A wire coil has 156 turns and sits in an externally applied steadily changing magnetic field that is perpendicular to the plane in which the coil rests. The magnetic field changes at a rate of 5.14 T/s and as a result, a 6.26 V EMF is induced in the coil. If the magnetic field is made to change at a rate of 8.76 times the original rate of change, what will the induced voltage on the coil be?
A wire coil has 156 turns and sits in an externally applied steadily changing magnetic field that is perpendicular to the plane in which the coil rests. The magnetic field changes at a rate of 5.14 T/s and as a result, a 6.26 V EMF is induced in the coil. If the magnetic field is made to change at a rate of 8.76 times the original rate of change, what will the induced voltage on the coil be?
Chapter13: Electromagnetic Induction
Section: Chapter Questions
Problem 24P: A 50-turn coil has a diameter of 15 cm. The coil is placed in a spatially uniform magnetic field of...
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A wire coil has 156 turns and sits in an externally applied steadily changing magnetic field that is perpendicular to the plane in which the coil rests. The magnetic field changes at a rate of 5.14 T/s and as a result, a 6.26 V EMF is induced in the coil. If the magnetic field is made to change at a rate of 8.76 times the original rate of change, what will the induced voltage on the coil be?
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