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Welcome to the Simplification of Boolean Functions MCQs Page

Dive deep into the fascinating world of Simplification of Boolean Functions with our comprehensive set of Multiple-Choice Questions (MCQs). This page is dedicated to exploring the fundamental concepts and intricacies of Simplification of Boolean Functions, a crucial aspect of Digital Logic Design. In this section, you will encounter a diverse range of MCQs that cover various aspects of Simplification of Boolean Functions, from the basic principles to advanced topics. Each question is thoughtfully crafted to challenge your knowledge and deepen your understanding of this critical subcategory within Digital Logic Design.

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Check out the MCQs below to embark on an enriching journey through Simplification of Boolean Functions. Test your knowledge, expand your horizons, and solidify your grasp on this vital area of Digital Logic Design.

Note: Each MCQ comes with multiple answer choices. Select the most appropriate option and test your understanding of Simplification of Boolean Functions. You can click on an option to test your knowledge before viewing the solution for a MCQ. Happy learning!

Simplification of Boolean Functions MCQs | Page 5 of 5

Q41.
No degenerate forms of logic gates are

a.

2

b.

4

c.

6

d.

8

Discuss
Answer: (d).8
Discuss
Answer: (b).matching process cycle
Q43.
Only value that is mentioned on map is
Discuss
Answer: (a).1's
Q44.
A five variable karnaugh map needs
Discuss
Answer: (a).32 squares
Q45.
The first tabulation method was
Discuss
Answer: (d).None
Q46.
Sum of product can be implemented with a group of
Discuss
Answer: (c).AND gates
Q47.
NOR function is the dual of
Discuss
Answer: (b).NAND gate
Q48.
Diagram modified by k-map is
Discuss
Answer: (a).veitch diagram
Q49.
The one input NOR and NAND gate behaves like a
Discuss
Answer: (b).inverter
Discuss
Answer: (d).two level implementation
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