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Exercise · Q11

Q.A bar magnet is moved with its north pole leading towards a stationary closed circular coil, along the coil's axis. Using Lenz's law, find the direction of the induced current in the coil as seen by an observer looking at the coil from the side the magnet is approaching from, and state the magnetic polarity that this gives the coil's near face.

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✓ Free question

As the magnet's north pole approaches the coil, the magnetic flux through the coil (due to the magnet) is INCREASING with time.

By Lenz's law, the induced current must oppose this increase. Opposing an increasing flux means the induced current must set up its OWN magnetic field pointing in the direction that fights the approaching flux -- which, at the coil's face nearest the magnet, means that face must itself become a magnetic NORTH pole (since like poles repel, a north-facing coil pushes back against the approaching north pole of the magnet, directly opposing the increase in flux).

Using the right-hand rule in reverse -- curling the fingers in the direction that would make the near face a north pole (with the thumb pointing out of that face, towards the magnet) -- gives the actual direction the induced current must flow around the coil, as seen by the observer looking at the coil from the magnet's side.

✓Final answer

The induced current flows in the direction that makes the coil's near face a NORTH pole, repelling the approaching magnet, exactly opposing the increasing flux.

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