5 + 3-j4 20/0⁰ 2 10 L90° 12 V + 15 20 + V V Za = 5 ohms Zb= 3-j4 ohms Zc= 2 ohms Zd= 12 ohms V1= 20 angle 0 V2 = 10 angle 90 V3 15 angle 0 1. Same figure, solve the current at branch Zb, Vth, Rth, Isc, Rn using Thevenin's and Norton's theorem.

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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Completely solve and box the final answer. Write legibly

 

5
3-j4
20/0⁰
2
10 L90°
12
15 Lon
V
V
Za = 5 ohms
Zb= 3-j4 ohms
Zc= 2 ohms
Zd = 12 ohms
V1= 20 angle 0
V2 = 10 angle 90
V3 = 15 angle 0
1. Same figure, solve the current at branch Zb, Vth, Rth, Isc, Rn using Thevenin's and
Norton's theorem.
V
Transcribed Image Text:5 3-j4 20/0⁰ 2 10 L90° 12 15 Lon V V Za = 5 ohms Zb= 3-j4 ohms Zc= 2 ohms Zd = 12 ohms V1= 20 angle 0 V2 = 10 angle 90 V3 = 15 angle 0 1. Same figure, solve the current at branch Zb, Vth, Rth, Isc, Rn using Thevenin's and Norton's theorem. V
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