1
GATE ECE 1987
MCQ (Single Correct Answer)
+2
-0.6
The popular plot of G(s)=$${{10} \over {s{{\left( {s + 1} \right)}^2}}},$$ intercepts real axix at $$\omega = {\omega _0}$$ Then, the real part and $${\omega _0}$$ are respectively given by
A
-25, 1
B
-5, 0.5
C
-5, 1
D
-5, 2
2
GATE ECE 1987
MCQ (Single Correct Answer)
+2
-0.6
For the system shown in figure the transfer function $$\frac{\mathrm C\left(\mathrm s\right)}{\mathrm R\left(\mathrm s\right)}$$ is equal to GATE ECE 1987 Control Systems - Signal Flow Graph and Block Diagram Question 7 English
A
$$\frac{10}{\mathrm s^2\;+\;\mathrm s\;+\;10}$$
B
$$\frac{10}{\mathrm s^2\;+\;11\mathrm s\;+\;10}$$
C
$$\frac{10}{\mathrm s^2\;+\;9\mathrm s\;+\;10}$$
D
$$\frac{10}{\mathrm s^2\;+\;2\mathrm s\;+\;10}$$
3
GATE ECE 1987
MCQ (Single Correct Answer)
+2
-0.6

In the signal flow graph shown in fig X2= TX1 where T is equal to

GATE ECE 1987 Control Systems - Signal Flow Graph and Block Diagram Question 8 English
A
2.5
B
5
C
5.5
D
10
4
GATE ECE 1987
MCQ (Single Correct Answer)
+1
-0.3
A ripple counter using negative edge-triggered D-flip flops is shown in Fig.1. The flip-flops are cleared to '0' by a '0' at the R input. The feedback logic is to be designed to obtain the count sequence shown in the same figure. The correct feedback logic is: GATE ECE 1987 Digital Circuits - Sequential Circuits Question 12 English 1 GATE ECE 1987 Digital Circuits - Sequential Circuits Question 12 English 2
A
$$F\, = \overline {{Q_2}{Q_1}\overline {{Q_0}} } $$
B
$$F\, = \,{Q_2}\,\overline {{Q_1}} \overline {{Q_0}} $$
C
$$F\, = \,\overline {{Q_2}} \overline {{Q_1}} {Q_0}$$
D
$$F\, = \,\overline {{Q_2}} \overline {{Q_1}} \overline {{Q_0}} $$
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