1
GATE EE 1998
MCQ (Single Correct Answer)
+2
-0.6
The number of roots on the equation $$2{s^4} + {s^3} + 3{s^2} + 5s + 7 = 0$$ that lie in the right half of $$S$$ plane is:
A
Zero
B
One
C
Two
D
Three
2
GATE EE 1997
Subjective
+2
-0
Determine whether the system given by the block diagram of Figure, is stable GATE EE 1997 Control Systems - Routh Hurwitz Stability Question 4 English
3
GATE EE 1997
Numerical
+2
-0
The system represented by the transfer function $$G\left( s \right) = {{{s^2} + 10s + 24} \over {{s^4} + 6{s^3} - 39{s^2} + 19s + 84}}$$ has . . . pole $$(s)$$ in the right-half $$s$$-plane.
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