Exercise 4. 2k, R₂ = R3 = 6kN, C = 1μF, and the circuit is in a steady-state condition before the switch opens. Find the value of Assume Vs = 100V, Rs = 4ΚΩ, R1 = cat t=ms after the switch opens. Ans: vc (to + 3) = 8.888V t=0 Rs www Vs R₁ ww Lic C R2 R₂ R3
Exercise 4. 2k, R₂ = R3 = 6kN, C = 1μF, and the circuit is in a steady-state condition before the switch opens. Find the value of Assume Vs = 100V, Rs = 4ΚΩ, R1 = cat t=ms after the switch opens. Ans: vc (to + 3) = 8.888V t=0 Rs www Vs R₁ ww Lic C R2 R₂ R3
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:Exercise 4.
2k, R₂ = R3 = 6kN, C = 1μF, and the
circuit is in a steady-state condition before the switch opens. Find the value of
Assume Vs
=
100V, Rs
=
4ΚΩ, R1
=
cat t=ms after the switch opens.
Ans: vc (to + 3)
= 8.888V
t=0
Rs
www
Vs
R₁
ww
Lic
C
R2
R₂ R3
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