(c) A feedback system is shown in Figure Q1(c) below. y(s) u(s) G(s) Figure Q1(c), Block diagram (i) Find the closed-loop transfer function: y(s) when G(s)= u(s) 8. T(s) = s(10+0.5s) %23

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
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Help me on this please all of 1c
(c) A feedback system is shown in Figure Q1(c) below.
y(s)
u(s)
G(s)
Figure Q1(c), Block diagram
(i)
Find the closed-loop transfer function:
y(s)
when G(s)=
u(s)
8.
T(s) =
s(10+0.5s)
e to search
Transcribed Image Text:(c) A feedback system is shown in Figure Q1(c) below. y(s) u(s) G(s) Figure Q1(c), Block diagram (i) Find the closed-loop transfer function: y(s) when G(s)= u(s) 8. T(s) = s(10+0.5s) e to search
(ii) Calculate the values of the system poles.
(iii) Using the final value theorem with unit step input, determine the steady-
state value of y(t).
(iv) Determine the overshoot, the rise time and the settling time of the
response for unit step input.
%3D
arch
hp
Transcribed Image Text:(ii) Calculate the values of the system poles. (iii) Using the final value theorem with unit step input, determine the steady- state value of y(t). (iv) Determine the overshoot, the rise time and the settling time of the response for unit step input. %3D arch hp
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