I1 2k R1 R3 3.3 → 13 V3 √ R₂ Vi Fig. 5 Discussion 1. Connect the circuit as in Fig. 5. Take V₁10 VR1K0, R₂- 2.7 KO, R3- 3.3 KO, and V2-8 V. With the help of equation (1)(in theory Section), calculate the node voltage V3, branch currents I₁, I2, and I 12.7 A versity

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Superposition
I1 4
1k
R1
R3 3.3
→ 13
V3
√ R₂
1₂
Vi
Fig. 5
Discussion
1. Connect the circuit as in Fig. 5. Take V₁10
VR1K0, R₂- 2.7 KO, R3- 3.3 KO, and
V2-8 V. With the help of equation (1)(in theory Section), calculate the node voltage V3,
branch currents I₁, I2, and 13.
8
•V2
12.7
versity
Transcribed Image Text:I1 4 1k R1 R3 3.3 → 13 V3 √ R₂ 1₂ Vi Fig. 5 Discussion 1. Connect the circuit as in Fig. 5. Take V₁10 VR1K0, R₂- 2.7 KO, R3- 3.3 KO, and V2-8 V. With the help of equation (1)(in theory Section), calculate the node voltage V3, branch currents I₁, I2, and 13. 8 •V2 12.7 versity
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