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Q.An ideal inductor when connected in an a.c. circuit does not produce heating effect though it reduces the current in the circuit. Explain giving reason.

Manipur CohsemCOHSEM Manipur Higher Secondary Board 2026Subjective· 2mImportance★★★★★
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An inductor limits current (via reactance) without dissipating energy, since VV and II are 90°90° apart.

An ideal inductor in an AC circuit offers an inductive reactance XL=ωLX_L=\omega L, which limits the amplitude of the current flowing in the circuit (just as a resistance would). However, the current through an ideal inductor is exactly 90°90° out of phase with the voltage across it (current lags voltage by 90°90°). The average power dissipated over a complete cycle is Pavg=VrmsIrmscos⁡ϕP_{avg} = V_{rms}I_{rms}\cos\phi, and with ϕ=90°\phi=90°, cos⁡90°=0\cos90°=0, so Pavg=0P_{avg}=0. Physically, energy is alternately stored in the inductor's magnetic field (as current builds up) and then fully returned to the source (as current falls) each half cycle, with no net e …

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