In the circuit given below, R=21 Q. Determine the node voltages. 1 R 40 S2 ww V1 V2 B where A = 21 A + 300 V The equation at node 1 is + 2 40 15 A 40 Ω The equation at node 2 is V2 - V1 E where E = 40 % +300 D F 15 + = 0 40 www = B = 40 3 40 52 0 and F = v2 - (v1 + 300) C = (v1 +300) - v2, and D = 40
In the circuit given below, R=21 Q. Determine the node voltages. 1 R 40 S2 ww V1 V2 B where A = 21 A + 300 V The equation at node 1 is + 2 40 15 A 40 Ω The equation at node 2 is V2 - V1 E where E = 40 % +300 D F 15 + = 0 40 www = B = 40 3 40 52 0 and F = v2 - (v1 + 300) C = (v1 +300) - v2, and D = 40
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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The value of node voltage v1 in the circuit is ______ V.
The value of node voltage v2 in the circuit is ______ V.
The value of node voltage v3 in the circuit is ________ V.

Transcribed Image Text:In the circuit given below, R=21 Q. Determine the node voltages.
1
R
40 S2
ww
V1 - V2
B
where A = 21
A +
300 V
The equation at node 1 is
+
2
40
15 A
40 Ω
The equation at node 2 is
V2 - V1
E
where E = 40
% +300
D
F
15 + = 0
40
www
3
B = 40
40 52
= 0
and Fv2 - (v1 + 300)
C = (v1 + 300) - v2, and D = 40
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