1. Use nodal analysis to find V in the circuit. 120 /15° V ACE 13 – Final Exam τη ΤΩ 40 Ω 1 H j20 Ω m m 6 /30° A 2. In the circuit below, determine the mesh currents irand iz and let vi = 10 cos 4t V and va = 20 cos(4t – 30°) V 1 F ΤΩ V 1Η -j30 Ω ΤΩ 50 Ω 1/2

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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1. Use nodal analysis to find V in the circuit.
120 /15° V
ACE 13 – Final Exam
ΤΩ
40 Ω
Μ
1Η
j20 Ω
2. In the circuit below, determine the mesh currents irand iz and let vi = 10 cos 4t V and va
= 20 cos(4t – 30°) V
m
6 /30° A
1 F
ΤΩ
1Η
m
: -j30 Ω Σ 50 Ω
8 Ω
j10 Ω '
-j5
25
-j2.4 Ω
j20 Ω
ΤΩ
3. Determine the Thevenin equivalent for the circuit with respect to terminal a - b
a
Transcribed Image Text:1. Use nodal analysis to find V in the circuit. 120 /15° V ACE 13 – Final Exam ΤΩ 40 Ω Μ 1Η j20 Ω 2. In the circuit below, determine the mesh currents irand iz and let vi = 10 cos 4t V and va = 20 cos(4t – 30°) V m 6 /30° A 1 F ΤΩ 1Η m : -j30 Ω Σ 50 Ω 8 Ω j10 Ω ' -j5 25 -j2.4 Ω j20 Ω ΤΩ 3. Determine the Thevenin equivalent for the circuit with respect to terminal a - b a
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