The positioning system of a printer can be modeled as 10(s + 50) Y(s) = R(s), s2 + 60s + 500 where the input R (s ) represents the desired position and Y (s ) is the output position. If the input is a unit step input, the final value of the output is:

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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The positioning system of a printer can be modeled as
10(s + 50)
R(s).
s²+ 60s + 500
Y(s) =
where the input R (s ) represents the desired position and Y (s ) is the output position. If the input is a unit step input, the final value of the output is:
Yss = lim,→∞ y(t)=50
Yss = lim,→∞ y(t) =100
yss = lim,→∞ y(1)=1
None of the above
Transcribed Image Text:The positioning system of a printer can be modeled as 10(s + 50) R(s). s²+ 60s + 500 Y(s) = where the input R (s ) represents the desired position and Y (s ) is the output position. If the input is a unit step input, the final value of the output is: Yss = lim,→∞ y(t)=50 Yss = lim,→∞ y(t) =100 yss = lim,→∞ y(1)=1 None of the above
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