Difference between revisions of "Electromagnetic wave"

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A transverse wave composed of an oscillating electrical field and a magnetic field that oscillates perpendicular to the electric field.<ref>Wile, Dr. Jay L. ''Exploring Creation With Physical Science''. Apologia Educational Ministries, Inc. 1999, 2000</ref>
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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>
  
Electromagnetic waves was predicted by the classical laws of electricity and magnetism, known as Maxwell's equations, which is a system of [[partial differential equations]].
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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.
  
[[Category:Physics]]
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Electromagnetic waves are well described by the classical laws of electricity and magnetism, known as [[Maxwell's Equations]].
  
 
== References ==
 
== References ==
 
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[[Category:Electromagnetism]]
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[[Category:Electrical Engineering]]
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[[Category:Amateur Radio]]

Latest revision as of 14:19, April 6, 2017

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.[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

  1. Wile, Dr. Jay L. Exploring Creation With Physical Science. Apologia Educational Ministries, Inc. 1999, 2000