A series RLC circuit has a resonant frequency of 1.2 kHz and a Q-factor at resonance of 30. If the impedance of the circuit at resonance is 50 £2, determine the values of i. ii. iii. The inductance The capacitance The-3 dB frequencies

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A series RLC circuit has a resonant frequency of 1.2 kHz and a Q-factor at resonance of 30.
If the impedance of the circuit at resonance is 50 £2, determine the values of
Question #6
An electrical circuit is supplied by the output of a full-wave rectifier. Given that the Fourier
expression for this supply voltage is
50
v==+25Cos754t +12.5Cos1508t + 5.555Cos2262t +...
i.
The inductance
ii.
The capacitance
iii. The -3 dB frequencies
and produces an output current of
2.0113Cos(754t+1.326) +1.8634Cos(1508 +1.10715°) + 1.1111Cos(2262t +0.9273°)
Determine
i.
ii.
iii.
TT
The resistance of the circuit
The value of the reactive element in the circuit
The Active, Reactive and Apparent powers supplied by the rectifier
Transcribed Image Text:A series RLC circuit has a resonant frequency of 1.2 kHz and a Q-factor at resonance of 30. If the impedance of the circuit at resonance is 50 £2, determine the values of Question #6 An electrical circuit is supplied by the output of a full-wave rectifier. Given that the Fourier expression for this supply voltage is 50 v==+25Cos754t +12.5Cos1508t + 5.555Cos2262t +... i. The inductance ii. The capacitance iii. The -3 dB frequencies and produces an output current of 2.0113Cos(754t+1.326) +1.8634Cos(1508 +1.10715°) + 1.1111Cos(2262t +0.9273°) Determine i. ii. iii. TT The resistance of the circuit The value of the reactive element in the circuit The Active, Reactive and Apparent powers supplied by the rectifier
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