PF 4. Assume the circuit shown in Figure 17-2 has a power factor of 78%, an apparent power of 374.817 VA, and a frequency of 400 Hz. The inductor has an inductance of 0.0382 H. E₁ |- Z VA 374.817 PF 78% ER PRP Р 20 EL LL XL VARSL L 0.0382 H į
PF 4. Assume the circuit shown in Figure 17-2 has a power factor of 78%, an apparent power of 374.817 VA, and a frequency of 400 Hz. The inductor has an inductance of 0.0382 H. E₁ |- Z VA 374.817 PF 78% ER PRP Р 20 EL LL XL VARSL L 0.0382 H į
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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assume the circuit shown in figure 17-2 has a power factor of 78% an apparent power of 374.817 VA and a frequency of 400 Hz. the inductor has an inductance of 0.0382 H.
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IT
Z
VA
PF
LO
W
ER
IR
R 30 Ω
P
س لنا اس
XL 40 SQ
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Transcribed Image Text:ET 240 V
IT
Z
VA
PF
LO
W
ER
IR
R 30 Ω
P
س لنا اس
XL 40 SQ
VARSL

Transcribed Image Text:PF
4. Assume the circuit shown in Figure 17-2 has a power factor of 78%, an apparent power of
374.817 VA, and a frequency of 400 Hz. The inductor has an inductance of 0.0382 H.
E₁
1-
Z
VA 374.817
PF 78%
ER
PRP
Р
20
E₁
IL
XL
VARSL
L 0.0382 H
į
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