|
|
|
|
|
|
electromagnetic wave
|
An electromagnetic wave is a model used to represent electromagnetic rays. Its behaviour is consistent corresponding to a sinusoidal function and is characterised by three variables: a wavelength (distance between two maxima), a speed (speed of light, if in a vacuum) and a frequency. A light wave in an electromagnetic wave whose wavelength corresponds to the visible spectrum, i.e. between 380 and 780 nanometres. As for radio waves (including GPS signals), they have a far greater wavelength (sometimes kilometres).
|
|
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
vd8WK2QrR3Sra1pj