Embibe Experts Solutions for Chapter: Kinematics, Exercise 2: Level 2
Embibe Experts Physics Solutions for Exercise - Embibe Experts Solutions for Chapter: Kinematics, Exercise 2: Level 2
Attempt the practice questions on Chapter 2: Kinematics, Exercise 2: Level 2 with hints and solutions to strengthen your understanding. Physics Crash Course JEE Main solutions are prepared by Experienced Embibe Experts.
Questions from Embibe Experts Solutions for Chapter: Kinematics, Exercise 2: Level 2 with Hints & Solutions
The relation between time and distance is , where and are constants. The acceleration is:

Two trains, which are moving along different tracks in opposite directions towards each other, are put on the same track due to a mistake. Their drivers, on noticing the mistake, start slowing down the trains when the trains are apart. Graphs given below show their velocities as a function of time as the trains slow down. What is the separation between the trains (in metre) when both have stopped?

A car accelerates from rest at a constant rate for some time, after which it decelerates at a constant rate and comes to rest. If the total time elapsed is , then the maximum velocity acquired by the car is

Two balls are projected from points and in a vertical plane as shown in the figure. is a straight vertical line. The balls will collide in mid-air if is equal to,

A stone is released at rest from a height of above the horizontal level ground. There is horizontal wind blowing due to which stone acquires an additional (in addition to acceleration due to gravity) horizontal acceleration of magnitude . Then the net distance travelled by stone before reaching the ground is (take and neglect air resistance),

In the given figure is a pipe fixed to the ground at an inclination of A ball is projected from point at a speed of at angle of to the horizontal and it smoothly enter the pipe with its velocity parallel to the axis of the pipe. Then length of pipe (in metre) is: (Take ) (Approximate the answer to the nearest integer.)

A ball is projected at an angle of above with the horizontal from the top of a tower and strikes the ground in at an angle of with the horizontal. Find the speed with which it was projected.

Two balls of mass and are thrown horizontally with the same initial velocity from top of a tall tower and experience a drag force of where is the instantaneous velocity.
Then,
