Difference between revisions of "Tritium"
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Tritium is an [[isotope]] of [[hydrogen]], with a [[nucleus]] composed of a [[proton]] and two [[neutrons]]. It is very rare on [[Earth]], as it is only naturally produced by [[cosmic rays]]. Tritium is [[radioactive]] and decays into helium-3 by [[beta decay]], with a [[half-life]] of 4500 days <ref>http://nvl.nist.gov/pub/nistpubs/jres/105/4/j54luc2.pdf</ref>. It has applications in [[nuclear fusion]] because tritium can undergo fusion with [[deuterium]] to produce [[helium]] and large amounts of energy. | Tritium is an [[isotope]] of [[hydrogen]], with a [[nucleus]] composed of a [[proton]] and two [[neutrons]]. It is very rare on [[Earth]], as it is only naturally produced by [[cosmic rays]]. Tritium is [[radioactive]] and decays into helium-3 by [[beta decay]], with a [[half-life]] of 4500 days <ref>http://nvl.nist.gov/pub/nistpubs/jres/105/4/j54luc2.pdf</ref>. It has applications in [[nuclear fusion]] because tritium can undergo fusion with [[deuterium]] to produce [[helium]] and large amounts of energy. | ||
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Revision as of 00:47, December 13, 2009
Tritium is an isotope of hydrogen, with a nucleus composed of a proton and two neutrons. It is very rare on Earth, as it is only naturally produced by cosmic rays. Tritium is radioactive and decays into helium-3 by beta decay, with a half-life of 4500 days [1]. It has applications in nuclear fusion because tritium can undergo fusion with deuterium to produce helium and large amounts of energy.
References
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For the main article, see Chemistry.