A. For the Figure 2a, prove Vo (R4+RX) R4 B. For the Figure 2b, prove Vo (R4+R5) C. For the Figure 2c, find Vo, ACM and AD? R1 R1 MM. MA R2) V₁ at RX = = (R2 // R3)? R21/R3 RV + Ra//1. 3 10K (1+2)V?

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Section: Chapter Questions
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A. For the Figure 2a, prove Vo
RX
(R4+RX)
R4
B. For the Figure 2b, prove Vo
(R4+R5)
C. For the Figure 2c, find Vo, ACM and Ap?
R1
R1
M
R2
vi R4 R2
ow-W+
vi RS
R3 R5
Figure 2 d
R4
R3.
R1
R2
(1+
w
Figure 2 b
V₁ at RX = (R2 // R3)?
V₁ ?
R2 // R3
RV + Ra//2;
3
10K
2K 2K
VII-W-WH
2K
VIZW+WW
2K {{2K
Figure 2 c
Transcribed Image Text:A. For the Figure 2a, prove Vo RX (R4+RX) R4 B. For the Figure 2b, prove Vo (R4+R5) C. For the Figure 2c, find Vo, ACM and Ap? R1 R1 M R2 vi R4 R2 ow-W+ vi RS R3 R5 Figure 2 d R4 R3. R1 R2 (1+ w Figure 2 b V₁ at RX = (R2 // R3)? V₁ ? R2 // R3 RV + Ra//2; 3 10K 2K 2K VII-W-WH 2K VIZW+WW 2K {{2K Figure 2 c
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