your answer sheets with the correct labels and function solution. Fully
label all inputs and outputs.
Part c
Design a full-adder using half-adders and
A-
additional logic using the half-adder shown here.
Pi
Gi
Transcribed Image Text:Part a Design a logic circuit using the truth table Inputs output shown. Use only basic logic gates (AND, OR, NOT). Also, the circuit should use the FEWEST number of gates and the FEWEST number of inputs to the gates. Fully label all the inputs and outputs. a b. 1 1 1 1 1. 1 1 Part b Implement a 3-input XOR gate using only a 4x1 multiplexer and an inverter. Also complete the truth table in your answer sheets with the correct labels and function solution. Fully label all inputs and outputs. Part c Design a full-adder using half-adders and A- additional logic using the half-adder shown here. Pi Gi
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