A circular coil of radius 0.54 m is placed in a time-varying magnetic field B(t) = (6.60 × 10-4) sin[(18.8 × 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 = IE(t-0.001) |E(t = 0.01)| V/m V/m = 0.01 s.
A circular coil of radius 0.54 m is placed in a time-varying magnetic field B(t) = (6.60 × 10-4) sin[(18.8 × 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 = IE(t-0.001) |E(t = 0.01)| V/m V/m = 0.01 s.
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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![A circular coil of radius 0.54 m is placed in a time-varying magnetic field B(t) = (6.60 × 10-4) sin[(18.8 × 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 =
IE(t-0.001)
|E(t = 0.01)|
V/m
V/m
=
0.01 s.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F3a34a1e4-7c25-4c64-ab7e-d5dd0d192579%2F289da568-fcdb-4699-87e4-6d4515633f66%2Fgklvh2h_processed.png&w=3840&q=75)
Transcribed Image Text:A circular coil of radius 0.54 m is placed in a time-varying magnetic field B(t) = (6.60 × 10-4) sin[(18.8 × 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 =
IE(t-0.001)
|E(t = 0.01)|
V/m
V/m
=
0.01 s.
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