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26 bytes added ,  12:28, September 9, 2016
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[[Image:310px-Beta Negative Decay svg.png|right|thumb|300px|The [[Feynmann diagram]] of a neutron decaying ([[beta decay|beta minus decay]])]]
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[[Image:310px-Beta Negative Decay svg.png|right|thumb|300px|The Feynmann diagram of a neutron decaying ([[beta decay|beta minus decay]])]]
 
A '''neutron''' is the neutral particle in an [[atom]]'s [[nucleus]]. It is a [[baryon]], comprised of two down [[quark]]s and an up [[quark]]. It keeps the positive protons in the nucleus from being pushed apart from each other by their like charges. A lack or excess of neutrons causes an atom to become unstable; [[beta decay|beta radiation]] is the conversion of a neutron into a [[proton]] which emits an [[electron]] and an [[anti-electron neutrino]]. Although neutrons comprise a large part of all matter, they are inherently unstable if not bound to a nucleus, and undergoes beta minus decay in a brief period of time, with a half life of about 15 minutes.<ref>https://www.nist.gov/news-events/news/2014/02/toward-new-precision-measuring-neutron-lifetime</ref>
 
A '''neutron''' is the neutral particle in an [[atom]]'s [[nucleus]]. It is a [[baryon]], comprised of two down [[quark]]s and an up [[quark]]. It keeps the positive protons in the nucleus from being pushed apart from each other by their like charges. A lack or excess of neutrons causes an atom to become unstable; [[beta decay|beta radiation]] is the conversion of a neutron into a [[proton]] which emits an [[electron]] and an [[anti-electron neutrino]]. Although neutrons comprise a large part of all matter, they are inherently unstable if not bound to a nucleus, and undergoes beta minus decay in a brief period of time, with a half life of about 15 minutes.<ref>https://www.nist.gov/news-events/news/2014/02/toward-new-precision-measuring-neutron-lifetime</ref>
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[[Category:Physics]]
 
[[Category:Physics]]
 
[[Category:Chemistry]]
 
[[Category:Chemistry]]
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[[Category:Particle physics]]
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