A 300 m ring distributor has loads as shown in Figure below, where distances are in meters. The resistance of each conductor is 0-2 per 1000 meters, and the loads are tapped off at points B, C and D as shown. If the distributor is fed at A at 240 V, find voltages at B, C and D. 50 A 70 90 240 V A C 70 A 60 B 80 100 A

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 2.18P: Let a series RLC network be connected to a source voltage V, drawing a current I. (a) In terms of...
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A 300 m ring distributor has loads as shown in Figure below, where distances
are in meters. The resistance of each conductor is 0.22 per 1000 meters, and the
loads are tapped off at points B, C and D as shown. If the distributor is fed at A at
240 V, find voltages at B, C and D.
50 A
70
D
90
240 V
A
с
70 A
6
60
B
80
100 A
Transcribed Image Text:A 300 m ring distributor has loads as shown in Figure below, where distances are in meters. The resistance of each conductor is 0.22 per 1000 meters, and the loads are tapped off at points B, C and D as shown. If the distributor is fed at A at 240 V, find voltages at B, C and D. 50 A 70 D 90 240 V A с 70 A 6 60 B 80 100 A
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