Electrical Engineering 52 20 V () 12 0.25 H 3 1. Draw the circuit before and after t-0. Calculate lo and vo. Calculate the value of ×, w0 and determine type of damping. Calculate characteristic equation roots (S1,S2 ). Find A, and A2 and determine v(t) for t>0. 1. 111. IV. 10 is the current flow on inductor v0 capacitor vlotage

Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter24: Resistive-inductive-capacitive Parallel Circuits
Section: Chapter Questions
Problem 1RQ: An AC circuit contains a 24 resistor, a 15.9-mH inductor, and a 13.3F capacitor connected in...
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Electrical Engineering
52
1-0
20 V ()
12
0.25 H
3
1.
Draw the circuit before and after t-0.
Calculate lo and vo.
1.
Calculate the value of ×, wo and determine type of damping.
Calculate characteristic equation roots (S1,S2 ).
Find A, and Az and determine v(7) for t-0.
111.
IV.
10 is the current flow on inductor
v0 capacitor vlotage
ww
Transcribed Image Text:Electrical Engineering 52 1-0 20 V () 12 0.25 H 3 1. Draw the circuit before and after t-0. Calculate lo and vo. 1. Calculate the value of ×, wo and determine type of damping. Calculate characteristic equation roots (S1,S2 ). Find A, and Az and determine v(7) for t-0. 111. IV. 10 is the current flow on inductor v0 capacitor vlotage ww
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