For the circuit shown, the bottom node is chosen as the reference node. What is the Node Voltage Method equation at node a? Va Va j3 Ω 12-45° A 4Ω -j10 4Ω Ve j2 n ↑ ) 4215° A -j5 N Va-Va j3 - (12 – 45°) = 0 Va-Va j3 - (12 – 45°) = 0 O Va-Va - 0 j3 V-Va j3 + (12 – 45°) = 0

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
Chapter2: Fundamentals
Section: Chapter Questions
Problem 2.20P: A circuit consists of two impedances, Z1=2030 and Z2=2560, in parallel, supplied by a source voltage...
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For the circuit shown, the bottom node is chosen as the reference node. What is
the Node Voltage Method equation at node a?
Va
Va
j3 n
12-45° A
-j10
Vc
j2 n
1 ) 4215° A
-j5 N
Va-Va - (12- 45°) = 0
j3
Va-Va
j3
- (12 – 45°) = 0
Va-Va
= 0
j3
O -Va
j3
+ (12 – 45°) = 0
Transcribed Image Text:For the circuit shown, the bottom node is chosen as the reference node. What is the Node Voltage Method equation at node a? Va Va j3 n 12-45° A -j10 Vc j2 n 1 ) 4215° A -j5 N Va-Va - (12- 45°) = 0 j3 Va-Va j3 - (12 – 45°) = 0 Va-Va = 0 j3 O -Va j3 + (12 – 45°) = 0
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