A long solenoid has n = 380 turns per meter and carries a current given by I = 31.0(1 – e-1.60t ), where I is in amperes and t is in seconds. Inside the solenoid and coaxial with it is a coil that has a radius of R = 6.00 cm and consists of a total of N = 250 turns of fine wire (see figure below). What emf is induced in the coil by the changing current? (Use the following as necessary: t. Assume ɛ is in mV and t is in seconds.) n turns/m R 6000000Go00o0000000000 N turns
A long solenoid has n = 380 turns per meter and carries a current given by I = 31.0(1 – e-1.60t ), where I is in amperes and t is in seconds. Inside the solenoid and coaxial with it is a coil that has a radius of R = 6.00 cm and consists of a total of N = 250 turns of fine wire (see figure below). What emf is induced in the coil by the changing current? (Use the following as necessary: t. Assume ɛ is in mV and t is in seconds.) n turns/m R 6000000Go00o0000000000 N turns
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![A long solenoid has n = 380 turns per meter and carries a current given by I
= 31.0(1 – e-1.60t ), where I is in amperes and t is in seconds. Inside the
solenoid and coaxial with it is a coil that has a radius of R = 6.00 cm and
consists of a total of N = 250 turns of fine wire (see figure below). What emf
is induced in the coil by the changing current? (Use the following as
necessary: t. Assume ɛ is in mV and t is in seconds.)
n turns/m
R
0000000Go0000000000000
N turns](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F538cc58d-60b8-41b7-950d-3832b026d8ed%2F3ff4263a-fd9e-4c97-a21c-5f74fce135f2%2Fof9n5pt_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A long solenoid has n = 380 turns per meter and carries a current given by I
= 31.0(1 – e-1.60t ), where I is in amperes and t is in seconds. Inside the
solenoid and coaxial with it is a coil that has a radius of R = 6.00 cm and
consists of a total of N = 250 turns of fine wire (see figure below). What emf
is induced in the coil by the changing current? (Use the following as
necessary: t. Assume ɛ is in mV and t is in seconds.)
n turns/m
R
0000000Go0000000000000
N turns
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