A loop of wire in the shape of a rectangle rotates with a frequency of 310 rotation per minute in an applied magnetic field of magnitude 6 T. Assume the magnetic field is uniform. The area of the loop is A = 2 cm2 and the total resistance in the circuit is 7 22. Find the maximum induced emf. &max= V Find the maximum current through the bulb. Imax=

Glencoe Physics: Principles and Problems, Student Edition
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ISBN:9780078807213
Author:Paul W. Zitzewitz
Publisher:Paul W. Zitzewitz
Chapter25: Electromagnetic Induction
Section25.1: Electric Current From Changing Magnetic Fields
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Gabriel and Akito now decide to work a problem.
A loop of wire in the shape of a rectangle rotates with a frequency of 310 rotation per minute in an applied magnetic field of magnitude 6 T. Assume the magnetic field is
uniform. The area of the loop is A = 2 cm² and the total resistance in the circuit is 7.
Find the maximum induced emf.
E
V
max
Find the maximum current through the bulb.
Imax
A
=
Transcribed Image Text:Gabriel and Akito now decide to work a problem. A loop of wire in the shape of a rectangle rotates with a frequency of 310 rotation per minute in an applied magnetic field of magnitude 6 T. Assume the magnetic field is uniform. The area of the loop is A = 2 cm² and the total resistance in the circuit is 7. Find the maximum induced emf. E V max Find the maximum current through the bulb. Imax A =
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