MEDIUM
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A ball is dropped vertically from a height d above the ground. It hits the ground and bounces up vertically to a height d2. Neglecting subsequent motion and air resistance, its velocity v varies with the height h above the ground as

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Important Questions on Kinematics

MEDIUM

Two skaters, P and Q are skating towards each other. Skater, P throws a ball towards, Q every 5 s such that it always leaves her hand with speed 2 m s-1 with respect to the ground. Consider two cases: (I) P runs with speed 1 m s-1 towards Q, while Q remains stationary. (II) Q runs with speed 1 m s-1 towards P, while P remains stationary. Note That irrespective of speed of P, ball always leaves P s hand with speed 2 m s-1 with respect to the ground. Ignore gravity. Balls will be received by Q.

EASY
A body is thrown vertically upwards. Which one of the following graphs correctly represents the velocityv vs time t?
HARD
A parachutist with total weight 75 kg drops vertically onto a sandy ground with a speed of 2 m s-1 and comes to a halt over a distance of 0.25 m. The average force from the ground on her is close to-
HARD
From a tower of height H, a particle is thrown vertically upwards with a speed u. The time taken by the particle, to hit the ground, is n times that taken by it to reach the highest point of its path.The relation between H, u and n is :
MEDIUM

In the cube of side a shown in the figure, the vector from the central point of the face ABOD to the central point of the face BEFO will be:
Question Image

MEDIUM
The x and y coordinates of the particle at any time are x=5t-2t2 and y=10t respectively, where x and y are in meters and t is in seconds. The acceleration of the particle at t=2 s is
EASY
A particle is moving along with X -axis such that its acceleration is proportional to the displacement from the equilibrium position and they are in the same direction. The displacement xt is given by (where ω>0 is a constant)
EASY
Average velocity of a particle executing SHM in one complete vibration is
EASY
In a car race on straight road, car A takes a time t less than car B at the finish and passes finishing point with a speed v more than that of car B. Both the cars start from rest and travel with constant acceleration a1 and a2  respectively. Then v is equal to:
EASY
A body moves along a straight line with acceleration 3s-2 for 2 s and then with acceleration 4 s-2 for 3 s. What is his average acceleration?
MEDIUM
A bullet loses 1nth of its velocity passing through one plank. Considering uniform retardation, the number of such planks that are required to stop the bullet can be:
MEDIUM
A particle moves so that its position vector is given by r=cosωtx^+sinωty^, where ω is a constant. Which of the following is true?
HARD
A particle of mass m is acted upon by a force F given by the empirical law F=Rt2 vt. If this law is to be tested experimentally by observing the motion starting from rest, the best way is to plot
HARD
A stone thrown down with a seed u takes a time t1 to reach the ground, while another stone, thrown upwards from the same point with the same speed, takes time t2 . The maximum height the second stone reaches from the ground is
MEDIUM
Consider an expanding sphere of instantaneous radius R whose total mass remains constant. The expansion is such that the instantaneous density ρ remains uniform throughout the volume. The rate of fractional change in density 1ρdρdt is constant. The velocity v of any point on the surface of the expanding sphere is proportional to
EASY

A particle starts from origin O from rest and moves with a uniform acceleration along the positive  x-axis . Identify all figures that correctly represent the motion qualitatively.
( a= acceleration, v= velocity, x=  dispalcement, t= time)
A Question Image
B Question Image
(C) Question Image
(D) Question Image

EASY
The position vector of a particle changes with time according to the relation rt=15t2i^+4-20t2j^. What is the magnitude of the acceleration at t=1?
EASY
Two cars P and Q start from a point at the same time in a straight line and their positions are represented by XPt=at+bt2 and XQt=ft-t2. At what time do the cars have the same velocity?
HARD
A piece of wood of mass 0.03 kg is dropped from the top of a 100 m height building. At the same time, a bullet of mass 0.02 kg is fired vertically upward, with a velocity 100 m s-1, from the ground. The bullet gets embedded in the wood. Then the maximum height to which the combined system reaches above the top of the building before falling below is: g=10 m s-2
EASY
An automobile, traveling at 40 km h-1, can be stopped at a distance of 40 m by applying brakes. If the same automobile is traveling at 80 km h-1, the minimum stopping distance in metres is (Assume no skidding):