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A bar magnet is dropped toward a conducting ring lying on the floor. As the magnet falls toward the ring, does it move as a freely
falling object? Provide full explanation.

Respuesta :

Explanation:

According to the Faraday-Lenz law, a conductive ring generates an induced current due to the change in the magnetic flux caused by the motion of the bar magnet. This induced current generates a magnetic field opposite to the magnetic field of the bar, generating an upward force that opposes the weight of the bar magnet, Therefore, it does not move as a freely  falling object.

"No, because when the upward-directed field will oppose the motion of the magnet, then preventing it from moving as a freely- falling body".

What is Faraday-Lenz law?

According to the Faraday-Lenz law refer a conductive ring generates an influenced current due to the change in the magnetic flux caused by the motion of the bar magnet. This induced current induces a magnetic field opposite to the magnetic field of the bar, generating an upward force that disagrees with the weight of the bar magnet, Thus, it does not move as a freely falling object.

Find more information about Faraday-Lenz law here:

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