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Since the speed of light in a vacuum is observed to be constant, it can be used to define distances as well. The distance that light travels in one year is known as a [[light-year]], which is about 6 million million (6x10<sup>12</sup>) miles.  
 
Since the speed of light in a vacuum is observed to be constant, it can be used to define distances as well. The distance that light travels in one year is known as a [[light-year]], which is about 6 million million (6x10<sup>12</sup>) miles.  
==StarLight Problem For the Big Bang Theory==
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==Starlight Problem For the Big Bang Theory==
 
The [[starlight problem]] is an argument against the [[Big Bang Theory]] which theorizes a universe of billions of years old. <ref>http://www.answersingenesis.org/creation/v25/i4/lighttravel.asp</ref> The [[creation science]] organization [[Answers in Genesis]] has stated the following regarding the starlight problem for the Big Bang Theory and the work of [[Charles W. Misner]] is cited who published his work in ''[[Physical Review Letters]]'':
 
The [[starlight problem]] is an argument against the [[Big Bang Theory]] which theorizes a universe of billions of years old. <ref>http://www.answersingenesis.org/creation/v25/i4/lighttravel.asp</ref> The [[creation science]] organization [[Answers in Genesis]] has stated the following regarding the starlight problem for the Big Bang Theory and the work of [[Charles W. Misner]] is cited who published his work in ''[[Physical Review Letters]]'':
 
{{cquote|The problem is this: even assuming the big bang timescale, there has not been enough time for light to travel between widely separated regions of space. So, how can the different regions of the current [cosmic microwave background] CMB have such precisely uniform temperatures if they have never communicated with each other? This is a light-travel–time problem.<ref>http://www.answersingenesis.org/creation/v25/i4/lighttravel.asp</ref>}}
 
{{cquote|The problem is this: even assuming the big bang timescale, there has not been enough time for light to travel between widely separated regions of space. So, how can the different regions of the current [cosmic microwave background] CMB have such precisely uniform temperatures if they have never communicated with each other? This is a light-travel–time problem.<ref>http://www.answersingenesis.org/creation/v25/i4/lighttravel.asp</ref>}}
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