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Q.(i) State the principle of working of a transformer.

(1)
(ii) Explain briefly any three energy losses in a transformer. (3)
Kerala DhseKerala DHSE Plus Two Board 2022Subjective· 4mImportance★★★★★
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A transformer relies on mutual induction between two coils; its main energy losses are copper loss, hysteresis loss, and eddy current loss.

  1. Working principle: A transformer works on the principle of mutual induction: an alternating current in the primary coil produces a continuously changing magnetic flux, which (via a common soft-iron core) links with the secondary coil and induces an alternating emf in it, by Faraday's law of electromagnetic induction.
  2. Three energy losses in a transformer:
  1. Copper loss (I²R loss): The primary and secondary windings have some resistance, so current flowing through them dissipates energy as heat (I2RI^2R). This loss increases with the load current and is minimised by using thick, low-resistance wire for the windings.

  2. Hysteresis loss: The iron core is repeatedly magnetised and demagnetised as the alternating current reverses direction each cycle. Each cycle of magnetisation dissipates a small amount of energy as heat due to the 'hysteresis' (lag) in the core material's magnetic response. This is minimised by using a core material with a narrow hysteresis loop (e.g. soft iron).

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