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A projectile is fired at an angle of 45° with the horizontal. The elevation angle of the projectile at its highest point as seen from the point of projection is:

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Important Questions on Kinematics

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The motion of a particle along a straight line is described by the equation x=8+12tt3, where x is in metres and t in seconds. The retardation of the particle when its velocity becomes zero is:
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The horizontal range and the maximum height of a projectile are equal. The angle of projection of the projectile is:
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A particle has initial velocity 2i^+3j^ and acceleration 0.3i^+0.2j^. The magnitude of velocity after 10 seconds will be
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A stone is dropped from a height h. It hits the ground with a certain momentum P. If the same stone is dropped from a height 100 % more than the previous height, the momentum when it hits the ground will change by
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A stone falls freely under gravity. It covers distances h1h2 and h3 in the first 5 seconds, the next 5 seconds and the next 5 seconds, respectively. The relation between h1h2 and h3 is:
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The velocity of a projectile at the initial point A is 2i^+3j^ m s-1. Its velocity (in m s-1) at a point B is:

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A projectile is projected from the ground with initial velocity u=u0i^+v0j^. If the acceleration due to gravity (g) is along negative y-direction, then find the maximum displacement in x-direction.
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A projectile is fired from the surface of the earth with a velocity of 5 m s-1 and angle θ with the horizontal. Another projectile fired from another planet with a velocity of 3 m s-1 at the same angle follows a trajectory that is identical with the trajectory of the projectile fired from the earth. The value of the acceleration due to gravity on the planet is (in m s-2) given g=9.8 m s-2