2.-In the circuit below, suppose V₁1 = 120 cos (100t+90°) V and ₁2 = 80 cos 100t V↓ Use mesh analysis to calculate v (t) as follows: a) Transform the circuit into the frequency domain. ↓ b) There are 3 mesh currents, I₁, I₂, and I3, so set up a system of 3 equations in 3 unknowns. Convert this to a-3x3-matrix equation and use your calculator to solve the system for the 3 currents. Check your answer with MATLAB. Then find V, and convert to a sinusoidal. ↓ Vs1 20 Ω + 300 mH 400 mH m 50 μF 200 mH + 10 52 Vs2

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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2.-In the circuit below, suppose
V₁1 = 120 cos (100t+90°) V and V2 = 80 cos100t V↓↓
Use mesh analysis to calculate v (t) as follows:
↓
a) Transform the circuit into the frequency domain.
↓
b) There are 3 mesh currents, I₁, I₂, and I3, so set up a system of 3 equations in 3 unknowns.
Convert this to a 3x3 matrix equation and use your calculator to solve the system for the 3
currents. Check your answer with MATLAB. Then find V, and convert to a sinusoidal.
↓
Vs1
20 Ω
www
300 mH
400 mH
m
50 μF
200 mH
-m
+
10 S2
Vs2
↓
Transcribed Image Text:2.-In the circuit below, suppose V₁1 = 120 cos (100t+90°) V and V2 = 80 cos100t V↓↓ Use mesh analysis to calculate v (t) as follows: ↓ a) Transform the circuit into the frequency domain. ↓ b) There are 3 mesh currents, I₁, I₂, and I3, so set up a system of 3 equations in 3 unknowns. Convert this to a 3x3 matrix equation and use your calculator to solve the system for the 3 currents. Check your answer with MATLAB. Then find V, and convert to a sinusoidal. ↓ Vs1 20 Ω www 300 mH 400 mH m 50 μF 200 mH -m + 10 S2 Vs2 ↓
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