R VR E Figure 20-2 In the accompanying figure, let R = 20 W, Xc = 15 W, E = 12Đ0° V, and I = 2Đ0° %3D Use the superposition theorem to determine VR and Vc. O VR = 25.9Đ-31.4° V, Vc = 31.2Đ0° V O VR = 2Đ131° V, Vc = 4.6Đ90° V O VR = 25.9Đ148.6° V, Vc = 31.2Đ180° V VR = 47Đ-31.4° V, Vc = 22.7Đ90° V
R VR E Figure 20-2 In the accompanying figure, let R = 20 W, Xc = 15 W, E = 12Đ0° V, and I = 2Đ0° %3D Use the superposition theorem to determine VR and Vc. O VR = 25.9Đ-31.4° V, Vc = 31.2Đ0° V O VR = 2Đ131° V, Vc = 4.6Đ90° V O VR = 25.9Đ148.6° V, Vc = 31.2Đ180° V VR = 47Đ-31.4° V, Vc = 22.7Đ90° V
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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![R
VR
E
Figure 20-2
In the accompanying figure, let R = 20 W, Xc = 15 W, E = 12Đ0° V, and I = 2Đ0° A.
Use the superposition theorem to determine VR and Vc.
VR = 25.9Đ-31.4° V, Vc = 31.2ĐO° V
VR = 2Đ131° V, Vc = 4.6Đ90° V
VR = 25.9Đ148.6° V, Vc = 31.2Đ180° V
%3D
O VR = 47Đ-31.4° V, Vc = 22.7Đ90° V](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa738f338-4b97-4795-af96-9c8545b72d67%2F9dfa3bab-5e71-4cfa-960c-b13b1d1324bc%2Fnh2zxg_processed.png&w=3840&q=75)
Transcribed Image Text:R
VR
E
Figure 20-2
In the accompanying figure, let R = 20 W, Xc = 15 W, E = 12Đ0° V, and I = 2Đ0° A.
Use the superposition theorem to determine VR and Vc.
VR = 25.9Đ-31.4° V, Vc = 31.2ĐO° V
VR = 2Đ131° V, Vc = 4.6Đ90° V
VR = 25.9Đ148.6° V, Vc = 31.2Đ180° V
%3D
O VR = 47Đ-31.4° V, Vc = 22.7Đ90° V
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