A circular coil of radius 0.54 m is placed in a time-varying magnetic field B(t) = (6.20 x 10-4) sin[(18.8 x 102 rad/s) t] where B is in teslas. The magnetic field is perpendicular to the plane of the coil. Find the magnitude of the induced electric field in the coil at t = 0.001 s and t= 0.01 s. |E(t = 0.001)| = V/m |E(t = 0.01)| = V/m

Principles of Physics: A Calculus-Based Text
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Chapter23: Faraday’s Law And Inductance
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A circular coil of radius 0.54 m is placed in a time-varying magnetic field B(t) = (6.20 × 10-4) sin[(18.8 x 10² rad/s) t] where B is in teslas. The magnetic field is perpendicular to the plane of the coil. Find the magnitude of the induced
electric field in the coil at t = 0.001 s and t = 0.01 s.
|E(t = 0.001)|
|E(t = 0.01)|
=
=
V/m
V/m
Transcribed Image Text:A circular coil of radius 0.54 m is placed in a time-varying magnetic field B(t) = (6.20 × 10-4) sin[(18.8 x 10² rad/s) t] where B is in teslas. The magnetic field is perpendicular to the plane of the coil. Find the magnitude of the induced electric field in the coil at t = 0.001 s and t = 0.01 s. |E(t = 0.001)| |E(t = 0.01)| = = V/m V/m
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