#3. For the 3-phase power system shown in Fig. 3, the load is 30 kVA at a p.f. of 0.94 lagging. If the phasor load voltage, V₂b = 480/0° V Compute: (i)The phasor line current, I. Fig.3 (ii)The phasor voltage Vec of the source. Ba Co N- (0.1+jo. 6) 52 Ia (0.1+jo.6)22 I (0.1 +0.6)52 I a b 3 phase Load 30kVA P.F. 0.94 las
#3. For the 3-phase power system shown in Fig. 3, the load is 30 kVA at a p.f. of 0.94 lagging. If the phasor load voltage, V₂b = 480/0° V Compute: (i)The phasor line current, I. Fig.3 (ii)The phasor voltage Vec of the source. Ba Co N- (0.1+jo. 6) 52 Ia (0.1+jo.6)22 I (0.1 +0.6)52 I a b 3 phase Load 30kVA P.F. 0.94 las
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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#3. For the 3-phase power system shown in Fig. 3, the load is 30 kVA at a p.f. of 0.94 lagging. If the
phasor load voltage, Vab=480/0° V.
Compute: (i)The phasor line current, I,.
Fig. 3
62°F
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(ii)The phasor voltage Vec of the source.
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Transcribed Image Text:Snipping Tool
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#3. For the 3-phase power system shown in Fig. 3, the load is 30 kVA at a p.f. of 0.94 lagging. If the
phasor load voltage, Vab=480/0° V.
Compute: (i)The phasor line current, I,.
Fig. 3
62°F
Mostly cloudy
(ii)The phasor voltage Vec of the source.
са
N.
204 20
▬▬
(0.1+jo. 6) 52 Ia
(0.1+ jo.6362 In
60.1+0.6952
Q Search
r
i
C
U
I₂
3
phase
المعما
6.
30kVA
P. F. 0.94 las
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