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・ Isochorismate synthase (PchA)
・ Isochorista
・ Isochorista acrodesma
・ Isochorista chaodes
・ Isochorista encotodes
・ Isochorista helota
・ Isochorista melanocrypta
・ Isochorista panaeolana
・ Isochorista parmiferana
・ Isochorista pumicosa
・ Isochorista ranulana
・ Isochorista sulcata
・ Isochromodes
・ Isochromosome
・ Isochron
Isochron dating
・ Isochrone
・ Isochrone map
・ Isochronic tones
・ Isochronous
・ Isochronous (band)
・ Isochronous burst transmission
・ Isochronous media access controller
・ Isochronous signal
・ Isochrony
・ Isochrysidales
・ Isochrysis
・ Isochrysis galbana
・ Isocitrate dehydrogenase
・ Isocitrate dehydrogenase (NADP+) kinase


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Isochron dating : ウィキペディア英語版
Isochron dating

Isochron dating is a common technique of radiometric dating and is applied to date certain events, such as crystallization, metamorphism, shock events, and differentiation of precursor melts, in the history of rocks. Isochron dating can be further separated into ''mineral isochron dating'' and ''whole rock isochron dating''; both techniques are applied frequently to date terrestrial and also extraterrestrial rocks (meteorites). The advantage of isochron dating as compared to simple radiometric dating techniques is that no assumptions are needed about the initial amount of the daughter nuclide in the radioactive decay sequence. Indeed, the initial amount of the daughter product can be determined using isochron dating. This technique can be applied if the daughter element has at least one stable isotope other than the daughter isotope into which the parent nuclide decays.
==Basis for method==

All forms of isochron dating assume that the source of the rock or rocks contained unknown amounts of both radiogenic and non-radiogenic isotopes of the daughter element, along with some amount of the parent nuclide. Thus, at the moment of crystallization, the ratio of the concentration of the radiogenic isotope of the daughter element to that of the non-radiogenic isotope is some value independent of the concentration of the parent. As time goes on, some amount of the parent decays into the radiogenic isotope of the daughter, increasing the ratio of the concentration of the radiogenic isotope to that of the daughter. The greater the initial concentration of the parent, the greater the concentration of the radiogenic daughter isotope will be at some particular time. Thus, the ratio of the daughter to non-radiogenic isotope will become larger with time, while the ratio of parent to daughter will become smaller. For rocks that start out with a small concentration of the parent, the daughter/non-radiogenic ratio will not change quickly as compared to rocks starting with a large concentration of the parent.

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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