A series RLC circuit driven by a source with an amplitude of 120.0 V and a frequency of 50.0 Hz has an inductance of 772 mH, a resistance of 245 02, and a capacitance of 45.0 μF. (a) What are the maximum current and the phase angle between the current and the source emf in this circuit? Imax = 4 = (b) What are the maximum potential difference across the inductor and the phase angle between this potential difference and the current in the circuit? VL, max = 4 = (c) What are the maximum potential difference across the resistor and the phase angle between this potential difference and the current in this circuit? VR, max = 4 = (d) What are the maximum potential difference across the capacitor and the phase angle between this potential difference and the current in this circuit? VC, max = V 4 =

Delmar's Standard Textbook Of Electricity
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Chapter21: Resistive-capacitive Series Circuits
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A series RLC circuit driven by a source with an amplitude of 120.0 V and a frequency of 50.0 Hz has an inductance of 772 mH, a resistance of 245 , and a capacitance of 45.0 μF.
(a) What are the maximum current and the phase angle between the current and the source emf in this circuit?
Imax=
A
4 =
(b) What are the maximum potential difference across the inductor and the phase angle between this potential difference and the current in the circuit?
V
VL, max
=
O
(c) What are the maximum potential difference across the resistor and the phase angle between this potential difference and the current in this circuit?
V
VR, max
4 =
=
O
(d) What are the maximum potential difference across the capacitor and the phase angle between this potential difference and the current in this circuit?
V
Vc, max
4:
O
O
Transcribed Image Text:A series RLC circuit driven by a source with an amplitude of 120.0 V and a frequency of 50.0 Hz has an inductance of 772 mH, a resistance of 245 , and a capacitance of 45.0 μF. (a) What are the maximum current and the phase angle between the current and the source emf in this circuit? Imax= A 4 = (b) What are the maximum potential difference across the inductor and the phase angle between this potential difference and the current in the circuit? V VL, max = O (c) What are the maximum potential difference across the resistor and the phase angle between this potential difference and the current in this circuit? V VR, max 4 = = O (d) What are the maximum potential difference across the capacitor and the phase angle between this potential difference and the current in this circuit? V Vc, max 4: O O
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