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Physics · Magnetism and electromagnetism
Loudspeakers and headphones
Explain how loudspeakers and headphones use the motor effect to convert alternating current into sound (Higher tier only; Physics only).
Warm-up
Answer each one, then check.
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1
What is sound?
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A longitudinal wave
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2
What is frequency?
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Number of waves per second
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3
What is a.c.?
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4
What is the motor effect?
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Force on a current-carrying wire in a magnetic field
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5
What is a diaphragm?
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A thin flexible cone or membrane
Learning Objectives
- 1Describe the structure of a moving-coil loudspeaker.
- 2Explain how a loudspeaker converts electrical signals into sound.
- 3Explain how the frequency and loudness of the sound depend on the a.c.
LOUDSPEAKERS
In a loudspeaker an alternating current flows through a coil in a magnetic field. The motor effect makes the coil, and the cone attached to it, move back and forth at the same frequency as the current, producing sound waves.
Loudspeakers and headphones use the motor effect; microphones (next lessons) use the generator effect.
A Loudspeaker
The cone moves at the frequency of the current.
How a Loudspeaker Makes Sound
Follow the steps.
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1
a.c. flows
An alternating current from the amplifier flows through the coil.
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2
The coil is in a field
The permanent magnet provides a magnetic field.
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3
Motor effect
A force acts on the coil, changing direction as the current changes direction.
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4
The cone vibrates
The coil moves the cone back and forth at the same frequency.
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5
Sound waves
The vibrating cone makes longitudinal sound waves in the air.
Changing the Sound
What controls the sound?
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Higher frequency a.c.
Sound: Higher pitch
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Larger a.c. amplitude
Sound: Louder sound (larger force, greater vibration)
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Zero current
Sound: No sound
Headphones
Explain how headphones work in the same way.
Show the solutionHide the solution
- 1 Small coil A small coil and magnet inside
- 2 a.c. signal Changing current moves the coil
- 3 Diaphragm A small diaphragm vibrates and creates sound
AnswerHeadphones are tiny loudspeakers.
Speaker Soak
Write a chain of events from the amplifier to the sound reaching your ear. Then explain why the cone vibrates at the same frequency as the current.
1. Follow the chain.
A good answer shows: a.c. → coil → motor effect → cone vibrates → sound. The force reverses each time the current reverses.
Can I...?
- 1State the parts.
- 2Name the effect used.
- 3Explain the coil movement.
- 4Explain the cone.
- 5Link frequency and pitch.
- 6Link amplitude and loudness.
- 7Describe headphones.
- 8Give the energy transfer.
Summary & Exam Focus
- Alternating current flows through a coil near a magnet.
- The motor effect gives a force that changes direction with the current.
- The coil and cone vibrate at the same frequency.
- The cone makes sound waves in the air.
Exam focus
Explain why the cone in a loudspeaker vibrates. (3 marks) (3 marks)
Alternating current in the coil, motor effect.
Key terms
The vocabulary this lesson expects you to use. Each one is linked from the first place it appears above.
- Loudspeaker
- A device that uses the motor effect to convert electrical signals into sound.
- Cone
- The part of the loudspeaker that vibrates to make sound.
- Alternating current
- A current that repeatedly changes direction.
- Frequency
- The number of vibrations each second.
- Amplitude
- The size of the vibration.
- Diaphragm
- A thin vibrating membrane.
Practice questions
Have a go at each one before you open its answer.
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Question 1 State 2 marks
What type of current flows through the coil of a loudspeaker? Describe how the cone moves.
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Model answer
An alternating current. The cone moves back and forth (vibrates).
Mark scheme
- Alternating current — 1 mark
- Cone vibrates back and forth — 1 mark
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Question 2 Explain 4 marks
Explain how a loudspeaker produces sound.
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Model answer
An alternating current flows in the coil, which is in the field of a permanent magnet. The motor effect gives a force on the coil that reverses as the current reverses. The coil and cone vibrate at the frequency of the current. The cone produces longitudinal sound waves.
Mark scheme
- a.c. in a coil in a magnetic field — 1 mark
- Motor effect force — 1 mark
- Force changes direction so cone vibrates — 1 mark
- Sound waves produced — 1 mark
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Question 3 Explain 2 marks
The frequency of the alternating current is increased. State the effect on the sound.
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Model answer
The pitch of the sound rises because the cone vibrates faster.
Mark scheme
- Higher pitch / higher frequency — 1 mark
- Cone vibrates faster — 1 mark
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Question 4 Explain 2 marks
The amplitude of the current is increased. State the effect on the sound and explain.
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Model answer
The sound is louder because a larger current gives a larger force so the cone vibrates with a larger amplitude.
Mark scheme
- Louder — 1 mark
- Larger force or larger vibration — 1 mark
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Question 5 Explain 3 marks
Explain why the current in a loudspeaker must be alternating rather than direct.
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Model answer
A direct current would give a force in one direction, so the cone would only move once and stay there. An alternating current reverses the force so the cone moves back and forth and produces sound.
Mark scheme
- d.c. gives a steady force in one direction — 1 mark
- Cone only moves once/stays displaced — 1 mark
- a.c. reverses the force so the cone vibrates — 1 mark
Quick check
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A loudspeaker uses the...
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B: motor effect
Force on a coil in a field.
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The current in a loudspeaker coil is...
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C: alternating
It reverses.
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Higher frequency current gives a sound of...
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D: higher pitch
Faster vibrations.
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The vibrating cone produces...
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A: longitudinal sound waves
Sound.
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Larger current amplitude gives a...
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B: louder sound
Bigger force.
Downloads
Free to keep, print and annotate.
- Loudspeakers and headphones.pptx Built from the lesson script on 30 September 2026. View
- Loudspeakers and headphones - Completed Notes.docx The full notes for the lesson, to revise from. Built from the lesson script on 30 September 2026. View
- Loudspeakers and headphones - Exam Questions.docx Built from the lesson script on 30 September 2026. View
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