C.2.1—Transverse and longitudinal travelling waves
- Syllabus
- First assessment 2025
- Objective
- —
- Level
- SL
| Feature | Transverse wave | Longitudinal wave |
|---|---|---|
| Oscillation direction | perpendicular to propagation | parallel to propagation |
| Snapshot features | crests and troughs | compressions and rarefactions |
| Mechanical example | wave on a stretched rope | sound in air |
Follow one particle, not the drawn shape
At a fixed position, a medium particle oscillates with time about equilibrium. In a position snapshot, different particles have different displacements at the same instant. The travelling pattern and energy move through the medium; the particles do not travel with the pattern.
Classification rule
Compare the particle or field oscillation direction with the propagation direction. A sinusoidal-looking graph alone does not determine whether a wave is transverse or longitudinal.
Questions ask you to define a travelling wave or infer point motion and wave direction from a transverse snapshot. The evidence rewards separate statements for energy transfer, local oscillation and propagation.
Outline / What is
Define a travelling wave as propagation of energy through oscillations or fields, then distinguish the direction of particle motion from the direction of wave travel. For a diagram, use the stated motion of one point to infer the next point and the propagation direction.
Confusing the direction of a point’s oscillation with the direction in which the wave and energy propagate.
Representative question
Outline what is meant by a travelling wave.
The transfer/propagation of energy/momentum/information
Through oscillations/vibrations of medium/fields
Positions of maximum and minimum amplitude OR crests and troughs travel through a medium
Marking guidance:
[2 max]
Model the transfer
A travelling wave propagates a disturbance and transfers energy without a resultant transport of the medium. Use the local particle/field motion to describe oscillation, and the wave direction to describe propagation.
Connect the quantities
Describe waves with wavelength λ, frequency f, period T, amplitude and speed v, linked by v=fλ=λ/T. Measure wavelength between adjacent in-phase points.
Classify the wave
Transverse oscillations are perpendicular to propagation; longitudinal oscillations are parallel. Mechanical waves require a medium, while electromagnetic waves are transverse field oscillations and travel at c in vacuum.
Final check
At a boundary, identify which quantity is fixed by the source and which properties change in the new medium. Keep units consistent and distinguish propagation speed from the local oscillation speed.