For the circuit below, calculate the following: 1. Input impedance (seen from the voltage source terminal). 2. Voltage across the capacitor Vc. 3. Voltage across the inductor VL. 4. Voltage across the 3 kQ resistor VR. 5 cos(300t) V 1 k w w + + Vc - 0.1 µF 3k. 2 ΚΩ VL 100 mH + VR
For the circuit below, calculate the following: 1. Input impedance (seen from the voltage source terminal). 2. Voltage across the capacitor Vc. 3. Voltage across the inductor VL. 4. Voltage across the 3 kQ resistor VR. 5 cos(300t) V 1 k w w + + Vc - 0.1 µF 3k. 2 ΚΩ VL 100 mH + VR
Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter19: Capacitors
Section: Chapter Questions
Problem 2PA: You are an electrician working in an industrial plant. You discover that the problem with a certain...
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
Transcribed Image Text:For the circuit below, calculate the following:
1. Input impedance (seen from the voltage source terminal).
2. Voltage across the capacitor Vc.
3. Voltage across the inductor VL.
4. Voltage across the 3 kQ resistor VR.
5 cos(300t) V
1 k
w
w
+
+
Vc
-
0.1 µF
3k.
2 ΚΩ
VL
100 mH
+
VR
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