Lesson T4.1.2
T4.1.2 Sound waves and their speed Quiz: KS3 Physics, Unit 4
20 questions
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Lesson T4.1.2, Sound waves and their speed: 20 multiple choice questions for the KS3 Physics (National Curriculum), Unit 4: Waves, written with Revision Ninja.
Host it live on the board and students join with a game code on their own devices, or revise alone with Free Play. The answers are revealed in the game.
The 20 questions
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What do sound waves need in order to travel?
- A vacuum, which carries sound fastest because nothing gets in the way of its travel
- Only sunlight, which heats the air so that the sound can travel up through it
- Only light, which is a transverse wave that carries sound along with it through space
- A medium, such as a gas, liquid or solid
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What unit is used to measure the frequency of a sound wave?
- Newtons (N), which is the unit of force used when a sound pushes on a microphone
- Hertz (Hz)
- Decibels (dB) only, which is the unit used for how loud a sound seems to a listener
- Metres per second (m/s), which is the unit of speed for the sound wave in its medium
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Sound waves are described as what type of wave?
- Longitudinal
- Electromagnetic, because sound carries energy as changing electric and magnetic fields in air
- Transverse, because the particles move up and down at right angles to the direction of travel
- Surface, because sound only travels along the top of a medium such as a liquid or a solid
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Which medium carries sound fastest?
- Solids
- Gases, because the particles in a gas move quickly and pass the vibrations on rapidly
- Liquids, because the particles of a liquid are free to slide and move past each other
- Vacuums, because the empty space allows the sound to travel without any resistance at all
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What is the approximate speed of sound in air at room temperature?
- About 340 m/s
- About 3400 m/s, which is roughly ten times faster than the true speed of sound in air
- About 300 000 000 m/s, which is the speed of light in a vacuum and not of sound
- About 3 m/s, which is roughly the speed of a person walking slowly along a path
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A sound source at a distance of 340 m is heard after 1 second. What is the speed of the sound?
- 340 m/s
- 1 m/s, which is found by dividing the time by the distance instead of the other way round
- 34 m/s, which is found by dividing the distance by ten rather than by the time taken
- 3400 m/s, which is found by multiplying the distance by ten and then by the time taken
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Roughly how far does sound travel in 3 seconds through air?
- About 3400 m, which is found by multiplying the speed by ten and then by the three seconds
- About 340 m, which is the distance sound covers in one second rather than in three seconds
- About 1020 m
- About 113 m, which is found by dividing the distance by three instead of multiplying by three
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Which statement about the speed of sound is correct?
- Sound travels at the same speed in every medium, because the speed depends on loudness only.
- Sound travels slower in solids than in air, because the solid particles are too close together.
- Sound usually travels faster in water than in air.
- Sound travels faster through a vacuum than through any solid, because there is nothing to slow it.
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A loudspeaker cone moves in and out rapidly. What does this produce?
- Water waves on the surface of the air, which ripple outwards across the room from the speaker
- Light waves that travel in straight lines away from the cone and across the room to the listener
- Heat that spreads out from the cone, which warms the air in front of the speaker as it moves
- Sound waves made by vibrations of the air particles
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What part of the ear is set in motion by sound waves first?
- The lens, which focuses light onto the retina of the eye rather than sound onto the ear
- The eardrum
- The retina, which is the light-sensitive layer at the back of the eye and not part of the ear
- The cornea, which is the clear outer layer of the eye that bends light as it enters
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A microphone has a thin diaphragm. What does the diaphragm do when sound reaches it?
- It vibrates and the vibrations are converted into electrical signals.
- It stops all sound from reaching the circuit, which blocks the sound from being recorded at all.
- It turns into light and travels down a wire, which carries the sound to the recording device.
- It stores the sound as a permanent magnet, which keeps the pattern for later playback.
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Why does sound travel more slowly in air than in steel?
- The particles in air are further apart, so vibrations pass between them more slowly.
- Steel is hotter than air at room temperature, so sound moves faster through the metal.
- Air is denser than steel, so it blocks sound and slows its progress through the medium.
- Air particles are charged, so they absorb sound and reduce its speed as it travels through.
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Which frequency range do humans typically hear?
- About 2 Hz to 200 Hz, which covers only the very lowest notes that a human can hear
- About 20 000 Hz to 200 000 Hz, which covers the very high frequencies that humans cannot hear
- About 200 Hz to 2000 Hz, which covers only the middle range of the notes that humans hear
- About 20 Hz to 20 000 Hz
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Which of these sounds has the highest frequency?
- A high-pitched whistle
- A slow bass note from a tuba, which is a deep note made by a long brass instrument
- A deep drum beat, which has a long wavelength and a low number of vibrations each second
- A low rumble from thunder, which is a deep sound made by a large amount of air moving
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What is an ultrasound wave?
- A sound wave with a frequency above the range humans can hear.
- A water wave that travels at high speed across the surface of a calm pool of water
- A light wave that cannot be seen by the human eye, because its colour lies outside the range
- A sound wave that is produced only by machines and never by natural things such as animals
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Which statement about longitudinal waves is correct?
- Compressions and rarefactions move along the direction of the wave.
- Particles do not move at all, because the energy travels through the medium without any movement.
- Particles move in a circle around a fixed point, which causes the wave to spread out in all directions.
- Particles move up and down at right angles to the wave, which is how the wave is carried along.
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Why can astronauts not hear each other speak directly in the vacuum of space?
- Sound waves only travel upwards from the surface of a planet, so they cannot spread across space
- Astronauts' voices are absorbed by the fabric of the spacesuit instead of being carried outwards
- Sound waves are too quiet to travel through the thin suits that astronauts wear over their bodies
- There are no particles in a vacuum to carry the sound vibrations.
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Which property of a sound wave determines how high or low its pitch sounds?
- Its direction, which is the way in which the sound leaves the source and reaches the listener
- Its speed, which depends on the medium that the sound wave is travelling through at the time
- Its frequency
- Its amplitude, which controls how loud the sound seems to a listener standing in the room
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What is a compression in a sound wave?
- A region where the particles are spread further apart than normal, leaving a gap in the air
- A place where the sound is reflected back to the source of the wave and then absorbed
- A point where the wave has no particles present at all, so the sound stops at that point
- A region where the particles are squeezed closer together than normal.
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A sound has a frequency of 512 Hz. What is the time for one complete vibration?
- About 0.02 s, which moves the decimal point one place too far when dividing one by 512
- About 0.002 s
- About 512 s, which mistakes the frequency in hertz for the time taken for one vibration
- About 0.5 s, which is the reciprocal of 2 used in place of the frequency of 512 vibrations
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