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Engineering Mechanics MCQ Interview Questions and Answers
1.
The unit of force in S.I. units is
kilogram
newton
watt
dyne
joule.
2.
The unit of work or energy in S.I. units is
newton
pascal
kilogram meter
watt
joule.
3.
The unit of power in S.I. units is
newton meter
watt
joule
kilogram meter/sec.
pascal per sec.
4.
Forces are called concurrent when their lines of action meet in
one point
two points
plane
perpendicular planes
different planes.
5.
Forces are called coplanar when all of them acting on body lie in
one point
one plane
different planes
perpendicular planes
different points.
6.
A force acting on a body may
introduce internal stresses
balance the other forces acting on it
retard its motion
change its motion
all of the above.
7.
Which is the correct statement about law of polygon of forces ? of a polygon taken in order, then the forces are in equilibrium
if any number of forces acting at a point can be represented by the sides
if any number of forces acting at a point can be represented in direction and magnitude by the sides of a polygon, then the forces are in equilibrium
if a polygon representing forces acting at a point is closed then forces are in equilibrium
if any number of forces acting at a point can be represented in direction and magnitude by the sides of a polygon taken in order, then the forces are in equilibrium
none of the above.
8.
Effect of a force on a body depends upon
magnitude
direction
position or line of action
all of the above
none of the above.
9.
If a number of forces act simultaneously on a particle, it is possible
not a replace them by a single force
to replace them by a single force
to replace them by a single force through C.G.
to replace them by a couple
to replace them by a couple and a force.
10.
A force is completely defined when we specify
magnitude
direction
point of application
all of the above
none of the above.
11.
If rain is falling in the opposite direction of the movement of a pedestrain, he has to hold his umbrella
more inclined when moving
less inclined when moving
more inclined when standing
less inclined when standing
none of the above.
12.
A projectile is fired at an angle 9 to the vertical. Its horizontal range will be maximum when 9 is
0°
30°
45°
60°
90°.
13.
Limiting force of friction is the
tangent of angle between normal-reaction and the resultant of normal reaction and limiting friction
ratio of limiting friction and normal reaction
the friction force acting when the body is just about to move
the friction force acting when the body is in motion
minimum force of friction.
14.
Coulomb friction is the friction between
bodies having relative motion
two dry surfaces
two lubricated surfaces
solids and liquids
electrically charged particles.
15.
Dynamic friction as compared to static friction is
same
more
less
may be less of more depending on nature of surfaces and velocity
has no correlation.
16.
Tangent of angle of friction is equal to
kinetic friction
limiting friction
angle of repose
coefficient of friction
friction force.
17.
Kinetic friction is the
tangent of angle between normal reaction and the resultant of normal reaction and the limiting friction
ratio of limiting friction and normal reaction
the friction force acting when the body is just about to move
the friction force acting when the body is in motion
dynamic friction.
18.
The effort required to lift a load W on a screw jack with helix angle a and angle of friction
Wtan(a + <)>)
Wtan(a-<)>)
Wcos(a + )
Wsin(a + <(>)
W (sin a + cos ).
19.
A particle inside a hollow sphere of radius r, having coefficient of friction -rr can rest upto height of
r/2
r/A
r/%
0.134 r
3r/8.
20.
The algebraic sum of moments of the forces forming couple about any point in their plane is
equal to the moment of the couple
constant
both of above are correct
both of above are wrong
none of the above.
21.
A single force and a couple acting in the same plane upon a rigid body
balance each other
cannot balance each other
produce moment of a couple
are equivalent
none of the above.
22.
. If three forces acting in one plane upon a rigid body, keep it in equilibrium, then they must either
meet in a point
be all parallel
at least two of them must meet
all the above are correct
none of the above.
23.
. The maximum frictional force which comes into play when a body just begins to slide over another surface is called
limiting friction
sliding friction
rolling friction
kinematic friction
dynamic friction.
24.
. The co-efficient of friction depends upon
nature of surfaces
area of contact
shape of the surfaces
ail of the above.
(a) and (b) above.
25.
. The necessary condition for forces to be in equilibrium is that these should be
coplanar
meet at one point ;
both (a) and (b) above
all be equal
something else.
26.
. If three forces acting in different planes can be represented by a triangle, these will be in
non-equilibrium
partial equilibrium
full equilibrium
unpredictable
none of the above.
27.
. If n = number of members andy = number of joints, then for a perfect frame, n =
j-2
2j-l
2/-3
3/-2
2/ -4.
28.
. A body moves, from rest with a constant acceleration of 5 m per sec. The distance covered in 5 sec is most nearly (C) 96 m
38 m
62.5 m
124 m
240 m.
29.
. A flywheel on a motor goes from rest to 1000 rpm in 6 sec. The number of revolutions made is nearly equal to
25
50
100
250
500.
30.
. Which of the following is not the unit of energy
kg m
kcal
wattr
watt hours
kg m x (m/sec)2.
31.
. A sample of metal weighs 219 gms in air, 180 gms in water, 120 gms in an unknown fluid. Then which is correct statement about density of metal
density of metal can’t be determined
metal is twice as dense as water
metal will float in water
metal is twice as dense as unknown fluid
none of the above.
32.
. The C.G. of a solid hemisphere lies on the central radius 3r
at distance — from the plane base 3r
at distance — from the plane base 3r
at distance — from the plane base 3r
at distance — from the plane base or
at distance — from the plane base.
33.
. The C.G. of a plane lamina will not be at its geometrical centre in the case of a
right angled triangle
equilateral triangle
square
circle
rectangle.
34.
. The C.G. of a right circular solid cone of height h lies at the following distance from the base
h/2
J/3
h/6
h/4
3/i/5.
35.
. The M.I. of hollow circular section about a central axis perpendicular to section as compared to its M.I. about horizontal axis is
same
double
half
four times
one fourth.
36.
. Which of the following is the example of lever of first order
arm of man
pair of scissors
pair of clinical tongs
all of the above
none of the above.
37.
. A pair of smith’s tongs is an example of the lever of
zeioth order
first order
second order
third order
fourth order.
38.
. In the lever of third order, load W, effort P and fulcrum F are oriented as follows
W between P and F
F between W and P
P between W and F
W, P and F all on one side
none of the above.
39.
. The angle which an inclined plane makes with the horizontal when a body placed on it is about to move down is known as angle of
friction
limiting friction
repose
kinematic friction
static friction.
40.
. In actual machines
mechanical advantage is greater than velocity ratio
mechanical advantage is equal to velocity ratio
mechanical advantage is less than velocity ratio
mechanical advantage is unity
none of the above.
41.
. In ideal machines
mechanical advantage is greater than velocity ratio
mechanical advantage is equal to velocity ratio
mechanical advantage is less than velocity ratio
mechanical advantage is unity
none of the above.
42.
If two equal forces of magnitude P act at an angle 9°, their resultant will be
P/2 cos 9/2
IP sin 9/2
2P tan 9/2
IP cos 9/2
Psin 9/2.
43.
The algebraic sum of the resolved parts of a number of forces in a given direction is equal to the resolved part of their resultant in the same direction. This is as per the principle of
forces
independence of forces
dependence of forces
balance of force
resolution of forces.
44.
The resolved part of the resultant of two forces inclined at an angle 9 in a given direction is equal to
the algebraic sum of the resolved parts of the forces in the given direction
the sum of the resolved parts of the forces in the given direction
the difference of the forces multiplied by the cosine of 9
the sum of the forces multiplied by the sine of 9
the sum of the forces multiplied by the tangent of 9.
45.
Which of the following do not have identical dimensions ?
Momentum and impulse
Torque and energy
Torque and work
Kinetic energy and potential energy
Moment of a force and angular momentum.
46.
Which of the following is not the unit of distance ?
angstrom
light year
micron
millimetre
milestone.
47.
Which of the following is not the unit of power ?
kW (kilowatt)
hp (horse power)
kcal/sec
kg m/sec
kcal/kg sec.
48.
Which of the following is not the unit of work, energy and heat ?
kcal
kg m
kWhr
hp
hp hr.
49.
Which of the following is not the unit of pressure ?
kg/cm
ata
atmosphere
mm of wcl
newton.
50.
The weight of a body is due to
centripetal force of earth
gravitational pull exerted by the earth
forces experienced by body in atmosphere
force of attraction experienced by particles
gravitational force of attraction towards the center of the earth.
51.
The forces, which meet at one point, but their lines of action do not lie in a plane, are called
coplanar non-concurrent forces
non-coplanar concurrent forces
non-coplanar non-concurrent forces
intersecting forces
none of the above.
52.
When trying to turn a key into a lock, following is applied
coplanar force
non-coplanar forces
lever
moment
couple.
53.
Which of the following is not a scalar quantity
time
mass
volume
density
acceleration.
54.
According to principle of transmissibility of forces, the effect of a force upon a body is
maximum when it acts at the center of gravity of a body
different at different points in its line of action
the same at every point in its line of action
minimum when it acts at the C.G. of the body
none of the above.
55.
Which of the following is a vector quantity
energy
mass
momentum
angle
speed.
56.
The magnitude of two forces, which when acting at right angle produce resultant force of VlOkg and when acting at 60° produce resultant of Vl3 kg. These forces are
2 and V6
3 and 1 kg
V5andV5
2 and 5
none of the above.
57.
A number of forces acting at a point will be in equilibrium if
their total sum is zero
two resolved parts in two directions at right angles are equal
sum of resolved parts in any two per-pendicular directions are both zero
all of them are inclined equally
none of the above.
58.
Two non-collinear parallel equal forces acting in opposite direction
balance each other
constitute a moment
constitute a couple
constitute a moment of couple
constitute a resultant couple.
59.
According to principle of moments
if a system of coplanar forces is in equilibrium, then their algebraic sum is zero
if a system of coplanar forces is in equilibrium, then the algebraic sum of their moments about any point in their plane is zero
the algebraic sum of the moments of any two forces about any point is equal to moment of theiwesultant about the same point
positive and negative couples can be balanced
none of the above.
60.
Which of the following is not a vector quantity
weight
velocity
acceleration
force
moment.
61.
According to law of triangle of forces
three forces acting at a point will be in equilibrium
three forces acting at a point can be represented by a triangle, each side being proportional to force
if three forces acting upon a patticle are represented in magnitude and direction by the sides of a triangle, taken in order, they will be in equilibrium
if three forces acting at a point are in equilibrium, each force is proportional to the sine of the angle between the other two
none of the above.
62.
If a rigid body is in equilibrium under the action of three forces, then
these forces are equal
the lines of action of these forces meet in a point
the lines of action of these forces are parallel
(b) and (c) above
none of the above.
63.
D’ Alembert’s principle is used for
reducing the problem of kinetics to equivalent statics problem
determining stresses in the truss
stability of floating bodies
designing safe structures
solving kinematic problems.
64.
A heavy ladder resting on floor and against a vertical wall may not be in equilibrium, if
the floor is smooth, the wall is rough
the floor is rough, the wall is smooth
the floor and wall both are smooth surfaces
the floor and wall both are rough surfaces
will be in equilibrium under all conditions.
65.
According to Lami’s theorem direction by the sides of a triangle, taken in order, they will be in equilibrium
three forces acting at a point will be in equilibrium
three forces acting at a point can be represented by a triangle, each side being proportional to force
if three forces acting upon a particle are represented in magnitude and
if three forces acting at a point are in equilibrium, each force is proportional to the sine of the angle between the other two
none of the above.
66.
Two coplanar couples having equal and opposite moments
balance each other
produce a couple and an unbalanced force
are equivalent
produce a moment of couple
can not balance each other.
67.
A framed structure is perfect if it contains members equal to where n = number of joints in a frame
2n-3
n-l
‘2n-l
n – 2
3n-2.
68.
The product of either force of couple with the arm of the couple is called
resultant couple
moment of the forces
resulting couple
moment of the couple
none of the above.
69.
In detennining stresses in frames by methods of sections, the frame is divided into two parts by an imaginary section drawn in such a way as not to cut more than
two members with unknown forces of the frame
three members with unknown forces of the frame
four members with unknown forces of the frame
three members with known forces of the frame
four members with two known forces.
70.
The center of gravity of a uniform lamina lies at
the center of heavy portion
the bottom surface
the mid point of its axis
all of the above
none of the above.
71.
Center of gravity of a solid cone lies on the axis at the height
one-fourth of the total height above base
one-third of the total height above base
one-half of the total height above base
three-eighth of the total height above the base
none of the above.
72.
Center of percussion is
the point of C.G.
the point of metacentre
the point of application of the resultant of all the forces tending to cause a body to rotate about a certain axis
point of suspension
the point in a body about which it can rotate horizontally and oscillate under the influence of gravity.
73.
Center of gravity of a thin hollow cone lies on the axis at a height of
one-fourth of the total height above base
one-third of the total height above base
one-half of the total height above base
three-eighth of the total height above the base
none of the above.
74.
The units of moment of inertia of an area are
kg m2
m4
kg/m2
m3
kg/m4.
75.
The center of percussion of the homogeneous rod of length L suspended at the top will be
L/2
L/3
3L/4
2L/3
3L/8.
76.
The center of gravity of a triangle lies at the point of
concurrence of the medians
intersection of its altitudes
intersection of bisector of angles
intersection of diagonals
all of the above.
77.
The units of moment of inertia of mass are
kg m2
m4
kg/m2
kg/m
m2/kg.
78.
The possible loading in various members of framed structures are
compression or tension
buckling or shear
shear or tension
all of the above
bending.
79.
A heavy string attached at two ends at same horizontal level and when central dip is very small approaches the following curve
catenary
parabola
hyperbola
elliptical
circular arc.
80.
A trolley wire weighs 1.2 kg per meter length. The ends of the wire are attached to two poles 20 meters apart. If the horizontal tension is 1500 kg find the dip in the middle of the span
2.5 cm
3.0 cm
4.0 cm
5.0 cm
2.0 cm.
81.
From a circular plate of diameter 6 cm is cut out a circle whose diameter is a radius of the plate. Find the e.g. of the remainder from the center of circular plate
0.5 cm
1.0 cm
1.5 cm
2.5 cm
0.25 cm.
82.
Pick up the incorrect statement from the following :
The C.G. of a circle is at its center
The C.G. of a triangle is at the intersection of its medians
The C.G. of a rectangle is at the inter-section of its diagonals
The C.G. of a semicircle is at a distance of r/2 from the center
The C-G. of an ellipse is at its center.
83.
The center of percussion of a solid cylinder of radius r resting on a horizontal plane will be
r/2
2r/3
r/A
3r/2
3r/A.
84.
In the equation of virtual work, following force is neglected
reaction of any smooth surface with which the body is in contact
reaction of a rough surface of a body which rolls on it without slipping
reaction at a point or an axis, fixed in space, around which a body is con-strained to turn
all of the above
none of the above.
85.
If a suspended body is struck at the center of percussion, then the pressure on die axis passing through the point of suspension will be
maximum
minimum
zero
infinity
same as the force applied.
86.
The resultant of the following three couples 20 kg force, 0.5 m arm, $ ve sense 30 kg force, 1 m arm, – ve sense 40 kg force, 0.25 m arm, + ve sense having arm of 0.5 m will be
20 kg, – ve sense
20 kg, + ve sense
10 kg, + ve sense
10 kg, – ve sense
45 kg, + ve sense.
87.
Angle of friction is the
angle between normal reaction and the resultant of normal reaction and the limiting friction
ratio of limiting friction and normal reaction
the ratio of minimum friction force to the friction force acting when the body is just about to move
the ratio of minimum friction force to friction force acting when the body is in motion
ratio of static and dynamic friction.
88.
The coefficient of friction depends on
area of contact
shape of surfaces
strength of surfaces
nature of surface
all of the above.
89.
Least force required to draw a body up the inclined plane is W sin (plane inclination + friction angle) applied in the direction
along the plane
horizontally
vertically
at an angle equal to the angle of friction to the inclined plane
unpredictable.
90.
The ratio of limiting friction and normal reaction is known as
coefficient of friction
angle of friction
angle of repose
sliding friction
friction resistance.
91.
Which one of the following statements is not correct
the tangent of the angle of friction is equal to coefficient of friction
the angle of repose is equal to angle of friction
the tangent of the angle of repose is equal to coefficient of friction
the sine of the angle of repose is equal to coefficient to friction
none of the above.
92.
On a ladder resting on smooth ground and leaning against vertical wall, the force of friction will be
towards the wall at its upper end
away from the wall at its upper end
upwards at its upper end
downwards at its upper end
none of the above.
93.
On the ladder resting on the ground and leaning against a smooth vertical wall, the force of friction will be
downwards at its upper end
upwards at its upper end
perpendicular to the wall at its upper end
zero at its upper end
none of the above.
94.
Frictional force encountered after commencement of motion is called
post friction
limiting friction
kinematic friction
frictional resistance
dynamic friction.
95.
Coefficient of friction is the
angle between normal reaction and the resultant of normal reaction and the limiting friction
ratio of limiting friction and normal reaction
the friction force acting when the body is just about to move
the friction force acting when the body is in motion
tangent of angle of repose.
96.
Pick up wrong statement about friction force for dry surfaces. Friction force is
proportional to normal load between the surfaces
dependent on the materials of contact surface
proportional to velocity of sliding
independent of the area of contact surfaces
none of the above is wrong statement.
97.
A body of weight W on inclined plane of a being pulled up by a horizontal force P will be on the point of motion up the plane when P is equal to
W
W sin (a + $)
Wtan(a + <|))
W\an(a-)
Wtana.
98.
A particle moves along a straight line such that distance (x) traversed in t seconds is given by x = t2 (t – 4), the acceleration of the particle will be given by the equation
3t2-lt
3t2+2t
6f-8
6f-4
6t2-8t.
99.
A semi-circular disc rests on a horizontal surface with its top flat surface horizontal and circular portion touching down. The coefficient of friction between semi-cricular disc and horizontal surface is \i. This disc is to be pulled by a horizontal force applied at one edge and it always remains horizontal. When the disc is about to start moving, its top horizontal force will
remain horizontal
slant up towards direction of pull
slant down towards direction of pull
unpredictable
none of the above.
100.
. Which of the following is the locus of a point that moves in such a manner that its distance from a fixed point is equal to its distance from a fixed line multiplied by a constant greater than one
ellipse
hyperbola
parabola
circle
none of the above.
101.
. A cable with a uniformly distributed load per horizontal meter run will take the following shape
straight line
parabola
hyperbola
elliptical
part of a circle.
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