In the figure, a rectangular loop of wire with length a = 2.8 cm, width b = 1.5 cm, and resistance R = 0.30 m2 is placed near an infinitely long wire carrying current i = 6.1 A. The loop is then moved away from the wire at a constant speed v = 5.0 mm/s. When the center of the loop is at distance r = 2.1 cm, what are (a) the magnitude of the magnetic flux through the loop and (b) the current in amperes induced in the loop?

Physics for Scientists and Engineers, Technology Update (No access codes included)
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ISBN:9781305116399
Author:Raymond A. Serway, John W. Jewett
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Chapter31: Faraday’s Law
Section: Chapter Questions
Problem 31.37P
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In the figure, a rectangular loop of wire with length a = 2.8 cm, width b = 1.5 cm, and resistance R = 0.30 m2 is placed near an infinitely
long wire carrying current i = 6.1 A. The loop is then moved away from the wire at a constant speed v = 5.0 mm/s. When the center of
the loop is at distance r = 2.1 cm, what are (a) the magnitude of the magnetic flux through the loop and (b) the current in amperes
induced in the loop?
Transcribed Image Text:In the figure, a rectangular loop of wire with length a = 2.8 cm, width b = 1.5 cm, and resistance R = 0.30 m2 is placed near an infinitely long wire carrying current i = 6.1 A. The loop is then moved away from the wire at a constant speed v = 5.0 mm/s. When the center of the loop is at distance r = 2.1 cm, what are (a) the magnitude of the magnetic flux through the loop and (b) the current in amperes induced in the loop?
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