A series AC circuit contains a resistor, an inductor of 210 mH, a capacitor of 5.10 µF, and a source with AV max = 240 V operating at 50.0 Hz. The maximum current in the circuit is 180 mA. (a) Calculate the inductive reactance. 65.97 (b) Calculate the capacitive reactance. 624 (c) Calculate the impedance. 1.333 kn (d) Calculate the resistance in the circuit. 1.211 kn (e) Calculate the phase angle between the current and the source voltage. 335.25

University Physics Volume 2
18th Edition
ISBN:9781938168161
Author:OpenStax
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Chapter15: Alternating-current Circuits
Section: Chapter Questions
Problem 62CP: A 1.5k resistor and 30-mH inductor are connected in series, as below, across a120-V(rms)ac power...
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A series AC circuit contains a resistor, an inductor of 210 mH, a capacitor of 5.10 µF, and a source with AVmax
= 240 V operating at 50.0 Hz.
The maximum current in the circuit is 180 mA.
(a) Calculate the inductive reactance.
65.97
(b) Calculate the capacitive reactance.
624
(c) Calculate the impedance.
1.333
kn
(d) Calculate the resistance in the circuit.
1.211
kn
(e) Calculate the phase angle between the current and the source voltage.
335.25
The phase angle is a function of the resistance and the reactances of the capacitor and the inductor. °
Transcribed Image Text:A series AC circuit contains a resistor, an inductor of 210 mH, a capacitor of 5.10 µF, and a source with AVmax = 240 V operating at 50.0 Hz. The maximum current in the circuit is 180 mA. (a) Calculate the inductive reactance. 65.97 (b) Calculate the capacitive reactance. 624 (c) Calculate the impedance. 1.333 kn (d) Calculate the resistance in the circuit. 1.211 kn (e) Calculate the phase angle between the current and the source voltage. 335.25 The phase angle is a function of the resistance and the reactances of the capacitor and the inductor. °
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