5. Given the transfer function Vo(s) 6 A(s) 8+3 compute the voltage vo(t) at the steady-state for a(t) = 5 sin 3t, (A, s). H(s) = =

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please expand further on the given solution as i do not understand how this one was solved whatsoever. please explain it thoroughly and break it down completely as if ur explaining it to a complete beginner. thank you!

5.
Given the transfer function
Vo(s)
A(s) s+3
compute the voltage vo(t) at the steady-state for a(t) = 5 sin 3t, (A, s).
H(s) =
=
Transcribed Image Text:5. Given the transfer function Vo(s) A(s) s+3 compute the voltage vo(t) at the steady-state for a(t) = 5 sin 3t, (A, s). H(s) = =
(5) H(s)= Vo(s)
As
H(jw) = 6
ju +3
w = 3
Vo =
6
3+3;
5+3
A²=se-30
90
5e-j go
5. se
ej
M
5135
Vo = G.S
3√2
vo= S√2 e-j
Vo(t) = 5√2
135
Cos(34-135)
Transcribed Image Text:(5) H(s)= Vo(s) As H(jw) = 6 ju +3 w = 3 Vo = 6 3+3; 5+3 A²=se-30 90 5e-j go 5. se ej M 5135 Vo = G.S 3√2 vo= S√2 e-j Vo(t) = 5√2 135 Cos(34-135)
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