(c) The electromagnetic spectrum

Syllabus
2024
Topic
Level

Learning objectives

Meet the electromagnetic spectrum

Visible light is one small region of a continuous electromagnetic spectrum. The seven named regions are radio waves, microwaves, infrared, visible light, ultraviolet, x-rays and gamma rays.

Continuous means that electromagnetic wavelengths form an unbroken range. The named regions are useful bands within that range, not separate kinds of disturbance with gaps between them.

Every electromagnetic wave travels at the same speed in free space: 3.0×108 m/s3.0\times10^8\text{ m/s}. A radio wave and a gamma ray can have very different frequencies and wavelengths while sharing this free-space speed.

The common speed applies in free space. Electromagnetic waves can travel at different, lower speeds in materials, so do not apply the free-space statement to every medium.

Order the electromagnetic spectrum

Across the electromagnetic spectrum, decreasing wavelength means increasing frequency because all regions share the same free-space speed and v=fλv=f\lambda.

Direction Ordered spectrum
wavelength decreases; frequency increases radio → microwave → infrared → visible → ultraviolet → x-ray → gamma
wavelength increases; frequency decreases gamma → x-ray → ultraviolet → visible → infrared → microwave → radio

Within visible light, the order from longer wavelength and lower frequency to shorter wavelength and higher frequency is red → orange → yellow → green → blue → indigo → violet.

Ultraviolet is beyond violet but is not a visible colour; infrared is beyond red but is not visible. ‘Higher in the spectrum’ is ambiguous, so always state whether frequency or wavelength is increasing.

Connect electromagnetic waves to their uses

An electromagnetic wave is chosen for a use because its interaction with matter, transmission or detection makes that job possible.

Region Required uses Why it is useful
radio waves broadcasting and communications signals can carry information over large distances
microwaves cooking; satellite transmissions absorbed energy heats food; directed signals can pass through the atmosphere to and from satellites
infrared heaters; night vision readily transfers thermal energy; warm objects emit infrared that detectors can sense
visible light optical fibres; photography can be guided along transparent fibres; cameras detect it to form photographs
ultraviolet fluorescent lamps fluorescent materials absorb ultraviolet and emit visible light
x-rays seeing internal structures, including medical imaging pass through some materials and soft tissue more readily than denser material such as bone
gamma rays sterilising food and medical equipment penetrating radiation kills microorganisms

A region may have other valid uses, but these are the pairings required here. The use is not explained by naming the wave alone: connect the wave's behaviour to what the device or process needs.

Match electromagnetic hazards to protection

Excessive exposure to electromagnetic radiation can harm the body. Risk is reduced by limiting exposure time, increasing distance where practical, and placing suitable shielding between the source and people.

Radiation Required harmful effect Simple protective measures
microwaves internal heating of body tissue metal shielding and safety interlocks; keep away from a leaking source
infrared skin burns heat-resistant shielding or clothing; increase distance and limit exposure time
ultraviolet damage to surface cells and blindness cover skin, use sunscreen and UV-blocking eye protection; limit time in strong sunlight
gamma rays cell mutation and cancer dense shielding, remote handling, greater distance and the shortest practical exposure time

Protection must interrupt the exposure route: shielding absorbs or blocks radiation, distance reduces the radiation reaching the body, and shorter exposure reduces the total received.

Do not swap the named hazards: microwaves cause internal heating, infrared causes surface burns, ultraviolet damages surface cells and eyes, and gamma radiation can cause mutation and cancer.