. The following conducting loop consists of a moving conductor bar which slides on the x-z plane with the expression x = 4 + 3cos(50rt) m. If the total resistance of the loop is 5 2, a) Calculate the electromotive force within the following system; b) Calculate the average power that dissipates in the loop.

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4. The following conducting loop consists of a moving conductor bar which slides on the x-z
plane with the expression x = 4 + 3 cos (50nt) m. If the total resistance of the loop is 5 £2,
a) Calculate the electromotive force within the following system;
b) Calculate the average power that dissipates in the loop.
Z
2 m
Moving Conductor
B = 20ä, -30ä, -40tā, mT
X
Transcribed Image Text:4. The following conducting loop consists of a moving conductor bar which slides on the x-z plane with the expression x = 4 + 3 cos (50nt) m. If the total resistance of the loop is 5 £2, a) Calculate the electromotive force within the following system; b) Calculate the average power that dissipates in the loop. Z 2 m Moving Conductor B = 20ä, -30ä, -40tā, mT X
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