The positioning system of a printer can be modeled as 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: Select one: O a. b. OC. 10(s +50) s²+60s +500 e. R(s). Yes = lim y(t) = 1 818 Yss=lim y(t) = 100 818 yss=lim y(t) = 50 818 d. non of the choices Yss=lim y(t) = 0 818

Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter6: Power Flows
Section: Chapter Questions
Problem 6.16P
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The positioning system of a printer can be modeled as
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:
Select one:
a.
O b.
10(s +50)
s²+60s +500
O C.
e.
R(s).
Yss=lim y(t) = 1
818
Yss=lim y(t) = 100
818
Yes = lim y(t) = 50
d. non of the choices
Yss=lim y(t) = 0
813
Transcribed Image Text:The positioning system of a printer can be modeled as 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: Select one: a. O b. 10(s +50) s²+60s +500 O C. e. R(s). Yss=lim y(t) = 1 818 Yss=lim y(t) = 100 818 Yes = lim y(t) = 50 d. non of the choices Yss=lim y(t) = 0 813
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