CBSE Class 11 Physics Exemplar Chapter 14: Waves NCERT Solutions
CBSE Class 11 Physics Exemplar, Chapter 14, introduces the fascinating world of Waves. This section offers comprehensive NCERT Solutions that break down key concepts. We explore the characteristics of water waves, how sound waves behave when they move from one medium to another, and what influences the speed of sound in air, such as temperature, humidity, and pressure. The solutions also clarify the fundamental quantities that are transferred when a wave travels. Furthermore, we examine the specific conditions necessary for mechanical transverse and longitudinal waves to propagate through various media. These detailed explanations are crafted to demystify complex wave phenomena, providing students with a solid understanding essential for their academic success and exam readiness.
Quick info
| Board | CBSE |
|---|---|
| Class | Class 11 |
| Subject | Physics Exemplar |
| Session | 2026 |
| Language | English |
| Type | NCERT Solutions |
| Chapter | Chapter 14 |
Chapter summary
This chapter's NCERT Solutions for Class 11 Physics Exemplar (Chapter 14: Waves) offers explanations for multiple-choice questions. It covers the dual nature of water waves, how wavelength changes with speed in different media for sound waves, the influence of humidity and temperature on sound speed in air, and the energy transfer in longitudinal waves. It also clarifies the conditions for transverse and longitudinal wave propagation in various states of matter.
Learning outcomes
- Understand the nature of water waves as both longitudinal and transverse.
- Analyze how the wavelength of sound waves changes when they move to a medium with different speed.
- Explain the factors affecting the speed of sound in air, including temperature and humidity.
- Identify the quantity transmitted during the propagation of longitudinal waves.
- Differentiate the conditions for the propagation of transverse and longitudinal waves in different media.
Topics covered
Paper topics
- Nature of Water Waves
- Longitudinal Waves
- Transverse Waves
- Sound Wave Propagation
- Wavelength and Speed Relationship
- Factors Affecting Speed of Sound (Temperature, Humidity)
- Energy Transmission in Waves
- Conditions for Wave Propagation
Important topics
- Wave types (longitudinal vs. transverse)
- Speed of sound in air (temperature and humidity effects)
- Wavelength changes in different media
- Energy transfer in wave motion
- Conditions for transverse wave propagation
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Questions and Solutions
Question 1
(a) neither longitudinal nor transverse
(b) both longitudinal and transverse
(c) only longitudinal
(d) only transverse
Question 2
(a)
(b)
(c) 2
(d)
Question 3
(a) independent of temperature
(b) increases with pressure
(c) increases with increase in humidity
(d) decreases with increase in humidity
Question 4
(a) frequency of sound waves
(b) amplitude of sound waves
(c) wavelength of sound waves
(d) loudness of sound waves
Question 5
(a) matter
(b) energy
(c) energy and matter
(d) energy, matter and momentum
Question 6
(a) Mechanical transverse waves can propagate through all mediums.
(b) Longitudinal waves can propagate through solids only.
(c) Mechanical transverse waves can propagate through solids only.
(d) Longitudinal waves can propagate through vacuum.
Common mistakes
- Confusing the conditions for transverse wave propagation in solids and fluids.
- Incorrectly assuming frequency changes when a wave enters a new medium.
- Misunderstanding the relationship between sound speed, temperature, and humidity.
Revision tips
- Focus on the conditions under which transverse and longitudinal waves can propagate.
- Review the formulas relating wave speed, frequency, and wavelength, especially when changing mediums.
- Understand the physical reasons behind how temperature and humidity affect sound speed in air.
- Pay attention to the distinction between energy transfer and matter transfer in wave motion.
Practice MCQs
Q1. Water waves generated by a motorboat sailing in water exhibit which of the following characteristics?
Explanation: Water waves created by a moving boat are a combination of both longitudinal and transverse waves. This is because the particles of the water undergo both up-and-down (transverse) and back-and-forth (longitudinal) motions.
Q2. A sound wave with wavelength \(\) travels in a medium at a speed of \(v\) m/s. When it enters a second medium where its speed is \(2v\) m/s, what is the new wavelength?
Explanation: The frequency of a wave remains constant when it passes from one medium to another. Using the relationship \(\), where \(v\) is speed, \(f\) is frequency, and \(\) is wavelength, if the speed doubles and frequency is constant, the wavelength must also double.
Q3. Which of the following statements accurately describes the speed of sound waves in air?
Explanation: The speed of sound in air increases with humidity because moist air is less dense than dry air at the same temperature and pressure. Since speed is inversely proportional to the square root of density (\(v 1/\)), lower density leads to higher speed.
Q4. When the temperature of the medium changes, which property of sound waves is most directly affected?
Explanation: The speed of sound in a medium is dependent on temperature (\(v \)). Since frequency remains constant when a wave travels, and \(\), a change in speed \(v\) directly leads to a change in wavelength \(\).
Q5. What is primarily transmitted through a medium during the propagation of longitudinal waves?
Explanation: Longitudinal waves transmit energy through the medium by causing compressions and rarefactions. However, the particles of the medium oscillate about their mean positions and are not transported along with the wave, meaning matter is not transmitted.
Q6. Mechanical transverse waves can propagate through which type of medium?
Explanation: Mechanical transverse waves require a medium that can sustain shearing stress. Solids possess a shear modulus and can resist shape changes, allowing transverse waves to propagate. Fluids (liquids and gases) lack a definite shape and yield to shearing stress, thus cannot support transverse waves.
Frequently asked questions
What types of waves are water waves produced by a motorboat?
Water waves produced by a motorboat are both longitudinal and transverse. The particles of water exhibit both up-and-down (transverse) and back-and-forth (longitudinal) motions.
How does the wavelength of a sound wave change when it moves to a medium where the speed is doubled?
When a sound wave moves to a medium where its speed is doubled, and assuming the frequency remains constant, the wavelength also doubles. This is because wavelength is directly proportional to speed when frequency is constant (\(\lambda \propto v\)).
Does the speed of sound in air change with humidity?
Yes, the speed of sound in air increases with an increase in humidity. This is because moist air is less dense than dry air, and sound travels faster in less dense mediums.
What is the primary quantity transmitted by longitudinal waves?
The primary quantity transmitted by longitudinal waves is energy. The particles of the medium oscillate around their equilibrium positions but are not transported over long distances.
Can transverse waves travel through liquids?
No, mechanical transverse waves cannot propagate through fluids (liquids and gases). This is because fluids do not have a definite shape and cannot sustain the shearing stress required for transverse wave motion.
How does temperature affect the speed of sound in air?
The speed of sound in air increases with temperature. The speed is approximately proportional to the square root of the absolute temperature (\(v \propto \sqrt{T}\)).
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