10 2 13.263 mH 73.683 µF Figure #6 Figure #6 shows an impedance consisting of resistance, inductance and capacitance being supplied by a non-sinusoidal voltage “v". Given that "v" is given by v = 180Sin377t – 90Sin754t + 60Sin1131t – 45Sin1508t + .. Determine a. The amplitude of the third harmonic of the circuit current “i" b. The active power dissipated in the circuit c. The circuit power factor

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10 2
13.263 mH
73.683 µF
'i'
Figure #6
Figure #6 shows an impedance consisting of resistance, inductance and capacitance being
supplied by a non-sinusoidal voltage “v".
Given that "v" is given by
v = 180Sin377t – 90Sin754t + 60Sin1131t – 45Sin1508t + ….
Determine
a. The amplitude of the third harmonic of the circuit current "i"
b. The active power dissipated in the circuit
c. The circuit power factor
Transcribed Image Text:10 2 13.263 mH 73.683 µF 'i' Figure #6 Figure #6 shows an impedance consisting of resistance, inductance and capacitance being supplied by a non-sinusoidal voltage “v". Given that "v" is given by v = 180Sin377t – 90Sin754t + 60Sin1131t – 45Sin1508t + …. Determine a. The amplitude of the third harmonic of the circuit current "i" b. The active power dissipated in the circuit c. The circuit power factor
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