Use MATLAB to evaluate the following networks. Show all your work, otherwise no credit will be given. 1. Use Mesh Analysis to find the unknown voltages shown in the circuit. ΤΩ m 1202 + 10 130 1202 150/0° V V₂ 39I, -j16 07 2. Use nodal analysis to determine the voltage (V) for the circuit below. Xc не R₂ ww 202 602 I₁ = 1 AZ40° R≤30 E2 XL 24V E₂ 12 V 20° Ꮩ 3. Use source transformation to find the Thévenin equivalent circuit between terminals a and b for the circuit shown. -j400 не a 120/0° mA 250 Ω 150 Ω 500 Ω b

Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter6: Power Flows
Section: Chapter Questions
Problem 6.61P
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Solve number 1 for this example. Show all work and tips. Thank you

Use MATLAB to evaluate the following networks.
Show all your work, otherwise no credit will be given.
1. Use Mesh Analysis to find the unknown voltages shown in the circuit.
ΤΩ
m
1202 +
10
130
1202
150/0°
V
V₂
39I,
-j16 07
2. Use nodal analysis to determine the voltage (V) for the circuit below.
Xc
не
R₂
ww
202
602
I₁ = 1 AZ40°
R≤30
E2
XL 24V E₂ 12 V 20°
Ꮩ
3. Use source transformation to find the Thévenin equivalent circuit between
terminals a and b for the circuit shown.
-j400
не
a
120/0° mA
250 Ω
150 Ω
500 Ω
b
Transcribed Image Text:Use MATLAB to evaluate the following networks. Show all your work, otherwise no credit will be given. 1. Use Mesh Analysis to find the unknown voltages shown in the circuit. ΤΩ m 1202 + 10 130 1202 150/0° V V₂ 39I, -j16 07 2. Use nodal analysis to determine the voltage (V) for the circuit below. Xc не R₂ ww 202 602 I₁ = 1 AZ40° R≤30 E2 XL 24V E₂ 12 V 20° Ꮩ 3. Use source transformation to find the Thévenin equivalent circuit between terminals a and b for the circuit shown. -j400 не a 120/0° mA 250 Ω 150 Ω 500 Ω b
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