15. A symmetrical 440-V. 3-phase system supplies a star-connected load with the following branch impedances: 2 = 100 2.Z,-js.Z=-j5 2. Calculate the voltage drop across each branch and the potential of the neutral point to earth. The phase sequence is RYB. Draw the vector diagram. 188002-30°, 84152-31.5, 8420-2-28.5°,85452150°1
15. A symmetrical 440-V. 3-phase system supplies a star-connected load with the following branch impedances: 2 = 100 2.Z,-js.Z=-j5 2. Calculate the voltage drop across each branch and the potential of the neutral point to earth. The phase sequence is RYB. Draw the vector diagram. 188002-30°, 84152-31.5, 8420-2-28.5°,85452150°1
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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15. A symmetrical 440-V, 3-phase system supplies a star-connected load with the following branch impedances: Zr=100 Ω, Zy=j5Ω, Zb=-j5Ω. Calculate the voltage drop across each branch and the potential of the neutral point to earth. The phase sequence is RYB. Draw the vector diagram.
[18800∠-30, 84152∠-315°, 8420-∠-28.5°, 8545∠150◦] Answer
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