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- W2289562779 abstract "Significance The origin of chondrules—millimeter-sized silicate-rich spherules that dominate the most primitive meteorites, the chondrites—is a long-standing puzzle in cosmochemistry. Here, we present isotopic evidence that chondrules and matrix from the Allende chondrite contain different and complementary proportions of presolar matter, indicating that chondrules and matrix formed together from a single reservoir of solar nebula dust. This finding rules out formation of chondrules in protoplanetary impacts and demonstrates that chondrules are the product of localized melting events in the solar protoplanetary disk. Moreover, the isotopic complementarity of chondrules and matrix requires that chondrules formed in a narrow time interval and were rapidly accreted to a parent body, implying that chondrule formation was a critical step toward forming planetesimals." @default.
- W2289562779 created "2016-06-24" @default.
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- W2289562779 date "2016-02-29" @default.
- W2289562779 modified "2023-10-16" @default.
- W2289562779 title "Tungsten isotopic constraints on the age and origin of chondrules" @default.
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- W2289562779 doi "https://doi.org/10.1073/pnas.1524980113" @default.
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