12) Two infinitely long solenoids (seen in cross-section) thread a circuit as shown below. The magnitude of B inside each is the same and is increasing at the rate of 100 T/s. What is the (Hint: Replace the solenoid with a "voltage source" to current in each resistor? represent the induced voltage in each loop and apply Kirchhoff's laws.) -0.50 m 0.50 m 12 = 0.15 m %3D n = 0.10 m 6.0 Ω 3.0 Ω 5.0 2 0.50 m Bin out
12) Two infinitely long solenoids (seen in cross-section) thread a circuit as shown below. The magnitude of B inside each is the same and is increasing at the rate of 100 T/s. What is the (Hint: Replace the solenoid with a "voltage source" to current in each resistor? represent the induced voltage in each loop and apply Kirchhoff's laws.) -0.50 m 0.50 m 12 = 0.15 m %3D n = 0.10 m 6.0 Ω 3.0 Ω 5.0 2 0.50 m Bin out
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#12
![magnitude of B inside each is the same and is increasing at the rate of 100 T/s. What is the
(Hint: Replace the solenoid with a "voltage source" to
12)
Two infinitely long solenoids (seen in cross-section) thread a circuit as shown below. The
current in each resistor?
represent the induced voltage in each loop and apply Kirchhoff's laws.)
-0.50 m
0.50 m
12 = 0.15 m
n = 0.10 m
0.50 m
3.0 2
5.0 2
6.0 2
Bin
Bout](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F1ef6a88e-0a35-4f24-95d7-d99002b77268%2F1c249e45-3d39-4f41-9ceb-e44c73765892%2Flxcvs0c_processed.jpeg&w=3840&q=75)
Transcribed Image Text:magnitude of B inside each is the same and is increasing at the rate of 100 T/s. What is the
(Hint: Replace the solenoid with a "voltage source" to
12)
Two infinitely long solenoids (seen in cross-section) thread a circuit as shown below. The
current in each resistor?
represent the induced voltage in each loop and apply Kirchhoff's laws.)
-0.50 m
0.50 m
12 = 0.15 m
n = 0.10 m
0.50 m
3.0 2
5.0 2
6.0 2
Bin
Bout
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