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An AC circuit with a non-ohmic resistive element has a current described by . If the voltage across the element is , which statement BEST describes the relationship between instantaneous power, average power, and RMS power?
The instantaneous power is constant, the average power is zero, and the RMS power is equal to the peak power.
The instantaneous power fluctuates, the average power is non-zero, and the RMS power is greater than the average power.
The instantaneous power fluctuates, the average power is zero, and the RMS power is equal to the average power.
The instantaneous power is constant, the average power is non-zero, and the RMS power is less than the average power.
A choke coil and a resistor are connected in series to an AC source. If the inductance of the choke coil is and the resistance is , under what condition will the power consumed by the circuit be independent of the frequency of the AC source?
R << ωL
R = ωL
R >> ωL
R = 0
A choke coil having negligible resistance carries a current . Which of the following is true regarding the instantaneous power consumed by the coil?
It is constant and equal to zero.
It is constant and equal to .
It oscillates at a frequency of with a mean value of .
It oscillates at a frequency of with a mean value of zero.
A 2200 V, 50 Hz AC source is connected to a series combination of a resistor and a choke coil . If the voltage across the resistor is 120 V, and across the inductor is 1600 V, the power consumed by the choke coil is:
256 W
320 W
0 W
128 W
A series R-L-C circuit with , , and is connected to an AC source with and variable frequency. At resonance, the average power dissipated in the circuit is:
2000 W
4000 W
1000 W
8000 W
In a series R-C circuit, the voltage across the capacitor lags the current by . If the frequency of the source is doubled, the phase difference between the voltage across the capacitor and the current will:
Increase
Decrease
Remain the same
Become zero
A series L-C-R circuit is connected to an AC source. At resonance, which of the following quantities is minimum?
Current
Impedance
Voltage across the inductor
Voltage across the capacitor