Transverse and Longitudinal Waves
Aligned to the AQA 8463 specification
- Topic
- Waves
- Level
- Intermediate
- Reading time
- 6 min
- Published
- 2 July 2026
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Key takeaways
- A wave transfers energy from one place to another without transferring matter; the particles of the medium only oscillate about fixed positions.
- In a transverse wave the oscillations are at 90° to the direction of energy transfer; water ripples and all electromagnetic waves are transverse.
- In a longitudinal wave the oscillations are parallel to the direction of energy transfer, producing compressions and rarefactions; sound in air is longitudinal.
- A floating object on a passing wave bobs up and down but does not move along with the wave, showing that the medium itself does not travel.
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Key terms
- Transverse wave
- A wave in which the oscillations are perpendicular to the direction of energy transfer.
- Longitudinal wave
- A wave in which the oscillations are parallel to the direction of energy transfer.
- Compression
- A region of a longitudinal wave where the particles are pushed close together, giving higher pressure.
- Rarefaction
- A region of a longitudinal wave where the particles are spread apart, giving lower pressure.
Frequently asked questions
In a transverse wave the oscillations are perpendicular (at 90°) to the direction the wave travels, as in water ripples. In a longitudinal wave the oscillations are parallel to the direction of travel, producing compressions and rarefactions, as in sound.
Waves transfer energy, not matter. The particles of the medium vibrate about fixed positions and stay roughly where they are; only the energy and the wave pattern move forward.
Sound is a longitudinal wave. The air particles vibrate back and forth in the same direction the sound travels, creating regions of high pressure (compressions) and low pressure (rarefactions).
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