Avare & Architecture HW #6 0 y-output (9 Pts-3 Pts Each) Apply DeMorgan's Theorem for NAND gates and use only 2-Input NAND Gates to a. Create and sketch a simplified circuit with OR gate functionality. c. Prove the function of your design using Truth Tables b. Prove the function of your design using DeMorgan's and/or other Boolean Theorems it 10. (9 Pts - 3 Pts Each) Apply DeMorgan's Theorem for NAND gates and use only 2-Input NAND Gates to a. Create and sketch a simplified circuit with NOR gate functionality. b. Prove the function of your design using DeMorgan's and/or other Boolean Theorems c. Prove the function of your design using Truth Tables 11. (9 Pts - 3 Pts Each) Apply DeMorgan's Theorem for NOR gates and use only 2-Input NOR Gates to a. Create and sketch a simplified circuit with OR gate functionality. C. b. Prove the function of your design using DeMorgan's and/or other Boolean Theorems Prove the function of your design using Truth Tables + Ber out 12. (9 Pts - 3 Pts Each) Apply DeMorgan's Theorem for NOR gates and use only 2-Input NOR Gates to a. Create and sketch a simplified circuit with AND gate functionality. b. Prove the function of your design using DeMorgan's and/or other Boolean Theorems c. Prove the function of your design using Truth Tables 13. (9 Pts - 3 Pts Each) Apply DeMorgan's Theorem for NOR gates and use only 2-Input NOR Gates to a. Create and sketch a simplified circuit with NAND gate functionality. b. Prove the function of your design using DeMorgan's and/or other Boolean Theorems c. Prove the function of your design using Truth Tables
Avare & Architecture HW #6 0 y-output (9 Pts-3 Pts Each) Apply DeMorgan's Theorem for NAND gates and use only 2-Input NAND Gates to a. Create and sketch a simplified circuit with OR gate functionality. c. Prove the function of your design using Truth Tables b. Prove the function of your design using DeMorgan's and/or other Boolean Theorems it 10. (9 Pts - 3 Pts Each) Apply DeMorgan's Theorem for NAND gates and use only 2-Input NAND Gates to a. Create and sketch a simplified circuit with NOR gate functionality. b. Prove the function of your design using DeMorgan's and/or other Boolean Theorems c. Prove the function of your design using Truth Tables 11. (9 Pts - 3 Pts Each) Apply DeMorgan's Theorem for NOR gates and use only 2-Input NOR Gates to a. Create and sketch a simplified circuit with OR gate functionality. C. b. Prove the function of your design using DeMorgan's and/or other Boolean Theorems Prove the function of your design using Truth Tables + Ber out 12. (9 Pts - 3 Pts Each) Apply DeMorgan's Theorem for NOR gates and use only 2-Input NOR Gates to a. Create and sketch a simplified circuit with AND gate functionality. b. Prove the function of your design using DeMorgan's and/or other Boolean Theorems c. Prove the function of your design using Truth Tables 13. (9 Pts - 3 Pts Each) Apply DeMorgan's Theorem for NOR gates and use only 2-Input NOR Gates to a. Create and sketch a simplified circuit with NAND gate functionality. b. Prove the function of your design using DeMorgan's and/or other Boolean Theorems c. Prove the function of your design using Truth Tables
Computer Networking: A Top-Down Approach (7th Edition)
7th Edition
ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
Section: Chapter Questions
Problem R1RQ: What is the difference between a host and an end system? List several different types of end...
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
Transcribed Image Text:Avare & Architecture HW #6
0
y-output
(9 Pts-3 Pts Each) Apply DeMorgan's Theorem for NAND gates and use only 2-Input NAND Gates to
a. Create and sketch a simplified circuit with OR gate functionality.
c. Prove the function of your design using Truth Tables
b. Prove the function of your design using DeMorgan's and/or other Boolean Theorems
it
10. (9 Pts - 3 Pts Each) Apply DeMorgan's Theorem for NAND gates and use only 2-Input NAND Gates to
a. Create and sketch a simplified circuit with NOR gate functionality.
b. Prove the function of your design using DeMorgan's and/or other Boolean Theorems
c. Prove the function of your design using Truth Tables
11. (9 Pts - 3 Pts Each) Apply DeMorgan's Theorem for NOR gates and use only 2-Input NOR Gates to
a. Create and sketch a simplified circuit with OR gate functionality.
C.
b. Prove the function of your design using DeMorgan's and/or other Boolean Theorems
Prove the function of your design using Truth Tables
+ Ber
out
12. (9 Pts - 3 Pts Each) Apply DeMorgan's Theorem for NOR gates and use only 2-Input NOR Gates to
a. Create and sketch a simplified circuit with AND gate functionality.
b. Prove the function of your design using DeMorgan's and/or other Boolean Theorems
c. Prove the function of your design using Truth Tables
13. (9 Pts - 3 Pts Each) Apply DeMorgan's Theorem for NOR gates and use only 2-Input NOR Gates to
a. Create and sketch a simplified circuit with NAND gate functionality.
b. Prove the function of your design using DeMorgan's and/or other Boolean Theorems
c. Prove the function of your design using Truth Tables
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