The Gilles & Retzbach model of a distillation column, the system model includes the dynamics of a boiler, is driven by the inputs of steam flow and the flow rate of the vapour side stream, and the measurements are the temperature changes at two different locations along the column. The state space model is given by: x = -30.3 0 00 0.00012 -6.02 0 0 0 -3.77 0 0 0 -2.80 0 0 Is the system?: a. unstable b. not unstable x+ 6.15 0 0 0 C. not asymptotically stable d. asymptotically stable 0 0 3.04 0.052 u y 0 0 0 0 -7.3 0 0 -25.0

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Chapter6: Forced Convection Over Exterior Surfaces
Section: Chapter Questions
Problem 6.32P
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hey can i get help with these two questions please. thank you.

For the model defined in Question 1, choose the rank of the controllability matrix from the list given below:
C
a. 2
b. 3
C. 4
d. 0
e.
None of the above
Transcribed Image Text:For the model defined in Question 1, choose the rank of the controllability matrix from the list given below: C a. 2 b. 3 C. 4 d. 0 e. None of the above
The
Gilles & Retzbach model of a distillation column, the system model includes the dynamics of a boiler, is driven by the inputs of steam flow and
the flow rate of the vapour side stream, and the measurements are the temperature changes at two different locations along the column. The state
space model is given by:
x =
0 00
-30.3
0.00012 -6.02 0 0
0 -3.77 00
0
-2.80 0 0
Is the system?:
a. unstable
b.
C.
not unstable
x+
6.15
0
0
0
0
3.04
0 0.052
not asymptotically stable
d. asymptotically stable
-1
u y =
0
0
0
0
-7.3
0
0
-25.0
X
Transcribed Image Text:The Gilles & Retzbach model of a distillation column, the system model includes the dynamics of a boiler, is driven by the inputs of steam flow and the flow rate of the vapour side stream, and the measurements are the temperature changes at two different locations along the column. The state space model is given by: x = 0 00 -30.3 0.00012 -6.02 0 0 0 -3.77 00 0 -2.80 0 0 Is the system?: a. unstable b. C. not unstable x+ 6.15 0 0 0 0 3.04 0 0.052 not asymptotically stable d. asymptotically stable -1 u y = 0 0 0 0 -7.3 0 0 -25.0 X
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