Basics of Dynamics
Basics of Dynamics: Overview
This topic covers concepts such as Speed, Uniform Speed, Non-uniform Speed, Uniform Acceleration, Curvilinear Motion, Uniform Velocity, and Instantaneous Velocity as Rate of Change.
Important Questions on Basics of Dynamics
The velocity of a body at the end of is , at the end of 12 s is and at the end of 22 s, it is . The body is moving with

A parachutist jumps out of an airplane and accelerates with gravity to a maximum velocity of in seconds. She then pulls the parachute cord and after a -second constant deceleration, descends at for seconds, reaching the ground. From what height did the parachutist jump?

The position of a particle with respect to time along -axis is given by where is in metres and in seconds. The position of this particle when it achieves maximum speed along the direction will be at

The velocity of a body at the end of is , at the end of 12 s is and at the end of 22 s, it is . The body is moving with

The displacement of a particle varies with time as where are positive constants. The velocity of the particle will

The motion of a particle is represented by the equation . Find the velocity of the particle at the end of seconds in .

The displacement of a particle moving along a straight line is related to time as . The displacement of the particle when its velocity is zero is

The motion of a particle is given by the equation . The value of acceleration of the particle at sec is

The displacement of a particle is represented by the following equation : where is in metre and in second. The acceleration of the particle at sec is :-

The displacement (in metres) of a body varies with time (in seconds) as . Then, the body will come to rest in

The displacement of a body from a reference point is given by where is in metres and in seconds. This shows that the body:

If a particle's position is given by where is in the seconds and in meters. What is its velocity at ? Whether the particle is moving in positive direction or negative direction?

The correct statement from the following is

The motion of a particle along a straight line is described by the function where is in metres and is in seconds. The acceleration of the particle at is

The acceleration at the end of , of a particle whose motion is represented by the equation is ______

The displacement of a particle moving with uniform acceleration in time is given by , its initial velocity is _____

The horizontal and vertical displacements of a particle moving along a curved line are given by and metre . Time after which its velocity vector makes an angle of with the horizontal is

A scooter going due east at turns right through an angle of . What is the change in velocity of scooter on taking turn if its speed remains constant?

The displacement of a body along X-axis depends on time as . Then the velocity of the body

The displacement of a body is given by where is a constant. The velocity of the body at any time is:
