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Mineralogy and petrology of two ordinary chondrites and their correlation with other meteorites

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May 04, 2010

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Connolly C. H., Zipfel J., Folco L., Smith C., Jones R. H., Benedix G., Righter K., Yamaguchi A., Aoudjehane H. Ch., Grossman J. N. (2007). The Meteoritical Bulletin No. 91, Meteoritics & Planetary Science, 42, 413-466. Retrieved from the Meteoritical Bulletin Database http://tin.er.usgs.gov/meteor/docs/mb92.pdf http://tin.er.usgs.gov/meteor/docs/mb92.pdfSearch in Google Scholar

Grossman J. N., & Zipfel J. (2001). The Meteoritical Bulletin No. 85, Meteoritics & Planetary Science, 36, 293-322. Retrieved from the Meteoritical Bulletin Database http://tin.er.usgs.gov/meteor/docs/mb85.pdf http://tin.er.usgs.gov/meteor/docs/mb85.pdfSearch in Google Scholar

Lindsley D. H. (1983). Pyroxene thermometry. American Mineralogist, 68, 477-493.Search in Google Scholar

Putirka K. D. (2005). Mantle potential temperatures at Hawaii, Iceland and mid-ocean ridges systems, as inferred from olivine phenocrysts: evidence for thermally driven mantle plumes. Geochemical and Geological Geosystems, 6, 1-14. DOI: 10.1029/2005GC00091510.1029/2005GC000915Search in Google Scholar

Stöffler D., Keil K., Scott E. R. D. (1991). Shock metamorphism of ordinary chondrites. Geochimica et Cosmochimica Acta, 55, 3845-3867. DOI:10.1016/S0016-7037(99)00149-010.1016/S0016-7037(99)00149-0Search in Google Scholar

Van Schmus W. R., & Wood J. A. (1967). A chemical-petrologic classification for the chondritic meteorites. Geochimica et Cosmochimica Acta, 31, 47-765. DOI: 10.1016/S0016-7037(67)80030-910.1016/S0016-7037(67)80030-9Search in Google Scholar

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Geosciences, Geophysics, Geosciences, other