4. Define equivalent circuit and explain the purpose of equivalent circuit. (2) What is the relationship or conversion between Thevenin and Norton equivalent circuit? (3) DRAW the Thevnin equivalent circuit for the circuit shown in Figure 3, while V1=100Vrms@50HZ; (4) Determine the ideal value of loading in order to transfer the maximum power, including Rload and Cload (5) determine the maximum power R1 L1 Load 10 20m V1 Rload R2 C1 Cload 20µ Figure 3

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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4.
Define equivalent circuit and explain the purpose of equivalent circuit.
(2) What is the relationship or conversion between Thevenin and Norton
equivalent circuit?
(3) DRAW the Thevnin equivalent circuit for
the circuit shown in Figure 3, while V1=100Vrms@50HZ;
(4)
Determine the ideal value of loading in order to transfer the maximum power, including
Rload and Cload
(5) determine the maximum power
R1
L1
Load
10
20m
V1
Rload
R2
C1
Cload
20µ
Figure 3
Transcribed Image Text:4. Define equivalent circuit and explain the purpose of equivalent circuit. (2) What is the relationship or conversion between Thevenin and Norton equivalent circuit? (3) DRAW the Thevnin equivalent circuit for the circuit shown in Figure 3, while V1=100Vrms@50HZ; (4) Determine the ideal value of loading in order to transfer the maximum power, including Rload and Cload (5) determine the maximum power R1 L1 Load 10 20m V1 Rload R2 C1 Cload 20µ Figure 3
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