CBSE Class 11 Physics Exemplar NCERT Solutions: Chapter 5 - Work, Energy and Power
This chapter provides NCERT Solutions for Class 11 Physics Exemplar, focusing on Work, Energy, and Power. It covers fundamental concepts such as the change in kinetic energy of a system, the work done by forces (including magnetic and frictional forces), and the conservation of energy. The solutions explain why certain quantities remain constant during free fall and inelastic collisions, and how work done is related to force and displacement. These solutions are designed to help students grasp the core principles of work, energy, and power, and their applications in various physical scenarios, aiding in effective exam revision.
Quick info
| Board | CBSE |
|---|---|
| Class | Class 11 |
| Subject | Physics Exemplar |
| Session | 2026 |
| Language | English |
| Type | NCERT Solutions |
| Chapter | Chapter 5 |
Chapter summary
NCERT Solutions for Class 11 Physics Exemplar, Chapter 5, delves into the principles of Work, Energy, and Power. It addresses multiple-choice questions related to kinetic energy changes, work done by different forces, and the conservation of mechanical energy during free fall. The chapter also clarifies the conservation of linear momentum in inelastic collisions, providing clear explanations for each concept.
Learning outcomes
- Understand the concept of work done by forces.
- Analyze changes in kinetic energy of a system.
- Explain the conservation of mechanical energy.
- Apply the principle of conservation of linear momentum.
- Differentiate between work done by different types of forces.
- Solve problems involving work, energy, and power.
Topics covered
Paper topics
- Work Done
- Kinetic Energy
- Magnetic Force and Work
- Force and Motion
- Work Done by Friction
- Conservation of Mechanical Energy
- Free Fall
- Inelastic Collision
- Linear Momentum
- Work-Energy Theorem
Important topics
- Conservation of Mechanical Energy
- Work Done by Various Forces
- Conservation of Linear Momentum
- Kinetic Energy Changes
- Work-Energy Theorem
PDF preview
Read page by page below. PDF is streamed from the official NCERT website — no download button on this page.
Questions and Solutions
Multiple Choice Questions (MCQs)
Q. 1 An electron and a proton are moving under the influence of mutual forces. In calculating the change in the kinetic energy of the system during motion, one ignores the magnetic force of one on another. This is, because
(a) the two magnetic forces are equal and opposite, so they produce no net effect
(b) the magnetic forces do not work on each particle
(c) the magnetic forces do equal and opposite (but non-zero) work on each particle
(d) the magnetic forces are necessarily negligible
Q. 2 A proton is kept at rest. A positively charged particle is released from rest at a distance d in its field. Consider two experiments; one in which the charged particle is also a proton and in another, a positron. In the same time t, the work done on the two moving charged particles is
(a) same as the same force law is involved in the two experiments
(b) less for the case of a positron, as the positron moves away more rapidly and the force on it weakens
(c) more for the case of a positron, as the positron moves away a larger distance
(d) same as the work done by charged particle on the stationary proton
Q. 3 A man squatting on the ground gets straight up and stand. The force of reaction of ground on the man during the process is
(a) constant and equal to mg in magnitude
(b) constant and greater than mg in magnitude
(c) variable but always greater than mg
(d) at first greater than mg and later becomes equal to mg
Q. 4 A bicyclist comes to a skidding stop in 10 m. During this process, the force on the bicycle due to the road is 200N and is directly opposed to the motion. The work done by the cycle on the road is
(a) + 2000J
(b) - 200J
(c) zero
(d) - 20,000J
Q. 5 A body is falling freely under the action of gravity alone in vacuum. Which of the following quantities remain constant during the fall?
(a) Kinetic energy
(b) Potential energy
(c) Total mechanical energy
(d) Total linear momentum
Q. 6 During inelastic collision between two bodies, which of the following quantities always remain conserved?
(a) Total kinetic energy
(b) Total mechanical energy
(c) Total linear momentum
(d) Speed of each body
Common mistakes
- Confusing work done by a force with the force itself.
- Incorrectly assuming kinetic energy is conserved in all scenarios.
- Not accounting for all forces when calculating net work done.
- Misapplying conservation laws in inelastic collisions.
Revision tips
- Review the definitions of work, kinetic energy, and potential energy.
- Focus on understanding the conditions under which mechanical energy is conserved.
- Practice problems involving different types of forces (gravitational, magnetic, frictional).
- Pay close attention to the conservation of linear momentum in collisions.
Practice MCQs
Q1. An electron and a proton are moving under the influence of mutual forces. When calculating the change in the kinetic energy of the system, the magnetic force of one on another is ignored because:
Explanation: Magnetic forces are always perpendicular to the velocity of the charged particle. Therefore, they do no work on the particle, and consequently, do not change its kinetic energy.
Q2. A proton is kept at rest. A positively charged particle is released from rest at a distance 'd' in its field. If the experiment is repeated with a positron instead of a proton, in the same time 't', the work done on the two moving charged particles is:
Explanation: The force between a proton and a positron is the same as between two protons. However, the positron is much lighter than a proton, so it accelerates more and covers a larger distance in the same time. Since work done is force times distance, the work done on the positron is greater.
Q3. A man squatting on the ground gets straight up and stands. The force of reaction of the ground on the man during this process is:
Explanation: When squatting, the man needs support against gravity and possibly some horizontal forces. As he stands up, the reaction force initially increases to lift him, and then stabilizes to balance his weight (mg) once he is standing upright.
Q4. A bicyclist comes to a skidding stop in 10 m. The force on the bicycle due to the road is 200 N, directly opposed to the motion. The work done by the bicycle on the road is:
Explanation: The force exerted by the road on the bicycle is 200 N, causing a work of -2000 J on the bicycle. However, the question asks for the work done by the bicycle on the road. Since the road is stationary and does not move, the work done by the bicycle on the road is zero.
Q5. A body is falling freely under the action of gravity alone in a vacuum. Which of the following quantities remains constant during the fall?
Explanation: In a vacuum, with only gravity acting, there are no non-conservative forces. Therefore, the total mechanical energy (sum of kinetic and potential energy) of the body remains constant.
Q6. During an inelastic collision between two bodies, which of the following quantities always remains conserved?
Explanation: In any type of collision (elastic or inelastic), provided no external forces act on the system, the total linear momentum of the system is always conserved.
Frequently asked questions
What is the main focus of Chapter 5 of the CBSE Class 11 Physics Exemplar?
Chapter 5 focuses on the fundamental concepts of Work, Energy, and Power, including how work is done, the relationship between work and energy, and the conservation principles governing these quantities.
How do these NCERT Solutions help with understanding work done by magnetic forces?
The solutions explain that magnetic forces do no work on a moving charged particle because they are always perpendicular to the velocity, thus not changing the kinetic energy.
What quantity is conserved during an inelastic collision?
During an inelastic collision, the total linear momentum of the system is always conserved, assuming no external forces act on the system.
When does total mechanical energy remain constant?
Total mechanical energy remains constant when a body is falling freely under gravity in a vacuum, or in any situation where only conservative forces are doing work.
Are the solutions provided for Class 11 Physics Exemplar?
Yes, these are NCERT Solutions specifically for Chapter 5 of the Class 11 Physics Exemplar book.
How can these solutions aid in exam preparation?
These solutions offer clear explanations and step-by-step reasoning for complex problems, helping students solidify their understanding of key concepts and improve their problem-solving skills for exams.
Content reviewed by the NCERT Help team. Editorial Team and update policy
NCERT Solutions PDF PDF on NCERT Help. URL unchanged for search indexing.