5) Given is a very long solenoid with 55 wire turns/cm. It carries a current of 0.16A. The solenoid is filled with a magnetic material of relative permittivity p, 4500,
5) Given is a very long solenoid with 55 wire turns/cm. It carries a current of 0.16A. The solenoid is filled with a magnetic material of relative permittivity p, 4500,
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![5) Given is a very long solenoid with 55 wire turns/cm. It carries a current of 0.16A. The
solenoid is filled with a magnetic material of relative permittivity 4, = 4500.
a) Determine the value of magnetic field B, that's from the solenoid current only (as if the
solenoid is filled with vacuum or air).
b) Determine the value of magnetization M inside the solenoid. (obviously with magnetic ma-
terial present).
c) Determine the total magnetic field B
d) Sketch the directions of the solenoid current and the directions of Bo, M, and B inside
the solenoid filled with the magnetic material. Make the vectors roughly proportional to the
calculated magnitudes.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F06e9cf2e-851b-4dc5-9b25-160a0ee9894b%2F09a8489c-dbd4-4ea7-a5f4-32364ff8ace7%2Fdq4l4zq_processed.jpeg&w=3840&q=75)
Transcribed Image Text:5) Given is a very long solenoid with 55 wire turns/cm. It carries a current of 0.16A. The
solenoid is filled with a magnetic material of relative permittivity 4, = 4500.
a) Determine the value of magnetic field B, that's from the solenoid current only (as if the
solenoid is filled with vacuum or air).
b) Determine the value of magnetization M inside the solenoid. (obviously with magnetic ma-
terial present).
c) Determine the total magnetic field B
d) Sketch the directions of the solenoid current and the directions of Bo, M, and B inside
the solenoid filled with the magnetic material. Make the vectors roughly proportional to the
calculated magnitudes.
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