Embibe Experts Solutions for Chapter: Work, Energy and Power, Exercise 2: Exercise 2

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Embibe Experts Physics Solutions for Exercise - Embibe Experts Solutions for Chapter: Work, Energy and Power, Exercise 2: Exercise 2

Attempt the practice questions on Chapter 2: Work, Energy and Power, Exercise 2: Exercise 2 with hints and solutions to strengthen your understanding. Comprehensive Guide to WBJEE Physics. Other applicable Exams - JEE Main, BITSAT, AMUEEE, MHT-CET, K-CET, EAMCET, VITEEE & Other State Engg. Entrance Exams solutions are prepared by Experienced Embibe Experts.

Questions from Embibe Experts Solutions for Chapter: Work, Energy and Power, Exercise 2: Exercise 2 with Hints & Solutions

HARD
WBJEE
IMPORTANT

The potential energy of a 1 kg particle free to move along the x-axis is given by Vx=x44-x22 J. The total mechanical energy of the particle is 2 J. Then, the maximum speed (in m s-1) is

EASY
WBJEE
IMPORTANT

Ten litre of water per second is lifted from a well through 10 m and delivered with a velocity of 10 m s-1. If g=10 m s-2, then the power of the motor is

MEDIUM
WBJEE
IMPORTANT

A block of mass 0.50 kg is moving with a speed of 2.00 m s-1 on a smooth surface. It strikes another mass of 1.00 kg and then they move together as a single body. The energy loss during the collision is

EASY
WBJEE
IMPORTANT

An athlete in the Olympic game covers a distance of 100 m in 10 s. His kinetic energy can be estimated to be in the range

MEDIUM
WBJEE
IMPORTANT

A block of mass 2 kg is free to move along the x-axis. It is at rest and from t=0 onwards, it is subjected to a time-dependent force Ft in the x direction. The force Ft varies with t as shown in the figure. The kinetic energy of the block after 4.5 second is

Question Image

MEDIUM
WBJEE
IMPORTANT

The potential energy function for the force between two atoms in a diatomic molecule is approximately given by, Ux=ax12-bx6, where a and b are constants and x is the distance between the atoms. If the dissociation energy of the molecule is D=Ux=-Uat equilibriumD is

EASY
WBJEE
IMPORTANT

If W1, W2 and W3 represent the work done in moving a particle from A to B along three different paths 1, 2 and 3, respectively (as shown), in the gravitational field of a point mass m, find the correct relation between W1, W2 and W3.

Question Image

EASY
WBJEE
IMPORTANT

At time t=0 s, particle starts moving along the x-axis. If its kinetic energy increases uniformly with time t, the net force acting on it must be proportional to