Q.Describe the ways in which Eddy currents are used to advantage.
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Start your 14-day free trial to unlock the full solution →Eddy currents, though usually a source of energy loss, are put to beneficial use wherever controlled heating or a smooth electromagnetic braking/damping force is needed.
When a changing magnetic flux passes through a bulk piece of conducting material, circulating ("eddy") currents are induced within the body of the conductor, by Faraday's law of electromagnetic induction. While eddy currents are often undesirable (e.g. causing power loss and heating in transformer cores, which is why cores are laminated), they are deliberately made use of in several devices:
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Induction furnace: A high-frequency alternating magnetic field is applied to a metal to be melted; the eddy currents induced in the metal generate large amounts of heat (I²R heating) rapidly, melting metals without any external contact/flame — used in metallurgy to melt ores, alloys, and even to purify metals.
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Electromagnetic braking: In electric trains and some roller-coasters, strong electromagnets are mounted near the rotating wheels/axle or a moving metallic surface. When activated, the eddy currents induced in the moving metal oppose its motion (by Lenz's law), providing a smooth, contactless braking force without mechanical wear.
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Dead-beat galvanometers: In moving-coil galvanometers wound on a metallic (e.g. aluminium) frame, the eddy currents induced as the coil moves oppose the coil's oscillation, quickly damping it so the pointer comes to rest at the correct reading almost immediately ("dead beat") instead of oscillating back and forth.
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