2. For the logic circuit shown: X Y Z BOH F a. Write the Boolean expression that directly implements this circuit. b. Simplify the Boolean expression using Boolean identities. Identify the identities used as each step. c. Simplify the Boolean expression using a Karnaugh map. Show the sum of products form, the truth table, resulting map with the groupings marked, and the simplified expression. d. Draw the combinational circuit resulting from the simplified circuit.

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For the logic circuit shown:

1. Write the Boolean expression that directly implements this circuit.

2. Simplify the Boolean expression using Boolean identities. Identify the identities used as

each step.

3. Simplify the Boolean expression using a Karnaugh map. Show the sum of products form,

the truth table, resulting map with the groupings marked, and the simplified expression.

4. Draw the combinational circuit resulting from the simplified circuit.

2. For the logic circuit shown:
X
Y
Z
F
a.
b.
Write the Boolean expression that directly implements this circuit.
Simplify the Boolean expression using Boolean identities. Identify the identities used as
each step.
c. Simplify the Boolean expression using a Karnaugh map. Show the sum of products form,
the truth table, resulting map with the groupings marked, and the simplified expression.
d. Draw the combinational circuit resulting from the simplified circuit.
Transcribed Image Text:2. For the logic circuit shown: X Y Z F a. b. Write the Boolean expression that directly implements this circuit. Simplify the Boolean expression using Boolean identities. Identify the identities used as each step. c. Simplify the Boolean expression using a Karnaugh map. Show the sum of products form, the truth table, resulting map with the groupings marked, and the simplified expression. d. Draw the combinational circuit resulting from the simplified circuit.
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