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Q.The core of a transformer is laminated so that

(a) rusting of the core may be prevented
(b) energy losses due to eddy currents may be minimised
(c) ratio of voltage in primary and secondary may be increased
(d) the weight of the transformer may be reduced.
Nagaland NbseNagaland Board of School Education 2021MCQ· 1mImportance★★★★★
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A laminated transformer core reduces eddy-current losses, not rusting, the turns ratio, or weight.

When the alternating flux in a transformer core changes, it induces circulating eddy currents in the bulk iron (by Faraday's law) exactly as it induces the wanted EMF in the windings. In a solid core these eddy currents can be large because the core offers a low-resistance path, and the energy dissipated as I2RI^2R heat is wasted, heating the core and lowering efficiency.

By building the core from thin laminations (sheet thickness typically 0.35 mm or less), each insulated from its neighbours by a varnish or oxide coating, the possible eddy-current loops are confined to each thin sheet. Since the induced EMF driving an eddy current loop is proportional to the area enclosed by the loop, and the sheets are thin, the loop area — and hence both the induced EMF and the eddy current — is drastically reduced. The resistance in the plane of each thin sheet is also higher than in a thick solid block. Both effects together make eddy-current loss fall roughly as the square of the lamination thickness, so laminating with thin sheets …

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