1
GATE ME 2014 Set 4
MCQ (Single Correct Answer)
+2
-0.6
A wardrobe (mass 100 kg, height 4 m, width 2 m, depth 1 m), symmetric about the Y-Y axis, stands on a rough level floor as shown in the figure. A force P is applied at mid-height on the wardrobe so as to tip it about point Q without slipping. What are the minimum values of the force (in Newton) and the static coefficient of friction µ between the floor and the wardrobe, respectively? GATE ME 2014 Set 4 Engineering Mechanics - Engineering Mechanics Static and Dynamics Question 35 English
A
490.5 and 0.5
B
981 and 0.5
C
1000.5 and 0.15
D
1000.5 and 0.25
2
GATE ME 2014 Set 4
Numerical
+2
-0
A ladder AB of length 5 m and weight (W) 600 N is resting against a wall. Assuming frictionless contact at the floor (B) and the wall (A), the magnitude of the force P (in newton) required to maintain equilibrium of the ladder is __________400 GATE ME 2014 Set 4 Engineering Mechanics - Engineering Mechanics Static and Dynamics Question 34 English
Your input ____
3
GATE ME 2014 Set 4
MCQ (Single Correct Answer)
+1
-0.3
In a statically determinate plane truss, the number of joints $$(j)$$ and the number of members $$(m)$$ are related by
A
$$j=2m-3$$
B
$$m=2j+1$$
C
$$m=2j-3$$
D
$$m=2j-1$$
4
GATE ME 2014 Set 4
MCQ (Single Correct Answer)
+2
-0.6
Consider the following statements regarding streamline(s):
(i) It is a continuous line such that the tangent at any point on it shows the velocity vector at that point
(ii) There is no flow across streamlines
(iii) $${{dx} \over u} = {{dy} \over v} = {{dz} \over w}$$ is the differential equation of a streamline, where $$u,v$$ and $$w$$ are velocities in directions $$x,y$$ and $$z,$$ respectively
In an unsteady flow, the path of a particle is a streamline

Which one of the following combinations of the statements is true?

A
$$\left( i \right),\,\,\left( {ii} \right),\,\,\left( {iv} \right)$$
B
$$\left( {ii} \right),\,\,\left( {iii} \right),\,\,\left( {iv} \right)$$
C
$$\left( i \right),\,\,\left( {iii} \right),\,\,\left( {iv} \right)$$
D
$$\left( i \right),\,\,\left( {ii} \right),\,\,\left( {iii} \right)$$
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