In the circuit given below, R=30. Find vo using nodal analysis. 100 V V₁ 12.5 A GR 2 ww 202 where C + The equation at node vis: B 1 + 2/ +12.5 = 0 where A 12.5+ % R ww www The equation at node vo is: %+50 E 10. D 4Ω (Click to select) and B= (Click to select) + = (Click to select) ✓ = 0 50 V = D= (Click to select) and E= (Click to select)

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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In the circuit given below, R=3 Q. Find vo using nodal analysis.
102
100 V
ww
12.5 A
ww
202
12.5 +
V
10
D
R
ww
The equation at node vis:
4 + +12.5 = 0
B
2
where A =(Click to select) and B= (Click to select)
The equation at node vo is:
GP
%+50
E
where C= (Click to select) ✔
+
402
= 0
50 V
=
D= (Click to select) ✔ and E= (Click to select)
SUFES
Transcribed Image Text:In the circuit given below, R=3 Q. Find vo using nodal analysis. 102 100 V ww 12.5 A ww 202 12.5 + V 10 D R ww The equation at node vis: 4 + +12.5 = 0 B 2 where A =(Click to select) and B= (Click to select) The equation at node vo is: GP %+50 E where C= (Click to select) ✔ + 402 = 0 50 V = D= (Click to select) ✔ and E= (Click to select) SUFES
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