An e.m.f. “e" is given by: e = 40 + 150Sinωt + 30Sin(2ωt-π/4) + 10Sin(4ωt-π/3) +⋯volts With a fundamental frequency of 50 Hz, “e” supplies a series connection of a 100 ohms resistor and 15µF capacitor. Determine a. The r.m.s. value of the voltage b. The amplitude of the second harmonic of the circuit current c. The phase angle of the fourth harmonic of the current

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An e.m.f. “e" is given by:

e = 40 + 150Sinωt + 30Sin(2ωt-π/4) + 10Sin(4ωt-π/3) +⋯volts

With a fundamental frequency of 50 Hz, “e” supplies a series connection of a 100 ohms resistor and 15µF capacitor. Determine

a. The r.m.s. value of the voltage

b. The amplitude of the second harmonic of the circuit current

c. The phase angle of the fourth harmonic of the current

d. The r.m.s. value of the circuit current

e. The apparent power consumed by the circuit

f. The overall power factor

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