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MCQ
21. The center of gravity of a T-section 100mm x 150mm x 50mm from its bottom is-
[Note]: ¯x=a₁ x₁ + a₂ x₂ /a₁ + a₂ =(100x50x125) + (50×100×50) / (100x50) + (50x100) = 87.5
50mm
75mm
87.5mm
125mm
23. The friction experienced by a body, when at rest, is known as-
static friction
dynamic friction
limiting friction
coefficient of friction
26. If the gravitational acceleration of any place is doubled, then the weight of a body will be-
g/2
g
2g
√2g
27. The center of gravity of a right circular solid cone is at a distance of---- from its base, measured along the vertical axis.
h/2
h/3
h/4
h/6
28. Moment of inertia of a circular section about an axis perpendicular to the section is-
Izz = Ixx + Iyy = πd^2 /32
πd³/16
πd³/32
πd^4/64
πd^4/32
29. A force acting in the opposite direction to the motion of the body is called force of friction.
Agree
Disagree
30. A framed structure is imperfect, if the number of members are ---(2j-3).
equal to
less than
greater than
either b or c
31. The coefficient of restitution for inelastic bodies is-
zero
between 0 & 1
one
more than one
32. When a body falls freely under gravitational force, it possesses---- weight.
no
maximum
minimum
33. The moment of inertia of a square of side a about an axis through its centre of gravity is-
a^4 /4
a^4 /8
a^4 /12
a^4 /36
34. The rate of change of displacement of a body is called
velocity
momentum
acceleration
none of these
36. The force, by which the body is attracted towards the center of the earth, is called-
impulsive force
momentum
weight
mass
37. If the resultant of two force P & Q acting at an angle θ, makes an angle α with force P, then-
tanα = P sinθ / P+Q cosθ
tanα = P cosθ / P+Q cosθ
tanα = Q sinθ / P+Q cosθ
38. The minimum force required to slide a body of weight W on a rough horizontal plane is-
W sineθ
W coseθ
W tanθ
none of these
39. The friction experienced by a body, when in motion, is known as-
rolling friction
static friction
limiting friction
dynamic friction
40. The resultant of two force P & Q acting at an angle θ is-
√P^2+Q^2+2PQsinθ
√P^2+Q^2+2PQcosθ
√P^2+Q^2-2PQcosθ