4- A system with a state matrix A = a- critical damped b- over damped 5- A system with input matrix B= a- one input b- two inputs a- a- 6- A system with a unity positive feedback gain has error ratio R(s) is the system input and G(s) is the plant transfer function. 1 1+G(s) a- R(s) b- G(s) 1-G(s)H(s) G 1+G(s) b- 7- A system with the following transfer function has s² - 12 S3+ 4s 10 Y(s) U(s) = is in a- one input b- two inputs c- three inputs 8- A system with imajenary valued poles is ---- a- stable b- unstable c- critical stable 9- The transfer function of the following block diagram is G(s) →→C(s) [1 1 0 1 has LO c- four inputs d-six inputs c- under damped d- undamped H(s) G(s) 1+G(s)H(s) C- 1-G(s) case. -1 b- -Rin c- zero Rin Where Rin is the input resistance of the op- amp. 1 G(s)-H(s) d- d-five inputs d- non of them where G 1-G(s) ‒‒‒‒‒‒‒‒‒ 9. The transfer function of an inverting amplifier with a short circuit feedback is d- non of them d- -1

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4- A system with a state matrix A =
5- A system with input matrix B=
a- critical damped b- over damped
[1
63
LO
1
c- four inputs d-six inputs
a- one input b- two inputs
a-
a-
6- A system with a unity positive feedback gain has error ratio
R(s) is the system input and G(s) is the plant transfer function.
1
1+G(s)
a-
R(s)
b-
G(s)
1-G(s)H(s)
b-
G
1+G(s)
7- A system with the following transfer function has
s²12
is in
a- one input b- two inputs
8- A system with imajenary valued poles is
a- stable b- unstable
c- critical stable
9- The transfer function of the following block diagram is
0 1 has
c- under damped d- undamped
G(s)
G(s)
1+G(s)H(s)
‒‒‒‒‒‒‒‒‒‒‒‒- case.
Y(s)
U(s) s³ + 4s 10
c- three inputs
H(s)
b- three
1
1-G(s)
-1
b- -Rin
Rin
Where Rin is the input resistance of the op- amp.
d-five inputs
1
G(s)-H(s)
c- zero
d-
d- non of them
→→ C(s)
9. The transfer function of an inverting amplifier with a short circuit feedback
is
where
G
1-G(s)
d- non of them
d- -1
10. State space model of a dynamic system is consider a ----
a- comprehansive model b- reliable model c- simple model d- non of them
11. A system with two resistors, one capcitor and two inductors its number of
states is
a- two
c- four
d- five
Transcribed Image Text:4- A system with a state matrix A = 5- A system with input matrix B= a- critical damped b- over damped [1 63 LO 1 c- four inputs d-six inputs a- one input b- two inputs a- a- 6- A system with a unity positive feedback gain has error ratio R(s) is the system input and G(s) is the plant transfer function. 1 1+G(s) a- R(s) b- G(s) 1-G(s)H(s) b- G 1+G(s) 7- A system with the following transfer function has s²12 is in a- one input b- two inputs 8- A system with imajenary valued poles is a- stable b- unstable c- critical stable 9- The transfer function of the following block diagram is 0 1 has c- under damped d- undamped G(s) G(s) 1+G(s)H(s) ‒‒‒‒‒‒‒‒‒‒‒‒- case. Y(s) U(s) s³ + 4s 10 c- three inputs H(s) b- three 1 1-G(s) -1 b- -Rin Rin Where Rin is the input resistance of the op- amp. d-five inputs 1 G(s)-H(s) c- zero d- d- non of them →→ C(s) 9. The transfer function of an inverting amplifier with a short circuit feedback is where G 1-G(s) d- non of them d- -1 10. State space model of a dynamic system is consider a ---- a- comprehansive model b- reliable model c- simple model d- non of them 11. A system with two resistors, one capcitor and two inductors its number of states is a- two c- four d- five
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