Part A: For the circuit below, calculate the voltage drops across each of the components (R, L and C). R 1kQ 120 V 500 mH 60 Hz C 100uF メc、 www

Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter18: Resistive-inductive Parallel Circuits
Section: Chapter Questions
Problem 1PA: Incandescent lighting of 500 W is connected in parallel with an inductive load. A clamp-on ammeter...
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I'm getting a very high value for the circuit impedance (Z), so each final answers aren't exactly correct, not convinced I'm I'm on the correct path.  I'll be interested to see how you work each of the valued.  Thanks.

Part A:
For the circuit below, calculate the voltage drops across each of the components (R, L and C).
R 1kQ
120 V
L.
メL
500 mH
60 Hz
C 100µF
メc.
Part B:
For the circuit below, calculate the current flowing through each of the components (R, L and C).
C
120 V
60 Hz
1kQ
500 mH
100µF
For both parts, your final values may be in either polar form or rectangular form and you should also
include your workings out.
ww
www
Transcribed Image Text:Part A: For the circuit below, calculate the voltage drops across each of the components (R, L and C). R 1kQ 120 V L. メL 500 mH 60 Hz C 100µF メc. Part B: For the circuit below, calculate the current flowing through each of the components (R, L and C). C 120 V 60 Hz 1kQ 500 mH 100µF For both parts, your final values may be in either polar form or rectangular form and you should also include your workings out. ww www
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