Problem 3: a) vc (t), t≥ 0. t=0 The circuit is at steady-state before the switch closes at t = 0. Find: b) ic (t), t≥ 0. c) the time constant T. 402 0X Ⓒv₂ = + Us 10 V 402 + Vo 8 Ω ideal op-amp + ic VC - 0.5 m F
Problem 3: a) vc (t), t≥ 0. t=0 The circuit is at steady-state before the switch closes at t = 0. Find: b) ic (t), t≥ 0. c) the time constant T. 402 0X Ⓒv₂ = + Us 10 V 402 + Vo 8 Ω ideal op-amp + ic VC - 0.5 m F
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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![Problem 3:
a) vc (t), t≥ 0.
The circuit is at steady-state before the switch closes at t = 0. Find:
b) ic (t), t≥ 0. c) the time constant T.
4Ω
t=0X
Us
+
= 10 V
4 Ω
+
Vo
8 Ω
ideal op-amp
+ ic
VC
0.5 m F](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F293e4e3d-84cf-47ad-8722-c5f964514605%2F940c48d2-1572-4b72-b8ea-926fb53dd121%2F4lj809w_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Problem 3:
a) vc (t), t≥ 0.
The circuit is at steady-state before the switch closes at t = 0. Find:
b) ic (t), t≥ 0. c) the time constant T.
4Ω
t=0X
Us
+
= 10 V
4 Ω
+
Vo
8 Ω
ideal op-amp
+ ic
VC
0.5 m F
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