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Natural abundance
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==Deviations from natural abundance== It is now known from study of the Sun and primitive meteorites that the [[Solar System]] was initially almost homogeneous in isotopic composition. Deviations from the (evolving) galactic average, locally sampled around the time that the Sun's nuclear burning began, can generally be accounted for by mass fractionation (see the article on [[mass-independent fractionation]]) plus a limited number of nuclear decay and transmutation processes.<ref>{{cite journal |first=Robert N. |last=Clayton |date=1978 |title=Isotopic anomalies in the early solar system |journal=[[Annual Review of Nuclear and Particle Science]] |volume=28 |pages=501β522 |doi=10.1146/annurev.ns.28.120178.002441 |doi-access= |bibcode=1978ARNPS..28..501C}}</ref> There is also evidence for injection of short-lived (now-extinct) isotopes from a nearby supernova explosion that may have triggered solar nebula collapse.<ref>{{cite journal |last=Zinner |first=Ernst |title=An isotopic view of the early solar system |journal=Science |date=2003 |volume=300 |issue=5617 |pages=265β267 |doi=10.1126/science.1080300 |pmid=12690180 |s2cid=118638578 |url=https://www.science.org/doi/abs/10.1126/science.1080300|url-access=subscription }}</ref> Hence deviations from natural abundance on Earth are often measured in parts per thousand ([[per mille]] or β°) because they are less than one percent (%). An exception to this lies with the [[presolar grains]] found in primitive meteorites. These small grains condensed in the outflows of evolved ("dying") stars and escaped the mixing and homogenization processes in the interstellar medium and the solar accretion disk (also known as the solar nebula or protoplanetary disk).<ref name=anders/>{{clarify|This homogenization process at the stellar-disk level has not been described in the article|date=October 2019}} As stellar condensates ("stardust"), these grains carry the isotopic signatures of specific nucleosynthesis processes in which their elements were made.<ref>{{cite journal |first=Ernst |last=Zinner |date=1998 |title=Stellar nucleosynthesis and the isotopic composition of presolar grains from primitive meteorites |journal=[[Annual Review of Earth and Planetary Sciences]] |volume=26 |pages=147β188 |doi=10.1146/annurev.earth.26.1.147 |bibcode=1998AREPS..26..147Z}}</ref> In these materials, deviations from "natural abundance" are sometimes measured in factors of 100.{{citation needed|date=October 2019}}<ref name=anders>{{cite journal |last1=Anders |first1=Edward |last2=Zinner |first2=Ernst |title=Interstellar Grains in Primitive Meteorites: Diamond, Silicon Carbide, and Graphite |journal=Meteoritics |year=1993 |volume=28 |issue=4 |pages=490β514 |bibcode=1993Metic..28..490A |doi=10.1111/j.1945-5100.1993.tb00274.x |url=https://onlinelibrary.wiley.com/doi/abs/10.1111/j.1945-5100.1993.tb00274.x|url-access=subscription }}</ref>
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