Difference between revisions of "Electromagnetic wave"
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| − | + | [[File:Electromagneticwave3Dfromside.gif|thumb|right|An animation showing how an electromagnetic wave propagates]]An '''electromagnetic wave''' is a transverse wave composed of an oscillating electrical field and a magnetic field that oscillate perpendicular to the electric field.<ref>Wile, Dr. Jay L. ''Exploring Creation With Physical Science''. Apologia Educational Ministries, Inc. 1999, 2000</ref> | |
| − | + | The spectrum of electromagnetic waves has an extremely wide range from radio waves, microwaves, terahertz radiation, infrared (IR) radiation, visible light, ultraviolet (UV) light, far UV radiation, soft X-rays, hard X-rays and <math>\gamma</math>-radiation. | |
| − | [[ | + | Electromagnetic waves are well described by the classical laws of electricity and magnetism, known as [[Maxwell's Equations]]. |
== References == | == References == | ||
<references /> | <references /> | ||
| + | |||
| + | [[Category:Electromagnetism]] | ||
| + | [[Category:Electrical Engineering]] | ||
| + | [[Category:Amateur Radio]] | ||
Latest revision as of 14:19, April 6, 2017
An electromagnetic wave is a transverse wave composed of an oscillating electrical field and a magnetic field that oscillate perpendicular to the electric field.[1]
The spectrum of electromagnetic waves has an extremely wide range from radio waves, microwaves, terahertz radiation, infrared (IR) radiation, visible light, ultraviolet (UV) light, far UV radiation, soft X-rays, hard X-rays and <math>\gamma</math>-radiation.
Electromagnetic waves are well described by the classical laws of electricity and magnetism, known as Maxwell's Equations.
References
- ↑ Wile, Dr. Jay L. Exploring Creation With Physical Science. Apologia Educational Ministries, Inc. 1999, 2000