al CT LTI system has the following transfer function. (S-2)s2+8s+50 step x(t) = u(t) is applied to this system, then the output at steady s = 0.4 S = -0.8 == -0.4 s = 0.8 = -0.04
al CT LTI system has the following transfer function. (S-2)s2+8s+50 step x(t) = u(t) is applied to this system, then the output at steady s = 0.4 S = -0.8 == -0.4 s = 0.8 = -0.04
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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
Transcribed Image Text:A causal CT LTI system has the following transfer function.
H(s)=20(s-2)s2+8s+50
If unit step x(t) = u(t) is applied to this system, then the output at steady state will be
a. Yss = 0.4
O b. Yss = -0.8
c.Yss = -0.4
C.
O d. Yss = 0.8
e. Yss = -0.04
O f. None of the above
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