An inductor of inductance 400 mH, a capacitor of capacitance 4.43 μF, and a resistor of resistance 500 are connected in series with a 50Hz AC source. If the peak current in the circuit is 250 mA, predict (a) the required peak voltage and (b) the phase difference between the applied voltage and current
An inductor of inductance 400 mH, a capacitor of capacitance 4.43 μF, and a resistor of resistance 500 are connected in series with a 50Hz AC source. If the peak current in the circuit is 250 mA, predict (a) the required peak voltage and (b) the phase difference between the applied voltage and current
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![An inductor of inductance 400 mH, a capacitor of
capacitance 4.43 μµF, and a resistor of resistance
500 are connected in series with a 50Hz AC
source. If the peak current in the circuit is 250
mA, predict (a) the required peak voltage and (b)
the phase difference between the applied
voltage and current](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa602de63-f390-40de-aced-6b031f25cb0d%2F21842ad9-2c8a-467a-979c-8e7de301bedf%2Fc2d5z2d_processed.jpeg&w=3840&q=75)
Transcribed Image Text:An inductor of inductance 400 mH, a capacitor of
capacitance 4.43 μµF, and a resistor of resistance
500 are connected in series with a 50Hz AC
source. If the peak current in the circuit is 250
mA, predict (a) the required peak voltage and (b)
the phase difference between the applied
voltage and current
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