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# Series rlc circuit formula

Q9. Directions : Items consists of two statements, one labelled as the Statement (I) and the other labelled as Statement (II). You are to examine these two statements carefully and select the answers to these items using the codes given below Statement (I) : In resonant circuits, the capacitor voltage or inductor current could be much lower than the source voltage or source current, and a ....

Parallel resonant circuits • For a parallel RLC circuit, the Q factor is the inverse of the series case: • Q = R 𝐶 𝐿 = 𝑅 𝜔0 = 𝜔0 𝑅𝐶 • Consider a circuit where R, L and C are all in parallel. The lower the parallel resistance, the more effect it will have in damping the circuit and thus the lower the Q. This is useful. a) Find the angular frequency ω for which the imaginary part of the impedance Z is equal to zero. b) Find the current and the voltages for the frequency found in part a). Solution to Example 2. a) For a series RLC circuit Z = R + j(ωL − 1 ωC) The imaginary of Z is equal to zero gives. ωL − 1 ωC = 0..

For series RLC circuit: For Parallel RLC circuit: 13.1.4 Quality Factor. Notice how much easier this is than having to dierentiate between the formulas for combining capacitors, resistors, and inductors in series.

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