P.6- A conducting sliding bar oscillates over two parallel conducting rails in a sinusoidally varying magnetic field B = a_5 cos cot (mT), as shown in Fig. 6-12. The position of the sliding bar is given by x = 0.35(1-cos cot) (m), and the rails are terminated in a resistance R = 0.2 (92). Find i. YA 0.2 (m) -0.7 (m) 7
P.6- A conducting sliding bar oscillates over two parallel conducting rails in a sinusoidally varying magnetic field B = a_5 cos cot (mT), as shown in Fig. 6-12. The position of the sliding bar is given by x = 0.35(1-cos cot) (m), and the rails are terminated in a resistance R = 0.2 (92). Find i. YA 0.2 (m) -0.7 (m) 7
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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Transcribed Image Text:P.6- A conducting sliding bar oscillates over two parallel conducting rails in
a sinusoidally varying magnetic field.
B = a₂5 cos cot (mT),
as shown in Fig. 6-12. The position of the sliding bar is given by x =
0.35(1-cos cot) (m), and the rails are terminated in a resistance R = 0.2(0)
Find i.
0.2 (m)
0.7 (m)
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