The transfer function of a system is shown below. S-a G (s) : (s+b)(s-c) | Where: a = 6, b = 5 and c = 9 When you solve the step response in which R(s) = 1/s, you will get the form of c(t) as shown below: c (t) = X+ Y e-bt + Z ect %3D X, Y and Z are constant values which you will obtain when you solve the response c(t). For the blank below, enter the sum of Y and Z (if negative, place a sign before the value). Use FOUR decimal places. Y +Z =

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 transfer function of a system is shown below

The transfer function of a system is shown
below.
S-a
G (s) :
(s+b)(s-c)
|
Where: a = 6, b = 5 and c = 9
When you solve the step response in which
R(s) = 1/s, you will get the form of c(t) as
shown below:
c (t) = X+ Y e-bt
+ Z ect
%3D
X, Y and Z are constant values which you will
obtain when you solve the response c(t).
For the blank below, enter the sum of Y and Z
(if negative, place a
sign before the value).
Use FOUR decimal places.
Y +Z =
Transcribed Image Text:The transfer function of a system is shown below. S-a G (s) : (s+b)(s-c) | Where: a = 6, b = 5 and c = 9 When you solve the step response in which R(s) = 1/s, you will get the form of c(t) as shown below: c (t) = X+ Y e-bt + Z ect %3D X, Y and Z are constant values which you will obtain when you solve the response c(t). For the blank below, enter the sum of Y and Z (if negative, place a sign before the value). Use FOUR decimal places. Y +Z =
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