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05 Classification of.. - Department of Earth and Planetary Sciences

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126<br />

<strong>Classification</strong> <strong>of</strong> Meteorites<br />

Reis-related <strong>and</strong> other clasts. In Lunar Planet. Sci. XVII.<br />

The Lunar <strong>and</strong> <strong>Planetary</strong> Institute, Houston, pp. 681–682.<br />

Prinz M., Weisberg M. K., Nehru C. E., <strong>and</strong> Delaney J. S.<br />

(1987) EET83309, a polymict ureilite: recognition <strong>of</strong> a new<br />

group. In Lunar Planet. Sci. XVIII. The Lunar <strong>and</strong> <strong>Planetary</strong><br />

Institute, Houston, pp. 802–803.<br />

Prinz M., Weisberg M. K., <strong>and</strong> Nehru C. E. (1988) Feldspathic<br />

components in polymict ureilites. In Lunar Planet. Sci. XIX.<br />

The Lunar <strong>and</strong> <strong>Planetary</strong> Institute, Houston, pp. 947–948.<br />

Prinz M., Chatterjee N., Weisberg M. K., Clayton R. N., <strong>and</strong><br />

Mayeda T. K. (1991a) Lea County 002: a second Kakangaritype<br />

chondrite. In Lunar Planet. Sci. XXII. The Lunar <strong>and</strong><br />

<strong>Planetary</strong> Institute, Houston, pp. 1097–1098.<br />

Prinz M., Chatterjee N., Weisberg M. K., Clayton R. N., <strong>and</strong><br />

Mayeda T. K. (1991b) Silicate inclusions in Antarctic irons.<br />

In Lunar Planet. Sci. XXII. The Lunar <strong>and</strong> <strong>Planetary</strong><br />

Institute, Houston, pp. 1101–1102.<br />

Prinz M., Weisberg M. K., Brearley A., Grady M. M., Pillinger<br />

C. T., Clayton R. N., <strong>and</strong> Mayeda T. K. (1992) LEW85332:<br />

a C2 chondrite in the CR clan. Meteoritics 27, 278–279.<br />

Pun A., Keil K., Taylor G. J., <strong>and</strong> Wieler R. (1998) The<br />

Kapoeta howardite: implications for the regolith evolution <strong>of</strong><br />

the howardite–eucrite–diogenite parent body. Meteorit.<br />

Planet. Sci. 33, 835–851.<br />

Rietmeijer F. J. M. (1992) Pregraphitic <strong>and</strong> poorly graphitised<br />

carbons in porous chondritic micrometeorites. Geochim.<br />

Cosmochim. Acta 56, 1665–1671.<br />

Rietmeijer F. J. M. (1994) A proposal for a petrological<br />

classification scheme <strong>of</strong> carbonaceous chondritic micrometeorites.<br />

In Analysis <strong>of</strong> Interplanetary Dust, AIP Conf.<br />

Proc. (eds. M. E. Zolensky, T. L. Wilson, F. J. M. Rietmeijer,<br />

<strong>and</strong> G. J. Flynn). American Institute <strong>of</strong> Physics, NY, vol.<br />

310, pp. 231–240.<br />

Rietmeijer F. J. M. (1998) Interplanetary dust particles. In<br />

<strong>Planetary</strong> Materials, Reviews in Mineralogy (ed. J. J.<br />

Papike). Mineralogical Society <strong>of</strong> America, Washington,<br />

DC, vol. 36, chap. 2, pp. 2-1–2-95.<br />

Rietmeijer F. J. M. (2002) The earliest chemical dust evolution<br />

in the solar nebula. Chemie der Erde 62, 1–45.<br />

Rietmeijer F. J. M. <strong>and</strong> Warren J. L. (1994) Windows <strong>of</strong><br />

opportunity in the NASA Johnson Space Center Cosmic<br />

Dust Collection. In Analysis <strong>of</strong> Interplanetary Dust, AIP<br />

Conf. Proc. (eds. M. E. Zolensky, T. L. Wilson, F. J. M.<br />

Rietmeijer, <strong>and</strong> G. J. Flynn). American Institute <strong>of</strong> Physics,<br />

NY, vol. 310, pp. 255–275.<br />

Rubin A. E. (1989) Size-frequency distributions <strong>of</strong> chondrules<br />

in CO 3 chondrites. Meteoritics 24, 179–189.<br />

Rubin A. E. (1990) Kamacite <strong>and</strong> olivine in ordinary<br />

chondrites: intergroup <strong>and</strong> intragroup relationships. Geochim.<br />

Cosmochim. Acta 54, 1217–1232.<br />

Rubin A. E. (1998) Correlated petrologic <strong>and</strong> geochemical<br />

characteristics <strong>of</strong> CO3 chondrites. Meteorit. Planet. Sci. 33,<br />

385–391.<br />

Rubin A. E. <strong>and</strong> Kallemeyn G. W. (1990) Lewis Cliff 85332: a<br />

unique carbonaceous chondrite. Meteoritics 25, 215–225.<br />

Rubin A. E. <strong>and</strong> Kallemeyn G. W. (1994) Pecora Escarpment<br />

91002: a member <strong>of</strong> the Rumuruti (R) chondrite group.<br />

Meteoritics 29, 255–264.<br />

Rubin A. E. <strong>and</strong> Scott E. R. D. (1997) Abee <strong>and</strong> related EH<br />

chondrite impact-melt breccias. Geochim. Cosmcohim. Acta<br />

61, 425–435.<br />

Rubin A. E., James J. A., Keck B. D., Weeks K. S., Sears D. W.<br />

G., <strong>and</strong> Jarosewich E. (1985) The Colony meteorite <strong>and</strong><br />

variations in CO3 chondrite properties. Meteoritics 20,<br />

175–197.<br />

Rubin A. E., Jerde E. A., Zong P., Wasson J. T., Westcott J. W.,<br />

Mayeda T. K., <strong>and</strong> Clayton R. N. (1986) Properties <strong>of</strong> the<br />

Guin ungrouped iron meteorite: the origin <strong>of</strong> Guin <strong>and</strong> <strong>of</strong><br />

group-IIE irons. <strong>Earth</strong> Planet. Sci. Lett. 76, 209–226.<br />

Rubin A. E., Fegley B., <strong>and</strong> Brett R. (1988a) Oxidation state in<br />

chondrites. In Meteorites <strong>and</strong> the Early Solar System (eds.<br />

J. F. Kerridge <strong>and</strong> M. S. Matthews). University <strong>of</strong> Arizona<br />

Press, Tucson, pp. 488–511.<br />

Rubin A. E., Wang D., Kallemeyn G. W., <strong>and</strong> Wasson J. T.<br />

(1988b) The Ningqiang meteorite; classification <strong>and</strong> petrology<br />

<strong>of</strong> an anomalous CV chondrite. Meteoritics 23, 13–23.<br />

Rubin A. E., Keil K., <strong>and</strong> Scott E. R. D. (1997) Shock<br />

metamorphism <strong>of</strong> enstatite chondrites. Geochim. Cosmochim.<br />

Acta 61, 847–858.<br />

Rubin A. E., Warren P. H., Greenwood J. P., Verish R. S.,<br />

Leshin L. A., Hervig R. L., Clayton R. N., <strong>and</strong> Mayeda T. K.<br />

(2000) Los Angeles: the most differentiated basaltic martian<br />

meteorite. Geology 28, 1011–1014.<br />

Rubin A. E., Kallemeyn G. W., Wasson J. T., Clayton R. N.,<br />

Mayeda T. K., Grady M. M., <strong>and</strong> Verchovsky A. B. (2001)<br />

Gujba: a new Bencubbin-like meteorite fall from Nigeria.<br />

In Lunar Planet. Sci. XXXII, #1779. The Lunar <strong>and</strong><br />

<strong>Planetary</strong> Institute, Houston (CD-ROM).<br />

Russell S. S. (1998) A survey <strong>of</strong> calcium–aluminum-rich<br />

inclusions from Rumuritiite chondrites: implications for<br />

relationships between meteorite groups. Meteorit. Planet.<br />

Sci. 33, A131–A132.<br />

Russell S. S., Huss G. R., Fahey A. J., Greenwood R. C.,<br />

Hutchison R., <strong>and</strong> Wasserburg G. J. (1998a) An isotopic<br />

<strong>and</strong> petrologic study <strong>of</strong> calcium–aluminum-rich<br />

inclusions from CO3 chondrites. Geochim. Cosmochim.<br />

Acta 62, 689–714.<br />

Russell S. S., McCoy T. J., Jarosewich E., <strong>and</strong> Ash R. D.<br />

(1998b) The Burnwell, Kentucky, low iron oxide chondrite<br />

fall: description, classification <strong>and</strong> origin. Meteorit. Planet.<br />

Sci. 33, 853–856.<br />

S<strong>and</strong>ford S. A. <strong>and</strong> Walker R. M. (1985) Laboratory infrared<br />

transmission spectra <strong>of</strong> individual interplanetary dust<br />

particles from 2.5 to 25 microns. Astrophys. J. 291,<br />

838–851.<br />

Schaudy R., Wasson J. T., <strong>and</strong> Buchwald V. F. (1972) The<br />

chemical classification <strong>of</strong> iron meteorites: VI. A reinvestigation<br />

<strong>of</strong> irons with Ge concentrations lower than 1 ppm.<br />

Icarus 17, 174–192.<br />

Schultz L., Palme H., Spettel B., Weber H. W., Wanke H.,<br />

Christophe Michel-Levy M., <strong>and</strong> Lorin J. C. (1982) Allan<br />

Hills A77081—an unusual stony meteorite. <strong>Earth</strong> Planet.<br />

Sci. Lett. 61, 23–31.<br />

Schulze H., Bisch<strong>of</strong>f A., Palme H., Spettel B., Dreibus G., <strong>and</strong><br />

Otto J. (1994) Mineralogy an chemistry <strong>of</strong> Rumuruti: the<br />

first meteorite fall <strong>of</strong> the new R chondrite group. Meteorit.<br />

Planet. Sci. 29, 275–286.<br />

Scott E. R. D. (1977) Geochemical relationship between<br />

some pallasites <strong>and</strong> iron meteorites. Mineral. Mag. 41,<br />

262–275.<br />

Scott E. R. D. (1979) Origin <strong>of</strong> anomalous iron meteorites.<br />

Mineral. Mag. 43, 415–421.<br />

Scott E. R. D. (1988) A new kind <strong>of</strong> primitive chondrite, Allan<br />

Hills 85085. <strong>Earth</strong> Planet. Sci. Lett. 91, 1–18.<br />

Scott E. R. D. <strong>and</strong> Jones R. H. (1990) Disentangling nebular<br />

<strong>and</strong> asteroidal features <strong>of</strong> CO3 carbonaceous chondrites.<br />

Geochim. Cosmochim. Acta 54, 2485–2502.<br />

Scott E. R. D. <strong>and</strong> Taylor G. J. (1985) Petrology <strong>of</strong> types 4–6<br />

carbonaceous chondrites. Proc. 15th Lunar Planet. Sci. Conf.<br />

Part 2: J. Geophys. Res. B90, C699–C709.<br />

Scott E. R. D. <strong>and</strong> Wasson J. T. (1975) <strong>Classification</strong> <strong>and</strong><br />

properties <strong>of</strong> iron meteorites. Rev. Geophys. Space Phys. 13,<br />

527–546.<br />

Scott E. R. D., Keil K., <strong>and</strong> Stöffler D. (1992) Shock<br />

metamorphism <strong>of</strong> carbonaceous chondrites. Geochim.<br />

Cosmochim. Acta 56, 4281–4293.<br />

Scott E. R. D., Taylor G. J., <strong>and</strong> Keil K. (1993) Origin <strong>of</strong><br />

ureilite meteorites <strong>and</strong> implications for planetary accretion.<br />

Geophys. Res. Lett. 20, 415–418.<br />

Scott E. R. D., Haack H., <strong>and</strong> McCoy T. J. (1996) Core<br />

crystallization <strong>and</strong> silicate-metal mixing in the parent body<br />

<strong>of</strong> the IVA iron <strong>and</strong> stony-iron meteorites. Geochim.<br />

Cosmochim. Acta 60, 1615–1631.<br />

Scott E. R. D., Haack H., <strong>and</strong> Love S. G. (2001) Formation<br />

<strong>of</strong> mesosiderites by fragmentation <strong>and</strong> reaccretion <strong>of</strong>

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