A straight 3.0m long conducting wire with resistance, R=6.0mΩ, is bent into a single circular loop and allowed to experience a uniform magnetic field, B=0.40T, for a long time. The wire is then bent into a square in a time interval of 100ms. The uniform magnetic field is always directed eastward toward the loop and at an angle, θ= 30o , from the plane of the loop. The orientation of the plane of the loop to the magnetic field remains constant during the shape shift. Determine a) the induced emf b) the current in the conducting wire c) the induced electric field in the square conducting wire

Physics for Scientists and Engineers: Foundations and Connections
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ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter32: Faraday’s Law Of Induction
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A straight 3.0m long conducting wire with resistance, R=6.0mΩ, is bent into a single circular loop and allowed to experience a uniform magnetic field, B=0.40T, for a long time. The wire is then bent into a square in a time interval of 100ms. The uniform magnetic field is always directed eastward toward the loop and at an angle, θ= 30o , from the plane of the loop. The orientation of the plane of the loop to the magnetic field remains constant during the shape shift. Determine a) the induced emf b) the current in the conducting wire c) the induced electric field in the square conducting wire
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