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NISHIMURA, Chikako, MATSUDA, Jun-ichi, KURAT, Gero (2008) Noble gas content and isotope abundances in phases of the Saint-Aubin (UNGR) iron meteorite. Meteoritics & Planetary Science, 43 (8) 1333-1350 doi:10.1111/j.1945-5100.2008.tb00701.x

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Reference TypeJournal (article/letter/editorial)
TitleNoble gas content and isotope abundances in phases of the Saint-Aubin (UNGR) iron meteorite
JournalMeteoritics & Planetary Science
AuthorsNISHIMURA, ChikakoAuthor
MATSUDA, Jun-ichiAuthor
KURAT, GeroAuthor
Year2008 (August)Volume43
Page(s)1333-1350Issue8
PublisherWiley
DOIdoi:10.1111/j.1945-5100.2008.tb00701.xSearch in ResearchGate
Mindat Ref. ID333097Long-form Identifiermindat:1:5:333097:9
GUID01e7471c-267d-40ef-ae29-dac18906846e
Full ReferenceNISHIMURA, Chikako, MATSUDA, Jun-ichi, KURAT, Gero (2008) Noble gas content and isotope abundances in phases of the Saint-Aubin (UNGR) iron meteorite. Meteoritics & Planetary Science, 43 (8) 1333-1350 doi:10.1111/j.1945-5100.2008.tb00701.x
Plain TextNISHIMURA, Chikako, MATSUDA, Jun-ichi, KURAT, Gero (2008) Noble gas content and isotope abundances in phases of the Saint-Aubin (UNGR) iron meteorite. Meteoritics & Planetary Science, 43 (8) 1333-1350 doi:10.1111/j.1945-5100.2008.tb00701.x
In(2008, August) Meteoritics & Planetary Science Vol. 43 (8) Wiley

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

Ammon (2007) Meteoritics & Planetary Science The influence of mineral inclusions on the production rates of cosmogenic nuclides in Grant (IIIAB) and Carbo (IID) (abstract) 42, A13
Ammon K. Masarik J. Leya I. 2007 The relevance of noble gases in iron meteorites (abstract #1275)
Anders (1988) Meteorite and the early solar system , 927
Benkert (1993) Journal of Geophysical Research He, Ne, and Ar from the solar wind and solar energetic particles in lunar ilmenites and pyroxenes. 98, 147
Browne (1973) Physical Review Neutron capture cross sections for 128Te and 130Te and the xenon anomaly in old tellurium ores C8, 2405
Dransart (2003) Meteorite! Saint-Aubin: The new French meteorite 9, 40
Haag (1975) Meteoritics Neutron capture profiles in the Mundrabilla iron meteorite 10, 408
Heck Ph. R. Schmitz B. Baur H. Wieler R. 2005 Determination of production rates of cosmogenic He and Ne in meteoritic chromite grains (abstract #1712)
Jentsch (1996) Journal of the Royal Society of Western Australia Cosmogenic noble gases in silicate inclusions of iron meteorites: Effects of bulk composition on elemental production rates 79, 67
Jochum (1979) Zeitschrift fĂĽr Naturforschung On the distribution of major and trace elements between metal and phosphide phases of some iron meteorites 35a, 57
Koblitz J. 2003
Kurat (2003) Symposium, Evolution of Solar System Materials: A New Perspective from Antarctic Meteorites , 65
Kurat G. Sylvester P. Kong P. Brandstätter F. 2000 Heterogeneous and fractionated metal in Canyon Diablo (IA) graphite-metal rock (abstract #1666)
Kurat G. Varela M. E. Ametrano S. J. Brandstätter F. 2002 Major, minor and trace element abundances in metal and schreibersite of the San Juan mass of Campo del Cielo (IAB) (abstract #1781)
Kurat (2005) Meteoritics & Planetary Science Trace element abundances in St. Aubin (UNGR iron) giant chromite and associated phases (abstract) 40, A88
Marti K. Lugmair G. W. 1971 Kr 81 -Kr and K-Ar 40 ages, cosmic-ray spallation products, and neutron effects in lunar samples from Oceanus Procellarum 1591 1605
Nakamura T. Zolensky M. E. Hörz F. Takaoka N. Nagao K. 1997 Impact-induced loss of primordial noble gases from experimentally shocked Allende meteorite (abstract) 135 136
Ozima (2002) Noble gas geochemistry , 286
Russell (2003) Meteoritics & Planetary Science The Meteoritical Bulletin, No. 87 38, A209
Srinivasan (1975) Meteoritics Origin of noble gases in Allende, I. Host phases of fission xenon and other gases 10, 491
Ulff-Møller F. 1998 Solubility of chromium and oxygen in metallic liquids and the co-crystallization of chromite and metal in iron meteorite parent bodies (abstract #1969)


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