A flat circular coil with 135 turns, a radius of 2.28 x 10-2 m, and a resistance of 0.618 is exposed to an external magnetic field that is directed perpendicular to the plane of the coil. The magnitude of the external magnetic field is changing at a rate of AB/At = 0.615 T/s, thereby inducing a current in the coil. Find the magnitude of the magnetic field at the center of the coil that is produced by the induced current. Number

University Physics Volume 2
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Chapter13: Electromagnetic Induction
Section: Chapter Questions
Problem 26P: A square loop whose sides are 6.0-cm long is made with copper wire of radius 1.0 mm. If a magnetic...
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A flat circular coil with 135 turns, a radius of 2.28 x 10-2 m, and a resistance of 0.618 is
exposed to an external magnetic field that is directed perpendicular to the plane of the
coil. The magnitude of the external magnetic field is changing at a rate of AB/At = 0.615
T/s, thereby inducing a current in the coil. Find the magnitude of the magnetic field at the
center of the coil that is produced by the induced current.
Number
Transcribed Image Text:A flat circular coil with 135 turns, a radius of 2.28 x 10-2 m, and a resistance of 0.618 is exposed to an external magnetic field that is directed perpendicular to the plane of the coil. The magnitude of the external magnetic field is changing at a rate of AB/At = 0.615 T/s, thereby inducing a current in the coil. Find the magnitude of the magnetic field at the center of the coil that is produced by the induced current. Number
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