C.2.5—Mechanical and electromagnetic wave models

Syllabus
First assessment 2025
Objective
Level
SL

Compare Mechanical and Electromagnetic Wave Models

Feature Mechanical wave Electromagnetic wave
What oscillates particles of a material medium electric and magnetic fields
Vacuum propagation impossible possible
Transverse/longitudinal may be either transverse
Shared wave model has ff, TT, λ\lambda, vv and transfers energy has ff, TT, λ\lambda, vv and transfers energy

Energy moves without net medium displacement

In a travelling mechanical wave, particles oscillate about equilibrium and pass the disturbance onward, so energy moves even though the medium has no resultant displacement after a complete cycle. In an electromagnetic wave, oscillating fields carry energy through space.

Use the same relationship carefully

Both models obey v=fλv=f\lambda, but vv is set by the relevant medium or, for electromagnetic waves in vacuum, by cc. The source frequency links the spatial pattern to how rapidly the local oscillation repeats.

Common trap

“Transfers energy” does not mean matter must travel from source to receiver. It also does not mean mechanical and electromagnetic waves have the same physical oscillator.

C.2.5 Exam Analysis

Assessment in practice

1–2 marks
How it is assessed

Questions compare wave properties across a boundary or identify an electromagnetic-spectrum region. The evidence rewards keeping frequency fixed at the boundary and applying v = fλ to the changed medium.

Command terms

State / What is

What earns marks

For an electromagnetic wave in vacuum, use c = 3.00×10^8 m s−1 and c = fλ. At a stationary boundary, state that frequency remains fixed while speed and wavelength change with the medium.

Watch for

Assuming frequency changes when an electromagnetic wave enters a different stationary medium, rather than changing speed and wavelength.

Representative question

Question 1

[Maximum number: 1]

An electromagnetic wave enters a medium of lower refractive index.

Three statements are made:

I. The wavelength of the wave has increased.
II. The frequency of the wave has decreased.
III. The speed of the wave has increased.

What is true about the properties of the wave?

A

I and II only

B

I and III only

C

II and III only

D

I, II and III