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A particle moves along positive branch of the curve y=x2 where x=t33, x and y are measured in metres and t in seconds, then

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Important Questions on Kinematics

EASY
A particle covers half of the circle of radius r. Then the displacement and distance of the particle are respectively
HARD
The position of a particle as a function of time t, is given by xt=at+bt2-ct3 where a, b and c are constants. When the particle has zero acceleration, then its velocity will be:
EASY

A particle is moved in a semi-circular path of radius R. Then

EASY

A fly is in rectilinear motion as described by the graph. The average speed of the fly is

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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
MEDIUM
The acceleration at the end of 2 s, of a particle whose motion is represented by the equation S=4t3-8t2+5t+4 is ______
MEDIUM
The displacement x (in meter) of a particle of mass m (in kg) moving in one dimension under the action of a force, is related to time t (in sec) by t=x+3. The displacement of the particle when its velocity is zero, will be
EASY
If a particle's position is given by x=4-12t+3t2 where t is in the seconds and x in meters. What is its velocity at t=1s? Whether the particle is moving in positive x direction or negative x direction?
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
Average velocity of a particle executing SHM in one complete vibration is
MEDIUM
Consider a car initially at rest, starts to move along a straight road first with acceleration 5 m s-2, then with uniform velocity and finally, decelerating at 5 m s-2,, before coming to a stop. Total time taken from start to end is t=25 s. If the average velocity during that time is 72 km hr-1, the car moved with uniform velocity for a time of
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:
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MEDIUM
Consider a particle moving along the positive direction of X-axis. The velocity of the particle is given by v=αx (α is a positive constant). At time t=0, if the particle is located at x=0, the time dependence of the velocity and the acceleration of the particle are respectively.
MEDIUM
The displacement of a particle moving with uniform acceleration in time t is given by S=30t+5t2, its initial velocity is _____
EASY
A car moves in positive Y-direction with velocity v proportional to distance travelled y as vyyβ, where β is a positive constant. The car covers a distance L with average velocity v proportional to L as vL1/3. The constant β is given as
EASY
The displacement of a particle moving along a straight line is related to time as x=t-3. The displacement of the particle when its velocity is zero is
EASY
A bus travels at 110 km h-1 (kilometers per hour) on open highway. Its speed in metres per second is
MEDIUM
A particle is moving such that its position coordinates x, y are 2 m, 3 m at time t=0, 6 m, 7 m at time t=2 s and 13 m, 14 m at time t=5 s. The average velocity vector Vav from t=0 to t=5 s is:
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?
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?