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Quality factor of rlc circuit

For a parallel RLC circuit, the Q factor is the inverse of the series case: 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 in filter design to determine the bandwidth.

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Series Parallel RLC Circuit MCQ. 1. When a sinusoidal voltage is applied across R - L series circuit having R = XL, the phase angle will be. 2. An ac source of 200 V RMS supplies active power of 600 W and reactive power of 800 VAR. The RMS current drawn from the source is. 3.

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First, convert parallel C and R to series as shown below. Then equalizing the quality factors we get the value for Rs. In resonance L and C becomes 0 so only Z in we have is Rs. Hence, the input impedance for this circuit will be equal to Rs.

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Q factor or quality factor is a dimensionless parameter that is used to describe the underdamped resonator and characterizes the bandwidth and center frequency of the resonator. The mathematical representation is: Q = E stored /E lost per cycle LCR circuit.

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Q factor or quality factor is a dimensionless parameter that is used to describe the underdamped resonator and characterizes the bandwidth and center frequency of the resonator. The mathematical representation is: Q = E stored /E lost per cycle LCR circuit.

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