Problem
A rod of length slides at on two horizontal rails closed on the left by a resistor . The system is immersed in a field pointing out of the plane. (a) Calculate the electromotive force and the current . (b) Determine the braking force on the rod. (c) Verify that the mechanical power of the external agent equals the power dissipated in .
Conducting rod sliding on rails in a field pointing out of the plane.
Solution
(a) EMF and current. The linked flux varies because the circuit’s area changes: . The current follows from Ohm’s law:
(b) Braking force. On the current-carrying rod immersed in the field, the Laplace force acts, opposite to (Lenz’s law):
(c) Energy balance. Mechanical power of the external agent (keeping constant against ): Power dissipated by the Joule effect in : The two powers coincide: , in accordance with energy conservation.
Links
Topics: Electromagnetic induction Concepts: Faraday-Neumann-Lenz law · Laplace force · Joule effect · Ohm’s law Skills: Flux balance