a) Applying the final value theorem, find the final value of f(t) whose Laplace Transform is given by: 10 F(s) s(3s + 2) /erify your result by taking the inverve Laplace Transform of F(s) and letting t → co. C(s) b) Simplify the block diagram in the figure and obtain the transfer function, R(s) Ha(s)

Advanced Engineering Mathematics
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ISBN:9780470458365
Author:Erwin Kreyszig
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Chapter2: Second-order Linear Odes
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a) Applying the final value theorem, find the final value of f(t) whose Laplace Transform is given by:
10
F(s) =
s(3s + 2)
Verify your result by taking the inverve Laplace Transform of F(s) and letting t → co.
C(s)
b) Simplify the block diagram in the figure and obtain the transfer function, .
Ha(s)
R(s)
C(s)
G;(s)
G,(s)
G,(s)
Ga(s)
H;(s)
H2(s)
Transcribed Image Text:a) Applying the final value theorem, find the final value of f(t) whose Laplace Transform is given by: 10 F(s) = s(3s + 2) Verify your result by taking the inverve Laplace Transform of F(s) and letting t → co. C(s) b) Simplify the block diagram in the figure and obtain the transfer function, . Ha(s) R(s) C(s) G;(s) G,(s) G,(s) Ga(s) H;(s) H2(s)
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