CBSE Class 8 Science Chapter 12 Friction NCERT Solutions
This chapter delves into the fundamental concept of friction, a force that opposes motion between surfaces in contact. The NCERT Solutions for Class 8 Science, Chapter 12, provide clear explanations and step-by-step solutions to exercises covering various aspects of friction. Students will learn about the factors influencing friction, such as the nature of surfaces and the force pressing them together. The solutions also explore different types of friction, including static, sliding, and rolling friction, and their relative magnitudes. Additionally, the importance of friction in everyday life, from walking to using brakes, and methods to increase or decrease friction are discussed. These solutions are designed to help students grasp the core principles of friction and prepare effectively for their examinations by offering detailed problem-solving approaches.
Quick info
| Board | CBSE |
|---|---|
| Class | Class 8 |
| Subject | Science |
| Session | 2026 |
| Language | English |
| Type | NCERT Solutions |
| Chapter | Chapter 12: Friction |
Chapter summary
Chapter 12 on Friction in Class 8 Science NCERT Solutions explains the force that opposes motion between surfaces. It covers the definition of friction, factors affecting it like roughness, and the heat it generates. The solutions detail the differences between static, sliding, and rolling friction, and their order of magnitude. It also touches upon increasing and decreasing friction, and its practical applications, providing students with a solid understanding of this essential physical concept.
Learning outcomes
- Understand that friction is a force opposing motion between surfaces.
- Identify factors that affect the magnitude of friction.
- Differentiate between static, sliding, and rolling friction.
- Explain the role of friction in everyday activities.
- Describe methods to increase or decrease friction.
- Solve problems related to friction in various scenarios.
Topics covered
Paper topics
- Friction
- Force
- Motion
- Roughness of surfaces
- Heat produced by friction
- Static friction
- Sliding friction
- Rolling friction
- Increasing friction
- Decreasing friction
- Lubricants
- Applications of friction
Important topics
- Definition and nature of friction
- Comparison of static, sliding, and rolling friction
- Factors affecting friction
- Methods to increase and decrease friction
- Real-world applications of friction
PDF preview
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Questions and Solutions
Question 1
Question 2
Question 3
Question 4
Direction of Frictional Force: Upwards, along the surface of the tilted desk.
Direction of Motion: Downwards, along the surface of the tilted desk.
Question 5
Reason: Soapy water acts as a lubricant. It fills the tiny irregularities present on the surfaces of both the floor and your shoes. This filling reduces the interlocking between the surfaces, significantly decreasing the force of friction. Since friction provides the necessary grip to walk, a reduction in friction makes it harder to gain traction, increasing the chances of slipping and falling.
Question 6
Explanation: The spikes on the shoes dig into the ground (like grass or soil). This increased contact and penetration create a stronger frictional force between the shoes and the ground. A higher frictional force prevents the sportsman from slipping, especially during activities that involve sudden starts, stops, or changes in direction, such as running, jumping, or kicking. This improved grip allows them to perform with more confidence and agility.
Common mistakes
- Confusing the order of static, sliding, and rolling friction.
- Incorrectly identifying the direction of the frictional force.
- Not understanding how surface properties affect friction.
- Misinterpreting the effect of lubricants or powders on friction.
Revision tips
- Focus on the definitions and differences between static, sliding, and rolling friction.
- Pay close attention to the direction of friction relative to motion.
- Understand how surface roughness and lubricants impact friction.
- Relate the concepts of friction to real-life examples provided in the solutions.
Practice MCQs
Q1. Which type of friction is generally the greatest?
Explanation: Static friction is the friction that needs to be overcome to initiate motion. It is generally greater than sliding friction, which in turn is greater than rolling friction.
Q2. Friction is a force that:
Explanation: Friction is defined as a force that opposes the relative motion or tendency of motion between surfaces in contact.
Q3. Sprinkling powder on a carrom board primarily aims to:
Explanation: Powder acts as a lubricant, reducing the friction between the carrom board and the striker/coins, allowing them to move more easily.
Q4. Why do sportsmen wear shoes with spikes?
Explanation: Spikes dig into the ground, increasing the friction between the shoe and the surface, which provides a better grip and prevents slipping.
Q5. Which of the following arrangements correctly shows friction in decreasing order?
Explanation: Generally, static friction is the highest, followed by sliding friction, and then rolling friction is the least.
Frequently asked questions
What is friction?
Friction is a force that opposes the relative motion or tendency of motion between surfaces in contact with each other.
What are the different types of friction discussed in Class 8 Science Chapter 12?
The chapter discusses static friction (friction when objects are at rest), sliding friction (friction when objects are sliding over each other), and rolling friction (friction when one object rolls over another).
How does the roughness of surfaces affect friction?
Friction depends on the roughness of the surfaces in contact. Rougher surfaces generally result in greater friction compared to smoother surfaces.
Why is it harder to push a heavy box than a light box?
It is harder to push a heavy box because the force of friction is greater when the weight (and thus the normal force) pressing the surfaces together is greater.
How can friction be reduced?
Friction can be reduced by making the surfaces smoother, using lubricants like oil or grease, or by using ball bearings or rollers.
Why do we need friction?
Friction is essential for many activities, such as walking, gripping objects, and the functioning of brakes in vehicles. Without sufficient friction, we would slip and fall, and vehicles would not be able to stop.
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