In the figure on the right, a square conductor loop is moving at a velocity along an infinite straight wire that carries a constant current 1. The length of the loop is L on all sides. The distance from the left side of the loop to the wire is s. (Ignore the thickness of the straight wire). a) Calculate the motional emf on the four sides of the loop, respectively. Express your result in terms of v. I, L, s. Take the counterclockwise direction as the positive polarity for the emf. b) Verify your answer to part-a using Faraday's law.

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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In the figure on the right, a square conductor loop is moving at a velocity along
an infinite straight wire that carries a constant current 1. The length of the loop
is L on all sides. The distance from the left side of the loop to the wire is s.
(Ignore the thickness of the straight wire).
a) Calculate the motional emf on the four sides of the loop, respectively.
Express your result in terms of v. I, L, s. Take the counterclockwise
direction as the positive polarity for the emf.
b) Verify your answer to part-a using Faraday's law.
Transcribed Image Text:In the figure on the right, a square conductor loop is moving at a velocity along an infinite straight wire that carries a constant current 1. The length of the loop is L on all sides. The distance from the left side of the loop to the wire is s. (Ignore the thickness of the straight wire). a) Calculate the motional emf on the four sides of the loop, respectively. Express your result in terms of v. I, L, s. Take the counterclockwise direction as the positive polarity for the emf. b) Verify your answer to part-a using Faraday's law.
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