Q.Read the following passage carefully and answer the questions below it: When maximum current flows in an electric circuit at a certain specific frequency, electrical resonance is said to occur in the circuit. Resonance occurs only in a circuit in which both an inductor (L) and a capacitor (C) are connected, because only in that case do the potential differences across the two ends of L and C cancel each other out (both being in opposite phase), and the current amplitude becomes Im = Vm/R, where Vm equals the potential drop across the two ends of R.
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Start your 14-day free trial to unlock the full solution →Electrical resonance (maximum current) occurs only in a series LCR circuit, at angular frequency ω0 = 1/√(LC), where current and voltage are in phase (phase difference 0°).
(i) Resonance requires both an inductor and a capacitor so that their opposite-phase voltage drops (VL and VC) cancel exactly, leaving the current limited only by R (giving the maximum possible current, Im = Vm/R). This can only happen in a circuit containing both L and C together with R — an LCR circuit. An L-only, LR, or CR circuit lacks the L–C cancellation needed for resonance.
(ii) At resonance, the inductive reactance equals the capacitive reactance: …
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