1. The switch in the circuit below has been in the position a for a long time. At t=0, it moves instantaneously to position b. For t>=0+, find a) v_0(t), b)i_0(t), c)v_i(t), d) v_2(t), e) the energy trapped in the capacitor as t goes to infinite 40 V 2.2 ΚΩ w 0.2 μF2 0.8 μF 1/1 6.25 k www -0 80 V
1. The switch in the circuit below has been in the position a for a long time. At t=0, it moves instantaneously to position b. For t>=0+, find a) v_0(t), b)i_0(t), c)v_i(t), d) v_2(t), e) the energy trapped in the capacitor as t goes to infinite 40 V 2.2 ΚΩ w 0.2 μF2 0.8 μF 1/1 6.25 k www -0 80 V
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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
Transcribed Image Text:(Pls show all your work step by step when you solve the circuits)
1. The switch in the circuit below has been in the position a for a long time. At t=0, it moves
instantaneously to position b. For t>=0+, find
a) v_0(t), b)i_0(t), c)v_1(t), d) v_2(t), e) the energy trapped in the capacitor as t goes to infinite
40 V
2.2 k
ww
0.2 μF2
0.8 μF2
51+61
b 6.25 k
www
-0
4
80 V
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