A circular loop of wire with radius 2.00 cm and resistance 0.600 is in a region of a spatially uniform magnetic field B that is perpendicular to the plane of the loop. At t=0 the magnetic field has magnitude Bo= 3.00 T. The magnetic field then decreases according to the equation B(t) = Boe-t/, where = 0.500 s. Part A What is the maximum magnitude of the current I induced in the loop? Express your answer with the appropriate units. ■ µA ?

Physics for Scientists and Engineers: Foundations and Connections
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ISBN:9781133939146
Author:Katz, Debora M.
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Chapter31: Gauss’s Law For Magnetism And Ampère’s Law
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A circular loop of wire with radius 2.00 cm and resistance 0.600 is
in a region of a spatially uniform magnetic field B that is
perpendicular to the plane of the loop. At t=0 the magnetic field has
magnitude B₁ = 3.00 T. The magnetic field then decreases
according to the equation B(t) = Boe-t/, where = 0.500 s.
Part A
What is the maximum magnitude of the current I induced in the loop?
Express your answer with the appropriate units.
Imax =
Submit
Part B
I =
μA
Value
Submit
Request Answer
What is the induced current I when t = 1.50 s?
Express your answer with the appropriate units.
Value
μA
Units
Request Answer
Units
?
?
Transcribed Image Text:A circular loop of wire with radius 2.00 cm and resistance 0.600 is in a region of a spatially uniform magnetic field B that is perpendicular to the plane of the loop. At t=0 the magnetic field has magnitude B₁ = 3.00 T. The magnetic field then decreases according to the equation B(t) = Boe-t/, where = 0.500 s. Part A What is the maximum magnitude of the current I induced in the loop? Express your answer with the appropriate units. Imax = Submit Part B I = μA Value Submit Request Answer What is the induced current I when t = 1.50 s? Express your answer with the appropriate units. Value μA Units Request Answer Units ? ?
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