1 1 0 0 1 Since the circuits corresponding to equivalent Boolean 0 actly the same effect, we will write an equal sign between such expres example, we will write expression (xvy')v (xAz)= xvy, since the truth tables of the two expressions are the same. In subsequ we will study how we can reduce Boolean expressions to simple expressions to improve circuit design. EXERCISES 10.1 In Exercises 1-8, write the Boolean expression associated with each circuit. 2. х D 1. x у y. x х у DD 4. x- у 3. X- у — y X 6, х y 5. X_ X

College Algebra (MindTap Course List)
12th Edition
ISBN:9781305652231
Author:R. David Gustafson, Jeff Hughes
Publisher:R. David Gustafson, Jeff Hughes
Chapter8: Sequences, Series, And Probability
Section8.5: Mathematical Induction
Problem 43E
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1
1
0
0
1
Since the circuits corresponding to equivalent Boolean
0
actly the same effect, we will write an equal sign between such expres
example, we will write
expression
(xvy')v (xAz)= xvy,
since the truth tables of the two expressions are the same. In subsequ
we will study how we can reduce Boolean expressions to simple
expressions to improve circuit design.
EXERCISES 10.1
In Exercises 1-8, write the Boolean expression associated with each circuit.
2. х
D
1. x
у
y.
x
х
у
DD
4. x-
у
3.
X-
у —
y
X
6, х
y
5.
X_
X
Transcribed Image Text:1 1 0 0 1 Since the circuits corresponding to equivalent Boolean 0 actly the same effect, we will write an equal sign between such expres example, we will write expression (xvy')v (xAz)= xvy, since the truth tables of the two expressions are the same. In subsequ we will study how we can reduce Boolean expressions to simple expressions to improve circuit design. EXERCISES 10.1 In Exercises 1-8, write the Boolean expression associated with each circuit. 2. х D 1. x у y. x х у DD 4. x- у 3. X- у — y X 6, х y 5. X_ X
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