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    Precursors of Mars: Constraints from nitrogen and oxygen isotopic compositions of martian meteorites

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    Author
    Mohapatra, R. K.
    Murty, S. V. S.
    Issue Date
    2003-01-01
    Keywords
    noble gases
    Complex exposure
    nuclear tracks
    Devgaon chondrite
    
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    Citation
    Mohapatra, R. K., & Murty, S. V. S. (2003). Precursors of Mars: Constraints from nitrogen and oxygen isotopic compositions of martian meteorites. Meteoritics & Planetary Science, 38(2), 225-241.
    Publisher
    The Meteoritical Society
    Journal
    Meteoritics & Planetary Science
    URI
    http://hdl.handle.net/10150/655655
    DOI
    10.1111/j.1945-5100.2003.tb00261.x
    Additional Links
    https://meteoritical.org/
    Abstract
    We present an approach to assess the nature of materials involved in the accretion of Mars by the planets nitrogen (delta-15N) and oxygen (Delta-17O) isotopic compositions as derived from data on martian meteorites. delta-15N for Mars has been derived from nitrogen and xenon systematics, while Delta-17O has been taken from the literature data. These signatures indicate that Mars has most probably accreted from enstatite and ordinary chondritic materials in a ratio of 74:26 and may not have a significant contribution from the carbonaceous (CI, CM, or CV) chondrites. This is consistent with the chromium isotopic (Eta-53Cr) signatures of martian meteorites and the bulk planet Fe/Si ratio for Mars as suggested by the moment of inertia factor (I/MR2) obtained from the Mars Pathfinder data. Further, a simple homogeneous accretion from the above two types of materials is found to be consistent with the planets moment of inertia factor and the bulk composition of the mantle. But, it requires a core with 6.7 wt% Si, which is consistent with the new results from the high pressure and temperature melting experiments and chemical data on the opaque minerals in enstatite chondrites.
    Type
    Article
    text
    Language
    en
    ISSN
    1945-5100
    ae974a485f413a2113503eed53cd6c53
    10.1111/j.1945-5100.2003.tb00261.x
    Scopus Count
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    Meteoritics & Planetary Science, Volume 38, Number 2 (2003)

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