Consider a system of input x (t) and an output y (t) represented by the following equation dy (t) dy (t) +7 dt3 dy (t) dt? - 5 dt 75y (t) = x (t) a) Obtain the transfer function H (s), the poles and the zeros b) Using the Laplace transform, obtain the output of the system y (t) considering d5 (t) dd (t) æ (t) dt2 + 108 (t) dt y (0) = -1, y(0) = 9, y" (0) = -63, 8 (0) = 0 8' (0) = 0. with

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Consider a system of input x (t) and an output y (t) represented by the following equation
dy (t)
dy (t)
+7
dt3
dy (t)
dt?
- 5
dt
75y (t) = x (t)
a) Obtain the transfer function H (s), the poles and the zeros
b) Using the Laplace transform, obtain the output of the system y (t) considering
d5 (t)
dd (t)
æ (t)
+ 108 (t)
dt
dt2
y (0) = -1, y(0) = 9, y" (0) = -63, 8 (0) = 0 8' (0) = 0.
with
Transcribed Image Text:Consider a system of input x (t) and an output y (t) represented by the following equation dy (t) dy (t) +7 dt3 dy (t) dt? - 5 dt 75y (t) = x (t) a) Obtain the transfer function H (s), the poles and the zeros b) Using the Laplace transform, obtain the output of the system y (t) considering d5 (t) dd (t) æ (t) + 108 (t) dt dt2 y (0) = -1, y(0) = 9, y" (0) = -63, 8 (0) = 0 8' (0) = 0. with
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