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Leaching-induced Li isotope variations in weathered ordinary chondrites: Implications for terrestrial alteration
Data Availability Statement The data that support the findings of this study are available from the corresponding author upon reasonable request. Supporting Information Filename Description maps70171-sup-0001-Table S1.xlsxExcel 2007 spreadsheet , 14.2 KB Table S1. Trace element concentrations in ultrapure water and HOAc leachates from static soaking and stepwise dynamic percolation experiments. REFERENCES , , , , and 1999.
Martian differentiation history inferred from copper isotopes - Nature Communications
Abstract Sulfide segregation plays an important role in redistributing chalcophile elements during planetary differentiation, yet its efficiency on Mars remains poorly constrained. Here, we report the Cu isotopic evidence for planetary-scale sulfide segregation during martian differentiation. We find that the bulk silicate Mars exhibits a measurable enrichment in isotopically heavy Cu (δ65CuBSMa = −0.03 ± 0.08‰, 2 SD) compared with its chondritic precursors (δ65Cu = −0.30 ± 0.09‰).
Ni isotopic compositions in shocked ordinary chondrites: Insights into the influence of shock processes
High-energy impact events prevalent during planetary accretion in the solar system's evolution significantly shaped planetary bodies, though the effects of shock metamorphism on nickel (Ni) isotope fractionation remain unclear. To investigate the effect of the shock process on Ni isotopes, we selected three shocked ordinary chondrites (OCs) and obtained three sample pairs, each consisting of a melted region and its corresponding unmelted region.
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