3 For the following numerical values, determine the average power P, the reactive power Q, and the complex power S of the circuit shown in Figure P7.23. Note: phasor quantities are rms. a. vs(t) = 450 cos (377t) V %3D i(t) = 50 cos(377t – 0.349) A b. Vs = 14020 V İL = 5.852(-1/6) A c. Vs = 5020 V Î, = 19.220.8 A d. Vs = 7402(-1/4) V Î = 10.82(–1.5) A iz(t) vs(t)( ZŁ

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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3 For the following numerical values, determine the
average power P, the reactive power Q, and the
complex power S of the circuit shown in Figure P7.23.
Note: phasor quantities are rms.
a. vs(t) = 450 cos (377t) V
%3D
i(t) = 50 cos(377t – 0.349) A
b. Vs = 14020 V
İL = 5.852(-1/6) A
c. Vs = 5020 V
Î, = 19.220.8 A
d. Vs = 7402(-1/4) V
Î = 10.82(–1.5) A
iz(t)
vs(t)(
ZŁ
Transcribed Image Text:3 For the following numerical values, determine the average power P, the reactive power Q, and the complex power S of the circuit shown in Figure P7.23. Note: phasor quantities are rms. a. vs(t) = 450 cos (377t) V %3D i(t) = 50 cos(377t – 0.349) A b. Vs = 14020 V İL = 5.852(-1/6) A c. Vs = 5020 V Î, = 19.220.8 A d. Vs = 7402(-1/4) V Î = 10.82(–1.5) A iz(t) vs(t)( ZŁ
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