1
The sum of two normally distributed random variables X and Y is
2
Let $$I = \mathop \smallint \nolimits_{x = 0}^1 \mathop \smallint \nolimits_{y = 0}^{{x^2}} x{y^2}dydx.$$ Then, I may also be expressed as
3
The process, that uses a tapered horn to amplify and focus the mechanical energy for machining of glass, is
4
The solution of $$\frac{{{d^2}y}}{{d{t^2}}} - y = 1,$$ which additionally satisfies $${\left. y \right|_{t = 0}} = {\left. {\frac{{dy}}{{dt}}} \right|_{t = 0}} = 0$$ in the Laplace s-domain is
5
The equation of motion of a spring-mass-damper system is given by
$$\frac{{{d^2}x}}{{d{t^2}}} + 3\frac{{dx}}{{dt}} + 9x = 10\sin \left( {5t} \right)$$
The damping factor for the system is1
GATE ME 2020 Set 2
MCQ (Single Correct Answer)
+1
-0.33
Let $$I = \mathop \smallint \nolimits_{x = 0}^1 \mathop \smallint \nolimits_{y = 0}^{{x^2}} x{y^2}dydx.$$ Then, I may also be expressed as
2
GATE ME 2020 Set 2
MCQ (Single Correct Answer)
+1
-0.33
The process, that uses a tapered horn to amplify and focus the mechanical energy for machining of glass, is
3
GATE ME 2020 Set 2
MCQ (Single Correct Answer)
+1
-0.33
The solution of $$\frac{{{d^2}y}}{{d{t^2}}} - y = 1,$$ which additionally satisfies $${\left. y \right|_{t = 0}} = {\left. {\frac{{dy}}{{dt}}} \right|_{t = 0}} = 0$$ in the Laplace s-domain is
4
GATE ME 2020 Set 2
MCQ (Single Correct Answer)
+1
-0.33
The equation of motion of a spring-mass-damper system is given by
$$\frac{{{d^2}x}}{{d{t^2}}} + 3\frac{{dx}}{{dt}} + 9x = 10\sin \left( {5t} \right)$$
The damping factor for the system isSubject
Engineering Mathematics
4
Engineering Mechanics
1
General Aptitude
3
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