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  • Question 1
    3 / -1

    A rubber ball is dropped from a height of 5 m on a planet where the acceleration due to gravity is not known. On bouncing, it rises to 1.8 m. The ball loses its velocity on bouncing by a factor of

  • Question 2
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    Time period 'T' of a simple pendulum may depend on 'm', the mass of the bob, 'l', the length of the string, and 'g', the acceleration due to gravity. This means that 'T' ∝ ma lgc. What are the respective values of 'a', 'b' and 'c'?

  • Question 3
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    A small particle is released inside the depth of a liquid in the vessel. The volume of the particle is V. Density and viscosity of the liquid are ρ and η, respectively. Buoyant force on the particle is greater than the weight of the particle. The variation of velocity of the particle with time is

  • Question 4
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    Which of the following quantities is unitless as well as dimensionless?

  • Question 5
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    In the rectangular lamina ABCD shown in the figure below, a = AB = BC/2. The moment of inertia of the lamina is minimum along the axis passing through

  • Question 6
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    A bomber plane is moving horizontally with a speed of 600 m/s and a bomb released from it strikes the ground in 10 sec. What is the measure of angle at which the bomb strikes the ground? (g = 10 m/s2)

  • Question 7
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    A spring of force constant k is cut into two equal halves. The force constant of each half is

  • Question 8
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    A body is projected at time t = 0 from a certain point on a planet’s surface with a certain velocity at a certain angle with the planet’s surface (assumed horizontal). The horizontal and vertical displacements x and y (in metres), respectively vary with time t (in seconds) as x = 10 √3 t and y = 10 t – t2.

    What is the value of acceleration due to the gravity on the planet’s surface?

  • Question 9
    3 / -1

    A ball, which is at rest, is dropped from a height of 'h' metres. As it bounces off the floor, its speed is 80% of what it was just before touching the ground. The ball will rise to a height of

  • Question 10
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    The track shown in the figure ends in a circular track of radius r with centre at O. A small solid sphere of mass m rolls from rest without slipping from a point A at a height h = 6r from the level ground. What is the speed of the sphere when it reaches a point B at height r above the level ground?

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