C.2.4—Nature of electromagnetic waves
- Syllabus
- First assessment 2025
- Objective
- —
- Level
- SL
Oscillating fields
An electromagnetic wave consists of oscillating electric and magnetic fields. The two fields are perpendicular to each other and both are perpendicular to the direction of propagation and energy transfer, so the wave is transverse.
No material medium is required
Electromagnetic fields can propagate through a vacuum. Every electromagnetic wave travels in vacuum at c=3.00×108ms−1, with c=fλ.
One spectrum, approximate regions
Radio, microwave, infrared, visible, ultraviolet, X-ray and gamma radiation are all electromagnetic waves. Use the approximate wavelength orders of magnitude supplied in the Physics data booklet; the named regions do not have perfectly sharp physical boundaries.
Common trap
Different spectrum regions do not have different vacuum speeds. They differ in frequency and wavelength while satisfying the same value of c.
Questions ask for the definition of a transverse wave or the nature of an electromagnetic wave in vacuum. The evidence rewards the perpendicular relationship and correct wave classification.
State / What is
State the direction of particle/field oscillation relative to energy propagation. For transverse waves use perpendicular; for longitudinal waves use parallel and identify compressions/rarefactions when relevant.
Calling every mechanical wave transverse or defining transverse motion without referencing the direction of propagation.
Representative question
An ultraviolet wave is travelling in a vacuum.
What is the frequency and the nature of the wave?
Wave frequency / Hz
Nature of the wave
1015
transverse
1015
longitudinal
10−7
transverse
10−7
longitudinal
A
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.