In the circuit given below, R= 19 Q. Find the value of vo using nodal analysis. 20 Ω ww www 1 692 V₁ www. 60 V 4Ω + R The nodal equations are: (v₁ - 60) B + = 0 20 where A=(Click to select) . 5% . B= (Click to select) Vo = Dv₁ where D= (Click to select) Therefore, the value of vo in the circuit is and C= (Click to select) and V.

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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In the circuit given below, R= 19 Q. Find the value of vo using nodal analysis.
V₁ 20 Ω
ww
692
www.
60 V
492
+
The nodal equations are:
(v₁-60)
B
R
+
20
5%
where A = (Click to select)
Vo = Dv₁
where D= (Click to select)
Therefore, the value of vo in the circuit is
.
B= (Click to select)
and C (Click to select) and
V.
Transcribed Image Text:In the circuit given below, R= 19 Q. Find the value of vo using nodal analysis. V₁ 20 Ω ww 692 www. 60 V 492 + The nodal equations are: (v₁-60) B R + 20 5% where A = (Click to select) Vo = Dv₁ where D= (Click to select) Therefore, the value of vo in the circuit is . B= (Click to select) and C (Click to select) and V.
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