b) Find V,(s). Express your answer in terms of Vag, s, R, L, and C. dc Solution approach: Use operational transforms to convert differential equation into polynomial in s.

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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I got part A but do t know how to get part B.

The switch in the circuit below has been in
position a for a long time. At t=0, the
switch moves instantaneously to position b.
a) Derive the integrodifferer:tial equation
that governs the behavior cf the voltage v.
R.
for t20+
dvo
t.
dt
+Vo=D0
Vac
dvo
dt
de
+Vo=0
dt2
A.)
No
R dvoLVo-0
6.
dt2
L dt
LC
Transcribed Image Text:The switch in the circuit below has been in position a for a long time. At t=0, the switch moves instantaneously to position b. a) Derive the integrodifferer:tial equation that governs the behavior cf the voltage v. R. for t20+ dvo t. dt +Vo=D0 Vac dvo dt de +Vo=0 dt2 A.) No R dvoLVo-0 6. dt2 L dt LC
• b) Find V,(s). Express your answer in
terms of Vae s, R, L, and C.
dc
• Solution approach: Use operational
transforms to convert differential equation
into polynomial in s.
Transcribed Image Text:• b) Find V,(s). Express your answer in terms of Vae s, R, L, and C. dc • Solution approach: Use operational transforms to convert differential equation into polynomial in s.
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