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{{cquote|The equality of the mass equivalent of radiation to the mass lost by a radiating body is derivable from Poincaré’s momentum of radiation (1900) and his principle of relativity (1904).|||Herbert Ives, 1952}}
 
{{cquote|The equality of the mass equivalent of radiation to the mass lost by a radiating body is derivable from Poincaré’s momentum of radiation (1900) and his principle of relativity (1904).|||Herbert Ives, 1952}}
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== Description for the layman ==
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This is a terrible website that misrepresents sources and promotes ignorance of actual scientific theory.  If you use this website as a reference for anything in any academic course, I will expect that you will get an 'F.' Go to a credible source now.  These people are idiots.
Ten top physicists were asked to describe in laymen's terms '''E=mc&sup2;''':<ref>[http://www.pbs.org/wgbh/nova/einstein/experts.html Lexi Krock, David Levin (editors) ''E=mc&sup2; explained'', June, 2005. PBS ''NOVA'']</ref>{{cquote|''Things that seem incredibly different can really be manifestations of the same underlying phenomena.''|||Nima Arkani-Hamed, Theoretical Physicist, Harvard University}}{{cquote|''You can get access to parts of nature you have never been able to get access to before.''|||Lene Hau, Experimental Physicist, Harvard University}}{{
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cquote|''It certainly is not an equation that reveals all its subtlety in the few symbols that it takes to write down.''|||Brian Greene Theoretical Physicist Columbia University}}
      
== History of '''E=mc&sup2;''' ==
 
== History of '''E=mc&sup2;''' ==

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