1. Calculate the current , in 10 KN resistor in the figure below using any standard network analysis techniques. 3. Use superposition theorem to verify the above results. 4. First, deactivate 12 mA current source (open) and find,. This is the contribution of 100V source to , 5. Then Remove 100V source (short) and find the contribution of 12mA source to 6. Add the algebraic current sum of , in part 4 and 5. 20 kfl 4kn 5 kn A 100 V BO kn 12 mA 60 kn 10 k

Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter7: Parallel Circuits
Section: Chapter Questions
Problem 4PP: Using the rules for parallel circuits and Ohmslaw, solve for the missing values....
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It is important that students review the network analysis techniques and
Superposition theorem for circuits before they start this lab. Start with Circuit in
(a)
1. Calculate the current , in 10 KN resistor in the figure below using any standard
network analysis techniques.
3. Use superposition theorem to verify the above results.
4. First, deactivate 12 mA current source (open) and find,. This is the
contribution of 100V source to i,
5. Then Remove 100V source (short) and find the contribution of 12mA source to
6. Add the algebraic current sum of , in part 4 and 5.
20kfn
5 kn
A
100 V
B0 kf
12 mA
60 kn
10 kfl
Transcribed Image Text:It is important that students review the network analysis techniques and Superposition theorem for circuits before they start this lab. Start with Circuit in (a) 1. Calculate the current , in 10 KN resistor in the figure below using any standard network analysis techniques. 3. Use superposition theorem to verify the above results. 4. First, deactivate 12 mA current source (open) and find,. This is the contribution of 100V source to i, 5. Then Remove 100V source (short) and find the contribution of 12mA source to 6. Add the algebraic current sum of , in part 4 and 5. 20kfn 5 kn A 100 V B0 kf 12 mA 60 kn 10 kfl
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