1a. Design a logic circuit that implements an expression that equals 1 (output) when exactly two of its four inputs are 1. a. Build a truth table. b. Find a Boolean function (expression). c. Simplify it using a Karnaugh map if possible. d. Design a logic circuit. 1b. Design a logic circuit for the half adder. Find the truth table for this problem. Let x and y be the two inputs. The sum of x and y is a 2-digit binary number, which we denote uv.

Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter13: Magnetic Induction
Section: Chapter Questions
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1a. Design a logic circuit that implements an expression that equals 1 (output) when exactly two of its four inputs are 1.


a. Build a truth table.
b. Find a Boolean function (expression).
c. Simplify it using a Karnaugh map if possible.
d. Design a logic circuit.

1b. Design a logic circuit for the half adder. Find the truth table for this problem.

Let x and y be the two inputs. The sum of x and y is a 2-digit binary number, which we denote uv.


3. Redesign the logic circuit for the half adder using the exclusive OR.

Design a logic circuit that implements an expression that equals 1 (output) when exactly two of
its four inputs are 1.
a. Build a truth table.
b. Find a Boolean function (expression).
c. Simplify it using a Karnaugh map if possible.
d. Design a logic circuit.
Design a logic circuit for the half adder. Find the truth table for this problem.
Let x and y be the two inputs. The sum of x and y is a 2-digit binary number, which we denote
uv.
Redesign the logic circuit for the half adder using the exclusive OR.
Transcribed Image Text:Design a logic circuit that implements an expression that equals 1 (output) when exactly two of its four inputs are 1. a. Build a truth table. b. Find a Boolean function (expression). c. Simplify it using a Karnaugh map if possible. d. Design a logic circuit. Design a logic circuit for the half adder. Find the truth table for this problem. Let x and y be the two inputs. The sum of x and y is a 2-digit binary number, which we denote uv. Redesign the logic circuit for the half adder using the exclusive OR.
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