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 Multiple Choice QuestionsMultiple Choice Questions

81.

Assertion:  The apparent weight of a body in an elevator moving with some downward acceleration is less than the actual weight of a body.

Reason:  The part of the weight is spent in producing downward acceleration, when body
is in elevator.

  • If both assertion and reason are true and reason is the correct explanation of assertion.

  • If both assertion and reason are true but reason is not the correct explanation of assertion

  • If assertion is true but reason is false.

  • If both assertion and reason are false.


82.

Assertion: If momentum of a body increase by 50%, its kinetic energy will increase by 125 %.

Result: Kinetic energy is proportional to square of velocity.

  • If both assertion and reason are true and reason is the correct explanation of assertion

  • If both assertion and reason are true but reason is not the correct explanation of assertion

  • If assertion is true but reason is false

  • If both assertion and reason are false


83.

A force F acting on an object varies with distance x as shown in the figure. The force is in N and x in m. The work done by the force in moving the object from x = 0 to  x  = 6 m is

  

  • 13.5 J

  • 10 J

  • 15 J

  • 20 J


84.

A body is moved along a straight line by a machine delivering constant power. The distance travelled by the body in  time t is proportional to

  • t1/2

  • t

  • t3/2

  • t2


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85.

P, Q and R are three coplanar forces acting at a point and are in equilibrium. Given: P = 1.9318 kg wt [sin θ1 = 0.9659], the value of R (in kg wt) is

    

  • 0.9659

  • 2

  • 1

  • 1/2


86.

If a solid sphere of mass 1 kg and radius 0.1 m rolls without slipping at a uniform velocity of I m/s along a straight line on a horizontal floor, the kinetic energy is

  • 75 J

  • 25 J

  • 710 J

  • 1 J


87.

The voltage of clouds is 4 x 10 volt with respect to ground. In a lightening strike lasting 100 msec, a charge of 4 coulombs is delivered to the ground. The power of the lightning strike is

  • 160 MW

  • 80 MW

  • 20 MW

  • 500 MW


88.

For inelastic collision between two spherical rigid bodies

  • the total kinetic energy is conserved

  • the total potential energy is conserved

  • the linear momentum is not conserved

  • the linear momentum is conserved


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89.

A person used force (F), shown in figure to move a load with constant velocity on surface. Identify the correct surface profile.

    


C.

First a force is used to move the body when it has to be more than the static friction. Then the
body starts moving and is getting accelerated. Then 

          

suddenly the force is decreased to match the kinetic friction. The body then moves with a constant velocity. 

            Force  > μs · N

Constant acceleration, velocity increases proportionately with time. Then suddenly force applied is just equal to  μkN. It is just sufficient to cancel friction. Whatever be the earlier maximum velocity attained will be continued.


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90.

A block of mass 10 kg is moving in x-direction with a constant speed of 10 m/sec. It is subjected to a retarding force F = -0.1 x joule/meter during its travel from x = 20 meter to x = 30 meter. Its final kinetic energy will be

  • 475 joule

  • 450 joule

  • 275 joule

  • 250 joule


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