EASY
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A boy throws a ball upwards with a velocity u=15ms-1. The wind imparts a horizontal acceleration of 3 m s-2 to the left. The angel θ at which the ball must be thrown so that it returns to the boy's hand is (g=10 m s-2),

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Important Questions on Kinematics

MEDIUM
A shell is fired from a fixed artillery gun with an initial speed u such that it hits the target on the ground at a distance R from it. If t1 and t2 are the values of the time taken by it to hit the target in two possible ways, the product t1t2 is:
MEDIUM
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 which is identical with the trajectory of the projectile fired from the earth. The value of the acceleration due to gravity on the planet is: (given =9.8 m s-2)
MEDIUM
Two particles are projected from the same point with the same speed u such that they have the same range R, but different maximum heights, h1 and h2. Which of the following is correct?
EASY
At what angle θ to the horizontal should an object is projected so that the maximum height reached is equal to the horizontal range?
EASY
Which of the following graphs represents the speed v of a vertical projectile as a function of time t?
MEDIUM
Two projectiles P and Q thrown with velocities v and v2 respectively have the same range. If Q is thrown at an angle of 15° to the horizontal, P must be thrown at an angle of
MEDIUM
When an object is shot from the bottom of a long smooth inclined plane kept at an angle 60° with horizontal, it can travel a distance x1 along the plane. But, when the inclination is decreased to 30° and the same object is shot with the same velocity, it can travel x2 distance. Then x1:x2 will be
MEDIUM
A stone is projected with velocity 2gh, so that it just clears two walls of equal height h, at distance of 2h from each other. The time interval of passing between the two walls is
HARD
A small boy is throwing a ball towards a wall 6 m in front of him. He releases the ball at a height of 1.4 m from the ground. The ball bounces from the wall at a height of 3 m, rebounds from the ground and reaches the boy's hand exactly at the point of release. Assuming the two bounces (one from the wall and the other from the ground) to be perfectly elastic, how far ahead of the boy did the ball bounce from the ground?
EASY
A boy is standing on top of a tower of height, 85 m and throws a ball in the vertically upward direction with a certain speed. If 5.25 s later he hears the ball hitting the ground, then the speed with which the boy threw the ball is (take g=10 m s-2, the speed of sound in air is 340 m s-1)
HARD
The horizontal range and maximum height attained by a projectile are R and H respectively. If a constant horizontal acceleration a=g4 is imparted to the projectile due to wind, then its horizontal range and maximum height will be 
EASY
A projectile is given an initial velocity of i^+2j^ m s-1, where i ^ is along the ground and j ^ is along the vertically upward direction. If g=10 m s-2, the equation of its trajectory is :
MEDIUM
An aeroplane is flying in a horizontal direction with a velocity u and at a height of 2000 m. When it is vertically below a point A on the ground a food packet is released from it. The packet strikes the ground at point B. If AB=3 km and g=10 m s-2, then the value of u is
MEDIUM
Two balls are projected at an angle θ and (90°-θ) with respect to the horizontal with the same speed. The ratio of their maximum vertical heights is
EASY

The velocity of a projectile at the initial point A is 2i^-3j^ m s-1. Its velocity (in m s-1) at point B is

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EASY
Four projectiles are fired with the same velocities at angles 25°,40°,55° and 70° with the horizontal. The range of projectile will be largest for the one projected at angle _____.
MEDIUM
A projectile is given an initial velocity of i^+3 j^ m s-1, where i^ is along the ground and j^ is along the vertical. Then, the equation of the path of projectile is [Take, g=10 m s-2
MEDIUM
The position of a projectile launched from the origin at t = 0 is given by r = 4 i ^ + 5 j ^ m   at t = 2s. If the projectile was launched at an angle θ  from the horizontal, then θ   is (take g = 10 ms-2).
EASY
Two bodies are projected at angles θ and 90o-θ to the horizontal with the same speed. The ratio of their times of flight is
EASY
Two guns A and B can fire bullets at speeds 1 km s-1 and 2 km s-1 respectively. From a point on a horizontal ground, they are fired in all possible directions. The ratio of maximum areas covered by the bullets fired by the two guns, on the ground is: