A long solenoid has 1,000 turns per meter and carries a current 1 = (100 A) (1-e-t/5.00 s). Inside the solenoid and coaxial with it is a coil that has a radius of 7.00 cm and consists of a 10.0 total turns of fine wire. a) Find the magnetic field inside the solenoid when t = 15.0 s. b) Find the EMF induced in the coil when t = 15.0 s.
A long solenoid has 1,000 turns per meter and carries a current 1 = (100 A) (1-e-t/5.00 s). Inside the solenoid and coaxial with it is a coil that has a radius of 7.00 cm and consists of a 10.0 total turns of fine wire. a) Find the magnetic field inside the solenoid when t = 15.0 s. b) Find the EMF induced in the coil when t = 15.0 s.
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![A long solenoid has 1,000 turns per meter and carries a current
1 = (100 A) (1-e-t/5.00 s). Inside the solenoid and coaxial with it is a coil that has a
radius of 7.00 cm and consists of a 10.0 total turns of fine wire.
a) Find the magnetic field inside the solenoid when t = 15.0 s.
b) Find the EMF induced in the coil when t = 15.0 s.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F609148ad-f7ba-4c7e-815f-d7ef086ecec0%2F660571c6-a59c-4064-8770-fff3062e558b%2Fluk46_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A long solenoid has 1,000 turns per meter and carries a current
1 = (100 A) (1-e-t/5.00 s). Inside the solenoid and coaxial with it is a coil that has a
radius of 7.00 cm and consists of a 10.0 total turns of fine wire.
a) Find the magnetic field inside the solenoid when t = 15.0 s.
b) Find the EMF induced in the coil when t = 15.0 s.
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