Chapter 9, Problem 16P Determine the Thevénin equivalent circuit for the network external to the resistor R in Fig. 9.140. b. Find the current through the resistor R if its value is 20 2,50 2 , and 100 2 c. Without having the Thévenin equivalent circuit, what would you have to do to find the current through the resistor R for all the values of part (b)? R₁ R3 Rs www ww w 2002 120 202 E 20V R₂50 RA 1602 = Fig.9.140
Chapter 9, Problem 16P Determine the Thevénin equivalent circuit for the network external to the resistor R in Fig. 9.140. b. Find the current through the resistor R if its value is 20 2,50 2 , and 100 2 c. Without having the Thévenin equivalent circuit, what would you have to do to find the current through the resistor R for all the values of part (b)? R₁ R3 Rs www ww w 2002 120 202 E 20V R₂50 RA 1602 = Fig.9.140
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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Is the resistance in the end equal to R=17/8?
I saw the written solution, but the resistance was calculated 16/2?
![[BE] Chapter 9, Problem 16P
'
Determine the Thevénin equivalent circuit for the network external to the resistor
R in Fig. 9.140.
b. Find the current through the resistor R if its value is 20, 50
and 100
c. Without having the Thévenin equivalent circuit, what would you have to do to
find the current through the resistor R for all the values of part (b)?
R₁
ww
2002
R₁
www
20V R₂50
Rs
www
120
202
RA
16 Ω
Fig.9.140](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fdb74f5d9-3c0f-409d-ada0-fda1390c5fbb%2F69e26383-2ef9-4710-8d9e-155b3f98ebad%2Fm50v0ag_processed.jpeg&w=3840&q=75)
Transcribed Image Text:[BE] Chapter 9, Problem 16P
'
Determine the Thevénin equivalent circuit for the network external to the resistor
R in Fig. 9.140.
b. Find the current through the resistor R if its value is 20, 50
and 100
c. Without having the Thévenin equivalent circuit, what would you have to do to
find the current through the resistor R for all the values of part (b)?
R₁
ww
2002
R₁
www
20V R₂50
Rs
www
120
202
RA
16 Ω
Fig.9.140
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