9000 Amp lightning bolt strikes a vertical pole 50.0 m from a worker holding a coil of wire. The current flows for 80.0 µs. The coil of wire is 0.300 m in radius, has 20 windings and a total resistance of 2.00 Ω. Assume the direction of the area of the coil is perpendicular to the line between the center of the coil and the lightning bolt. Explain how to find the current induced in the coil of wire and show the calculation of that current.
9000 Amp lightning bolt strikes a vertical pole 50.0 m from a worker holding a coil of wire. The current flows for 80.0 µs. The coil of wire is 0.300 m in radius, has 20 windings and a total resistance of 2.00 Ω. Assume the direction of the area of the coil is perpendicular to the line between the center of the coil and the lightning bolt. Explain how to find the current induced in the coil of wire and show the calculation of that current.
Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter23: Faraday’s Law And Inductance
Section: Chapter Questions
Problem 53P
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Question
A 9000 Amp lightning bolt strikes a vertical pole 50.0 m from a worker holding a coil of
wire. The current flows for 80.0 µs. The coil of wire is 0.300 m in radius, has 20 windings
and a total resistance of 2.00 Ω. Assume the direction of the area of the coil is perpendicular
to the line between the center of the coil and the lightning bolt. Explain how to find the
current induced in the coil of wire and show the calculation of that current.
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