a) A parallel RLC network is constructed with a 5 mH inductor and the remaining compo- nent values are chosen such that Qo = 6.5 and wo = 1000 rad/s. Determine the approximate value of the input impedance magnitude for operation at 750 rad/s; b) An RLC circuit is constructed using R = 50, L = 20 mH, and C = 1 mF. Calculate Q0, the bandwidth, and the magnitude of the impedance at 0.95wo if the circuit is (a) parallel-connected; (b) series-connected. C) Assuming an operating frequency of 200 rad/s, find a series equivalent of the parallel combination of a 500 resistor and (a) a 1.5 µF capacitor; (b) a 200 mH inductor.

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Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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a) A parallel RLC network is constructed with a 5 mH inductor and the remaining compo-
nent values are chosen such that Qo= 6.5 and wo = 1000 rad/s. Determine the approximate
value of the input impedance magnitude for operation at 750 rad/s;
b) An RLC circuit is constructed using R = 50, L = 20 mH, and C = 1 mF. Calculate
Q0, the bandwidth, and the magnitude of the impedance at 0.95wo if the circuit is (a)
parallel-connected; (b) series-connected.
C) Assuming an operating frequency of 200 rad/s, find a series equivalent of the parallel
combination of a 500 resistor and (a) a 1.5 µF capacitor; (b) a 200 mH inductor.
Transcribed Image Text:a) A parallel RLC network is constructed with a 5 mH inductor and the remaining compo- nent values are chosen such that Qo= 6.5 and wo = 1000 rad/s. Determine the approximate value of the input impedance magnitude for operation at 750 rad/s; b) An RLC circuit is constructed using R = 50, L = 20 mH, and C = 1 mF. Calculate Q0, the bandwidth, and the magnitude of the impedance at 0.95wo if the circuit is (a) parallel-connected; (b) series-connected. C) Assuming an operating frequency of 200 rad/s, find a series equivalent of the parallel combination of a 500 resistor and (a) a 1.5 µF capacitor; (b) a 200 mH inductor.
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Question (C) is incorrect the answer must be (488.99-73.3496j) because we take parallel combination please solve it aga

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