The large loop shown has a diameter of 73 cm and carries a constant 6 A current. The loop rotates about an axis in the plane of the loop and passes through the center with a constant angular velocity of 83 rad/s, as shown. A small, fixed coil with 95 turns is concen-

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please solve it 2 part problem correctly, this is the 3rd
time i post this and they get it wrong.
013 (part 1 of 2)
The large loop shown has a diameter of 73 cm
and carries a constant 6 A current. The loop
rotates about an axis in the plane of the loop
and passes through the center with a constant
angular velocity of 83 rad/s, as shown.
A small, fixed coil with 95 turns is concen-
tric with the large loop. The coil has a total
resistance 0.662 N and a 6 cm diameter. Note:
The diameter of the coil is much less than the
diameter of the loop.
The permeability of free space is 4# x
10-7 T m/A.
83 rad/s
6 cm
73 cm
What is the amplitude of the induced cur-
rent in the small coil?
Answer in units of A.
014 (part 2 of 2)
What is the maximum value of the electric
field at a distance of 2.223 cm from the center
of the fixed coil?
Answer in units of V/m.
Transcribed Image Text:please solve it 2 part problem correctly, this is the 3rd time i post this and they get it wrong. 013 (part 1 of 2) The large loop shown has a diameter of 73 cm and carries a constant 6 A current. The loop rotates about an axis in the plane of the loop and passes through the center with a constant angular velocity of 83 rad/s, as shown. A small, fixed coil with 95 turns is concen- tric with the large loop. The coil has a total resistance 0.662 N and a 6 cm diameter. Note: The diameter of the coil is much less than the diameter of the loop. The permeability of free space is 4# x 10-7 T m/A. 83 rad/s 6 cm 73 cm What is the amplitude of the induced cur- rent in the small coil? Answer in units of A. 014 (part 2 of 2) What is the maximum value of the electric field at a distance of 2.223 cm from the center of the fixed coil? Answer in units of V/m.
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