Consider the system in the figure. The input is the function f(t) and the output is 2x+3 dx/dt x(t) K At) The matrices of the state space are B= c=[1 0] D=[0] a. A= fr K M. 1 b. A= fv B= 1 C=[1 0] D=[0] K C=[2 3] D=[0] c. A= K fr B = M. 1 3= C-[2 3] D=[0] M. d. A= fr K

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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moodle1.du.edu.om/mo
Consider the system in
the figure. The input is
the function f(t) and the
output is 2x+3 dx/dt
x(t)
K
M
(t)
The matrices of the state
space are
B= c=1 0] D-0]
a. A=
K
M
M.
1
b. A=
B = 1
C=[1 0] D=[0]
fv
K
M
M
M
1
B = 1 C=[2 3] D=[0]
M
c. A=
K
fv
M
м.
1
d. A=
- c-[2 3] D=[]
fr
K
B =
M
Select one:
а. С
Transcribed Image Text:moodle1.du.edu.om/mo Consider the system in the figure. The input is the function f(t) and the output is 2x+3 dx/dt x(t) K M (t) The matrices of the state space are B= c=1 0] D-0] a. A= K M M. 1 b. A= B = 1 C=[1 0] D=[0] fv K M M M 1 B = 1 C=[2 3] D=[0] M c. A= K fv M м. 1 d. A= - c-[2 3] D=[] fr K B = M Select one: а. С
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