14000 A closed loop system shown in the Figure 1-1 where G(s)=- s' +45s +3100s +500 R(s) + E(s) C(s) G(s) Figure 1.1: Feed Back System C(s) Derive the Transfer Function T (s) = R(s) Examine the Poles and Zeros of T(s). 1 Use a unit step input, R(s)=- and Find the partial fraction expression for C(s). Due die

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14000
A closed loop system shown in the Figure 1-1 where G(s) =
+45s? +3100s +500
R(s) +
E(s)
C(s)
G(s)
Figure 1.1: Feed Back System
C(s)
Derive the Transfer Function T (s) =
R(s)
Examine the Poles and Zeros of T(s).
Use a unit step input, R(s) =
and Find the partial fraction expression for C(s).
S
Predict the final value of C(s) for the unit step input.
Transcribed Image Text:14000 A closed loop system shown in the Figure 1-1 where G(s) = +45s? +3100s +500 R(s) + E(s) C(s) G(s) Figure 1.1: Feed Back System C(s) Derive the Transfer Function T (s) = R(s) Examine the Poles and Zeros of T(s). Use a unit step input, R(s) = and Find the partial fraction expression for C(s). S Predict the final value of C(s) for the unit step input.
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