As shown, the rolling axle, 1.50 m long, is pushed along horizontal rails at a constant speed υ = 3.00 m/s. A resistor R = 0.400 Ω is connected to the rails at points a and b, directly opposite each other. The wheels make good electrical contact with the rails, so the axle, rails, and R form a closed-loop circuit. The only significant resistance in the circuit is R. A uniform magnetic field B = 0.080 0 T is vertically downward. (a) Find the induced current I in the resistor. (b) What horizontal force F is required to keep the axle rolling at constant speed? (c) Which end of the resistor, a or b, is at the higher electric potential? (d) What If? After the axle rolls past the resistor, does the current in R reverse direction? Explain your answer.
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Figure P30.38](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa768be20-150c-4f1f-beca-9ca6ef1e6cad%2Fd6480e9f-64bd-4ff8-b592-422498395d71%2Flntmzpc.png&w=3840&q=75)
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