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A circuit excited by voltage V has a resistance R which is in series with an inductor and capacitor, which are connected in parallel. The voltage across the resistor at the resonant frequency is ___________(a) 0(b) \(\frac{V}{2}\)(c) \(\frac{V}{3}\)(d) VThis question was posed to me in unit test.I need to ask this question from Problems of Parallel Resonance Involving Quality Factor in portion Resonance & Magnetically Coupled Circuit of Network Theory

Answer»

The correct answer is (a) 0

The EXPLANATION: Dynamic resistance of the tank circuit, ZDY = L/(RLC)

But GIVEN that RL = 0

So, ZDY = L/(0XC) = ∞

Therefore current through circuit, I = \(\frac{V}{∞}\) = 0

∴ VD = 0.



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