Difference between revisions of "Nucleosynthesis"

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(Created page with ''''Nucleosynthesis''' is the process of creating atomic nuclei fro pre-existing protons and neutrons. According to standard cosmological theories, a few minutes after the...')
 
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'''Nucleosynthesis''' is the process of creating atomic nuclei fro pre-existing [[proton]]s and [[neutron]]s. According to standard cosmological theories, a few minutes after the [[Big Bang]] most of the hydrogen in the universe was formed, as well as small quantities of helium and beryllium. Heavier elements are formed mainly inside [[star]]s, through the process of [[nuclear fusion]]. 
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'''Nucleosynthesis''' is the process of creating atomic nuclei from pre-existing [[proton]]s and [[neutron]]s.  
  
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[[Category: Physics]]
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Heavier elements are believed to form mainly inside [[star]]s, through the process of [[nuclear fusion]]. 
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[[Category: Astronomy]]
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The [[big bang theory]] predicts that in the early [[universe]] the [[temperature]] would have been sufficiently great for nuclear fusion to occur. It predicts that the universe should be composed of roughly 23% [[helium]] with the majority of the rest being [[hydrogen]].<ref>http://w.astro.berkeley.edu/~mwhite/darkmatter/bbn.html</ref> According to naturalistic scientists, this is consistent with the known values.<ref>http://hyperphysics.phy-astr.gsu.edu/hbase/astro/hydhel.html</ref>
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==References==
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{{Reflist}}
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[[Category:Physics]]
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[[Category:Astronomy]]

Latest revision as of 21:56, November 4, 2016

Nucleosynthesis is the process of creating atomic nuclei from pre-existing protons and neutrons.

Heavier elements are believed to form mainly inside stars, through the process of nuclear fusion.

The big bang theory predicts that in the early universe the temperature would have been sufficiently great for nuclear fusion to occur. It predicts that the universe should be composed of roughly 23% helium with the majority of the rest being hydrogen.[1] According to naturalistic scientists, this is consistent with the known values.[2]

References