15.07.2014 Views

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

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

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

SHOW MORE
SHOW LESS

Create successful ePaper yourself

Turn your PDF publications into a flip-book with our unique Google optimized e-Paper software.

References 127<br />

a large differentiated asteroid. Meteorit. Planet. Sci. 36,<br />

869–881.<br />

Sears D. W. G. <strong>and</strong> Dodd R. T. (1988) Overview <strong>and</strong><br />

classification <strong>of</strong> meteorites. In Meteorites <strong>and</strong> Early Solar<br />

System (eds. J. F. Kerridge <strong>and</strong> M. S. Matthews). University<br />

<strong>of</strong> Arizona Press, Tucson, pp. 3–31.<br />

Sears D. W. G. <strong>and</strong> Weeks K. S. (1991) Chemical <strong>and</strong> physical<br />

studies <strong>of</strong> type 3 chondrites: 2. Thermoluminescence <strong>of</strong><br />

sixteen type 3 ordinary chondrites <strong>and</strong> relationships with<br />

oxygen isotopes. Proc. 14th Lunar Planet. Sci. Conf. Part 1:<br />

J. Geophys. Res. 88, B301–B311.<br />

Sears D. W. G., Grossman J. N., Melcher C. L., Ross L. M.,<br />

<strong>and</strong> Mills A. A. (1980) Measuring the metamorphic<br />

history <strong>of</strong> unequilibrated ordinary chondrites. Nature 287,<br />

791–795.<br />

Sears D. W. G., Kallemeyn G. W., <strong>and</strong> Wasson J. T. (1982)<br />

The compositional classification <strong>of</strong> chondrites: II. The<br />

enstatite chondrite groups. Geochim. Cosmochim. Acta 46,<br />

597–608.<br />

Sears D. W. G., Hasan F. A., Batchelor J. D., <strong>and</strong> Lu J. (1991)<br />

Chemical <strong>and</strong> physical studies <strong>of</strong> type 3 chondrites: XI.<br />

Metamorphism, pairing, <strong>and</strong> brecciation <strong>of</strong> ordinary chondrites.<br />

Proc. Lunar Planet. Sci. Conf. 21, 493–512.<br />

Simon S. B., Grossman L., Casanova I., Symes S., Benoit P.,<br />

Sears D. W. G., <strong>and</strong> Wacker J. F. (1995) Axtell, a new CV3<br />

chondrite find from Texas. Meteoritics 30, 42–46.<br />

Srinivasan B. <strong>and</strong> Anders E. (1977) Noble gases in the unique<br />

chondrite, Kakangari. Meteoritics 12, 417–424.<br />

Stöffler D., Keil K., <strong>and</strong> Scott E. R. D. (1991) Shock<br />

metamorphism in ordinary chondrites. Geochim. Cosmochim.<br />

Acta 55, 3845–3867.<br />

Stolper E. <strong>and</strong> McSween H. Y. Jr. (1979) Petrology <strong>and</strong> origin<br />

<strong>of</strong> the shergottite meteorites. Geochim. Cosmochim. Acta 43,<br />

1475–1498.<br />

Suess H. E., Wänke H., <strong>and</strong> Wlotzka F. (1964) On the origin <strong>of</strong><br />

gas-rich meteorites. Geochim. Cosmochim. Acta 28,<br />

595–607.<br />

Sugiura N. (1995) Isotopic composition <strong>of</strong> nitrogen in the PCA<br />

91002 R chondrite group. Proc. NIPR Symp. Antarct.<br />

Meteorit. 8, 273–285.<br />

Swindle T. D., Kring D. A., Burkl<strong>and</strong> M. K., Hill D. H., <strong>and</strong><br />

Boynton W. V. (1998) Noble gases, bulk chemistry, <strong>and</strong><br />

petrography <strong>of</strong> olivine-rich achondrites Eagles Nest <strong>and</strong><br />

Lewis Cliff 88763: comparison to brachinites. Meteorit.<br />

Planet Sci. 33, 31–48.<br />

Takeda H. (1979) A layered-crust model <strong>of</strong> a howardite parent<br />

body. Icarus 40, 455–470.<br />

Takeda H. (1997) Mineralogical records <strong>of</strong> early planetary<br />

processes on the howardite, eucrite, diogenite parent<br />

body with reference to Vesta. Meteorit. Planet. Sci. 32,<br />

841–853.<br />

Takeda H. <strong>and</strong> Graham A. L. (1991) Degree <strong>of</strong> equilibration <strong>of</strong><br />

eucritic pyroxenes <strong>and</strong> thermal metamorphism <strong>of</strong> the earliest<br />

planetary crust. Meteoritics 26, 129–134.<br />

Takeda H. <strong>and</strong> Mori H. (1985) The diogenite–eucrite links <strong>and</strong><br />

the crystallization history <strong>of</strong> a crust <strong>of</strong> their parent body.<br />

Proc. Lunar Planet. Sci. Conf. Part 2: J. Geophys. Res.<br />

90(suppl.), C626–C648.<br />

Takeda H., Mori H., Hiroi T., <strong>and</strong> Saito J. (1994) Mineralogy <strong>of</strong><br />

new Antarctic achondrites with affinity to Lodran <strong>and</strong> a<br />

model <strong>of</strong> their evolution in an asteroid. Meteoritics 29,<br />

830–842.<br />

Takeda H., Yugami K., Bogard D. D., <strong>and</strong> Miyamoto M. (1997)<br />

Plagioclase-augite-rich gabbro in the Caddo County IAB<br />

iron <strong>and</strong> the missing basalts associated with iron meteorites.<br />

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

Institute, Houston, pp. 1409–1410.<br />

Thomas K. L., Keller L. P., <strong>and</strong> McKay D. S. (1996) A<br />

comprehensive study <strong>of</strong> major, minor, <strong>and</strong> light element<br />

abundances in over 100 interplanetary dust particles. In<br />

Physics, Chemistry, <strong>and</strong> Dynamics <strong>of</strong> Interplanetary Dust,<br />

Astron. Soc. Pacific Conf. Ser. (eds. B. S. Gustafson <strong>and</strong><br />

M. S. Hanner). vol. 104, pp. 283–286.<br />

Tomeoka K. (1990) Mineralogy <strong>and</strong> petrology <strong>of</strong> Belgica-<br />

7904: a new kind <strong>of</strong> carbonaceous chondrite from Antarctica.<br />

Proc. NIPR Symp. Antarct. Meteorit. 3, 40–54.<br />

Tomeoka K. <strong>and</strong> Buseck P. R. (1982) Intergrown mica <strong>and</strong><br />

montmorillonite in the Allende carbonaceous chondrite.<br />

Nature 299, 326–327.<br />

Tomeoka K. <strong>and</strong> Buseck P. R. (1990) Phyllosilicates in the<br />

Mokoia CV carbonaceous chondrite: evidence for aqueous<br />

alteration in an oxidizing condition. Geochim. Cosmochim.<br />

Acta 54, 1745–1754.<br />

Tomeoka K., Kojima H., <strong>and</strong> Yanai K. (1989) Yamato-86720: a<br />

CM carbonaceous chondrite having experienced extensive<br />

aqueous alteration <strong>and</strong> thermal metamorphism. Proc. NIPR<br />

Symp. Antarct. Meteorit. 2, 55–74.<br />

Tomeoka K., Nomura K., <strong>and</strong> Takeda H. (1992) Na-bearing<br />

Ca–Al-rich inclusions in the Yamato-791717 CO carbonaceous<br />

chondrite. Meteoritics 27, 136–143.<br />

Treiman A. H. (1986) The parental magma <strong>of</strong> the Nakhla<br />

achondirte: ultrabasic volcanism on the shergottite parent<br />

body. Geochim. Cosmochim. Acta 50, 1061–1070.<br />

Treiman A. H. (1990) Complex petrogenesis <strong>of</strong> the<br />

Nakhla (SNC) meteorite: evidence from petrography <strong>and</strong><br />

mineral chemistry. Proc. Lunar Planet. Sci. Conf. 20,<br />

273–280.<br />

Treiman A. H. (1993) The parent magma <strong>of</strong> the Nakhla (SNC)<br />

meteorite, inferred from magmatic inclusions. Geochim.<br />

Cosmochim. Acta 57, 4753–4767.<br />

Treiman A. H., McKay G. A., Bogard D. D., Mittlefehldt D. W.,<br />

Wang M.-S., Keller L., Lipschutz M. E., Lindstrom M. M.,<br />

<strong>and</strong> Garrison D. (1994) Comparison <strong>of</strong> the LEW88516 <strong>and</strong><br />

ALH770<strong>05</strong> meteorites: similar but distinct. Meteoritics 29,<br />

581–592.<br />

Treiman A. H., Gleason J. D., <strong>and</strong> Bogard D. D. (2000) The<br />

SNC meteorites are from Mars. Planet. Space Sci. 48,<br />

1213–1230.<br />

Ulff-Møller F., Rasnussen K. L., Prinz M., Palme H., Spettel<br />

B., <strong>and</strong> Kallemeyn G. W. (1995) Magmatic activity on the<br />

IVA parent body: evidence from silicate-bearing iron<br />

meteorites. Geochim. Cosmochim. Acta 59, 4713–4728.<br />

Van Schmus W. R. <strong>and</strong> Wood J. A. (1967) A chemicalpetrologic<br />

classification for the chondritic meteorites.<br />

Geochim. Cosmochim. Acta 31, 747–765.<br />

Walker D., Powell M. A., L<strong>of</strong>gren G. E., <strong>and</strong> Hays J. F. (1978)<br />

Dynamic crystallization <strong>of</strong> a eucrite basalt. Proc. 9th Lunar<br />

Planet. Sci. Conf. 1369–1391.<br />

Wai C. M. <strong>and</strong> Wasson J. T. (1979) Nebular condensation <strong>of</strong><br />

Ga, Ge <strong>and</strong> Sb <strong>and</strong> chemical classification <strong>of</strong> iron meteorites.<br />

Nature, 282, 790–793.<br />

Warren P. H. <strong>and</strong> Kallemeyn G. W. (1989) Allan Hills 84025:<br />

the second Brachinite, far more differentiated than<br />

Brachina <strong>and</strong> an ultramafic achondritic clasts from L<br />

chondrite Yamato 95097. Proc. Lunar Planet Sci. Conf.<br />

19, 475–486.<br />

Warren P. H. <strong>and</strong> Kallemeyn G. W. (1992) Explosive<br />

volcanism <strong>and</strong> the graphite-oxygen fucacity buffer on the<br />

parent asteroid(s) <strong>of</strong> the ureilite meteorites. Icarus 100,<br />

110–126.<br />

Warren P. H., Taylor J. G., <strong>and</strong> Keil K. (1983) Regolith breccia<br />

Allan Hills A810<strong>05</strong>: evidence <strong>of</strong> lunar origin, <strong>and</strong> petrography<br />

<strong>of</strong> pristine <strong>and</strong> nonpristine clasts. Geophys. Res. Lett.<br />

10, 779–782.<br />

Wasson J. T. (1990) Ungrouped iron meteorites in Antarctica:<br />

Origin <strong>of</strong> anomalously high abundance. Science 249,<br />

900–902.<br />

Wasson J. T. <strong>and</strong> Kallemeyn G. W. (1988) Composition <strong>of</strong><br />

chondrites. Phil. Trans. Roy. Soc. London A325,<br />

535–544.<br />

Wasson J. T. <strong>and</strong> Kallemeyn G. W. (1990) Allan Hills 85085: a<br />

subchondritic meteorite <strong>of</strong> mixed nebular <strong>and</strong> regolithic<br />

heritage. <strong>Earth</strong> Planet. Sci. Lett. 101, 148–161.<br />

Wasson J. T., Rubin A. E., <strong>and</strong> Kallemeyn G. W. (1993)<br />

Reduction during metamorphism <strong>of</strong> four ordinary chondrites.<br />

Geochim. Cosmochim. Acta 57, 1867–1869.

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!