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...


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

Extracted 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

Jun 05, 2022
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