The switch in the circuit shown below has been in position 1 for a long time before moving to position 2 at t= 0. Find io(1), for t≥ 0+. 2 × 10¹i, 3.3 ΚΩ 25 V 1 2 5 60 ΚΩ 0 to 25 nF Hint: During the discharge cycle of the capacitor, the resistance seen by the capacitor can be found using Thévenin resistance (Rth). You can use the test voltage method to find Rth and use that value to find the time constant (Rth.C).

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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The switch in the circuit shown below has been in position 1 for a long time before
moving to position 2 at t= 0. Find io(t), for t≥ 0+.
2 x 10¹i,
+
3.3 ΚΩ
ww
25 V
1
●4
2
t = 0
: 60 ΚΩ
25 nF
Hint: During the discharge cycle of the capacitor, the resistance seen by the capacitor can be
found using Thévenin resistance (Rth). You can use the test voltage method to find Rth and use
that value to find the time constant (Rth.C).
Transcribed Image Text:The switch in the circuit shown below has been in position 1 for a long time before moving to position 2 at t= 0. Find io(t), for t≥ 0+. 2 x 10¹i, + 3.3 ΚΩ ww 25 V 1 ●4 2 t = 0 : 60 ΚΩ 25 nF Hint: During the discharge cycle of the capacitor, the resistance seen by the capacitor can be found using Thévenin resistance (Rth). You can use the test voltage method to find Rth and use that value to find the time constant (Rth.C).
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