Computer Science
Scientific paper
Mar 1993
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=1993metic..28..105s&link_type=abstract
Meteoritics (ISSN 0026-1114), vol. 28, no. 1, p. 105-113.
Computer Science
13
Chronology, Meteorites, Meteoritic Composition, Rubidium Isotopes, Strontium Isotopes, Chemical Analysis, Chemical Composition, Geochemistry, Meteorites, Eucrites, Stony Meteorites, Achondrites, Systematics, Model, Rubidium, Strontium, Isotopes, Isotopic Ratios, Cumulates, Origin, Data, Source, Parent Bodies, Angrites, Comparison, Isochrons, Catalog, Model, Composition, Statistical Analysis
Scientific paper
This paper surveys the experimental material on the Rb-Sr systematics of eucrites accumulated in the literature for the last two decades. Among the meteorites studied, those representatives have been chosen for which the absence of disturbances of isotope systems seems reliably fixed (according to evidence from Rb-Sr, Sm-Nd, and U-Pb isotope data). These data have been subjected to joint statistical treatment. For ordinary eucrites the age has been estimated as T = 4.548 +/- 0.058 Ga, and initial Sr isotope ratio, I(ord) = 0.698925 +/- 14. For cumulate eucrites, the initial Sr isotope ratio has been estimated as I(cum) = 0.698872 +/- 14. The substantial difference in initial Sr isotope composition suggests that those two eucrite groups originate from distinct parent bodies. Joint treatment of the available Rb-Sr data for angrites has been carried out for comparison, and the angrites initial Sr ratio has been estimated. On the basis of the estimates obtained formation intervals for the corresponding parent bodies have been calculated.
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