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Chapters
2: Motion in One Dimension
3: Laws of Motion
4: Pressure in Fluids
5: Upthrust and Archimedes’ Principle
6: Heat and Energy
7: Energy Flow and Practices for Conservation of Resources
8: Light
▶ 9: Sound
10: Electricity and Magnetism – 1
11: Electricity and Magnetism – 2
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Solutions for Chapter 9: Sound
Below listed, you can find solutions for Chapter 9 of CISCE Goyal Brothers Prakashan for A New Approach to ICSE Physics Part 1 [English] Class 9.
Goyal Brothers Prakashan solutions for A New Approach to ICSE Physics Part 1 [English] Class 9 9 Sound Exercise (A) Objective Questions
Select the correct option:
In case of longitudinal waves, the particles of the medium vibrate:
in the direction of wave propagation
opposite to the direction of wave propagation
at right angles to the direction of wave propagation
none of the above
Select the correct option:
A longitudinal wave consists of:
crest and trough in the medium
compression and rarefaction in the medium
both crest and trough in the medium and compression and rarefaction in the medium
neither crest and trough in the medium and compression and rarefaction in the medium
Select the correct option:
The longitudinal waves can propagate only in
solids
liquids
gases
all of these
Select the correct option:
A part of the longitudinal wave in which particles of the medium are closer than the normal particles is called:
rarefaction
crest
trough
compression
Select the correct option:
A part of longitudinal wave in which particles of the medium are farther away than the normal particles is called :
rarefaction
trough
compression
crest
Select the correct option:
In the region of compression or rarefaction, in a longitudinal wave, the physical quantity which does not change is:
pressure
mass
density
volume
Select the correct option:
The wavelength is the linear distance between the:
two consecutive compressions
two consecutive rarefactions
one compression and one rarefaction
both two consecutive compressions and rarefactions
Select the correct option:
The number of oscillations passing through a point in unit time is called:
vibration
frequency
wavelength
amplitude
Select the correct option:
The SI unit of frequency is
hertz
gauss
decibel
none of these
Select the correct option:
If the frequency of a wave is 25 Hz. the total number of compressions and rarefactions passing through a point in 1 second is :
25
50
100
none of these
Select the correct option:
Which of the following is an elastic wave?
light wave
ratio wave
sound wave
microwave
Goyal Brothers Prakashan solutions for A New Approach to ICSE Physics Part 1 [English] Class 9 9 Sound Exercise (B) Subjective Questions
What do you understand by the term sound energy?
State three conditions necessary for hearing sound.
Describe briefly an experiment to prove that vibrating bodies produce sound.
What do you understand by the term infrasonic vibrations?
What do you understand by the term sonic vibrations? State the range of sonic vibrations for the human ear.
What do you understand by the term ultrasonic vibrations?
Name three animals which can hear ultrasonic vibrations.
How do bats locate their prey during a flight?
What is Galton’s whistle? To what use is it put?
State four practical uses of ultrasonic vibrations.
Describe an experiment to prove that a material medium is necessary for the propagation of sound.
Why do astronauts talk to each other through radio telephone in space?
Define the term wavelength.
Define the term amplitude.
Define the term frequency.
State four differences between the sound wave and the light wave.
What is meant by the term wave motion?
State the relation between the wavelength and the frequency.
What kinds of waves are produced in solids, liquids, and gases?
The sound of an explosion on the surface of a lake is heard by a boat man 100 m away and by a diver 100 m below the point of explosion.
(i) Who would hear the sound first: boatman or diver?
(ii) Give a reason for your answer in part (i).
(iii) If sound takes time t to reach the boatman, how much time approximately does it take to reach the diver?
What is approximate value of the speed of sound in iron as compared to that in air? Illustrate your answer with a simple experiment.
A continuous disturbance is created on the surface of water in a ripple tank with a small piece of cork floating on it. Describe the motion of the cork. What does the motion of the cork tell about the disturbance?
Draw a displacement-time graph for water wave.
Goyal Brothers Prakashan solutions for A New Approach to ICSE Physics Part 1 [English] Class 9 9 Sound Exercise Practice Problems 1
200 waves pass through a point in one second. Calculate the time period of wave.
A bat emits an ultrasonic sound of frequency 0.25 MHz. Calculate the time in which one vibration is completed.
Goyal Brothers Prakashan solutions for A New Approach to ICSE Physics Part 1 [English] Class 9 9 Sound Exercise Practice Problems 2
The sonic boom of an aircraft has a time period of 0.00005s. Calculate the frequency of sound produced.
An electromagnetic wave has a time period of 4 × 10-8 s. Calculate its frequency in MHz.
Goyal Brothers Prakashan solutions for A New Approach to ICSE Physics Part 1 [English] Class 9 9 Sound Exercise Practice Problems 3
Ultraviolet radiation has a wavelength of 300Å. If the velocity of the electromagnetic wave is 3 × 108 ms-1. Calculate:
- frequency
- time period.
The wavelength of the vibrations produced on the surface of water is 2 cm. If the wave velocity is 16 ms-1, calculate:
- no. of waves produced in one second
- time required to produce one wave.
Goyal Brothers Prakashan solutions for A New Approach to ICSE Physics Part 1 [English] Class 9 9 Sound Exercise Practice Problems 4
A continuous progressive transverse wave of frequency 8 Hz moves across the surface of a ripple tank
With reference to the frequency, describe the movement of water on the surface
A continuous progressive transverse wave of frequency 8 Hz moves across the surface of a ripple tank
If the wavelength of the transverse wave is 32 mm, calculate the speed with which wave travels across the surface of the water.
A thin metal plate is placed against the teeth of cog wheel. Cog wheel is rotated at a speed of 120 rotations per minute and has 160 teeth. Calculate:
- frequency of node produced.
- speed of sound, if wavelength is 1.05 m.
- what will be the effect when the speed of cog wheel is doubled?
Goyal Brothers Prakashan solutions for A New Approach to ICSE Physics Part 1 [English] Class 9 9 Sound Exercise Practice Problems 5
A sound wave of wavelength 1/3 m has a frequency 996 Hz. Keeping the medium same, if frequency changes to 1328 Hz. Calculate
- velcoity of sound
- new wavelength.
Two tuning forks A and B of frequencies 256 Hz and 192 Hz respectively are vibrated in air. If the wavelength of A is 1.25 m, calculate the wavelength produced by B.
Goyal Brothers Prakashan solutions for A New Approach to ICSE Physics Part 1 [English] Class 9 9 Sound Exercise Practice Problems 6
The distance between one crest and one trough of a sea wave is 4.5 m. If the waves are produced at the rate of 240/min, calculate the time period.
The distance between one crest and one trough of a sea wave is 4.5 m. If the waves are produced at the rate of 240/min, calculate the wave velocity.
The distance between three consecutive crests of wave is 60 cm. If the waves are produced at the rate of 180/ min, calculate:
- wavelength
- time period
- wave velocity.
Goyal Brothers Prakashan solutions for A New Approach to ICSE Physics Part 1 [English] Class 9 9 Sound Exercise Practice Problems 7
The diagram given below shows a displacement distance graph of a wave. If the velocity of wave is 160 ms-1, calculate:
- wavelength
- frequency
- amplitude.
From diagram given below calculate:
- velocity of P and Q
- frequency of P, when frequency of Q is 512 Hz.
Assume that both wave are traveling in same medium.
Solutions for 9: Sound
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Goyal Brothers Prakashan solutions for A New Approach to ICSE Physics Part 1 [English] Class 9 chapter 9 - Sound
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Concepts covered in A New Approach to ICSE Physics Part 1 [English] Class 9 chapter 9 Sound are Production of Sound, Propagation of Sound, Sound Need a Medium to Travel, Characteristics of a Sound Wave, Representation of a Wave, Relationship Between the Wavelength, Wave Velocity and Frequency, Factors Affecting Speed of Sound in Gas, Factors Not Affecting Speed of Sound in a Gas, Experimental Determination of Speed of Sound in Air, Properties of Sounds, Audibility and Range, Speed of Sound in Different Media, Speed of Sound (Velocity of Sound), Sound, Ultrasonic Sound Or Ultrasound, Difference Between the Sound and Light Waves.
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