Geology Reference
In-Depth Information
Lunar highland meteorites and the composition of the lunar
crust, Geochim. Cosmochim. Acta , 55 , 3105-3122.
Paniello, R. C., J. M. D. Day, and, F. Moynier (2012), Zinc
isotopic evidence for the origin of the Moon, Nature , 490 ,
376-379.
Pieters, C. M., B. R. Hawke, M. Gaffey, and L. A. McFadden
(1983), Possible lunar source areas of meteorite ALH81005:
Geochemical remote sensing information, Geophys. Res.
Lett. , 10 , 813-816.
Polnau, E., and Eugster O. (1998), Cosmic-ray produced, radio-
genic, and solar noble gases in lunar meteorites Queen
Alexandra Range 94269 and 94281, Meteorit. Planet. Sci. ,
33 , 313-319.
Rankenburg, K., A. D. Brandon, and C. R. Neal (2006),
Neodymium isotope evidence for a chondritic composition
of the Moon, Science , 312 , 1369-1372.
Rankenburg, K., A. D. Brandon, and M. D. Norman (2007), A
RbSr and SmNd isotope geochronology and trace element
study of lunar meteorite LaPaz Icefield 02205, Geochim.
Cosmochim. Acta , 71 , 2120-2135.
Righter, K., S. J. Collins, and A. D. Brandon (2005), Mineralogy
and petrology of the LaPaz Icefield lunar mare basaltic mete-
orites, Meteorit. Planet. Sci. , 40 , 1703-1722.
Robinson, K. L., and A. H. Treiman (2010), Mare basalt frag-
ments in lunar highlands meteorites: Connecting measured
Ti abundances with orbital remote sensing, Lunar Planet.
Sci. , XLI , abstract 1788.
Ryder, G., and R. Ostertag (1983), Allan Hills 81005: Moon,
Mars, petrography, and Giordano Bruno, Geophys. Res. Lett. ,
10 , 791-794.
Ryder, G., and J. A. Wood (1977), Serenitatis and Imbrium
impact melts: Implication for large-scale layering in the lunar
crust, Proc. 8th Lunar Sci. Conf. , 655-668.
Satterwhite, C., and Righter K., editors (2007), Antarctic
Meteorite Newsletter, 30 (2). Houston, TX, NASA Johnson
Space Center.
Satterwhite, C., and Righter K., editors (2010), Antarctic
Meteorite Newsletter, 33 (2). Houston, TX: NASA Johnson
Space Center.
Shearer, C. K., and J. J. Papike (1993), Basaltic magmatism on
the Moon: A perspective from volcanic picritic glass beads,
Geochim. Cosmochim. Acta , 57 , 4785-4812.
Shirai, N., M. Ebihara, S. Sekimoto, A Yamaguchi., L. Nyquist,
C.-Y. Shih, J. Park, and K. Nagao (2012), Geochemistry of
lunar highland meteorites MIL 090034, 090036 and 090070,
Lunar Planet. Sci. , XLIII , abstract 2003.
Shoemaker, E. M., R. J. Hackman, and R. E. Eggleton (1963),
Interplanetary correlation of geologic time. Advances in
Astronautical Sciences , 8 , 70-89.
Simon, S. B., J. J. Papike, and C. K. Shearer (1983), Petrology of
ALH81005, the first lunar meteorite, Geophys. Res. Lett. , 10 ,
787-790.
Snyder, G. A., C. R. Neal, A. M. Ruzicka, and L. A. Taylor
(1999), Lunar meteorite EET 96008, Part II. Whole-rock
trace-element and PGE chemistry, and pairing with EET
87521, Lunar Planet. Sci. , XXX , abstract 1705.
Spettel, B., G. Dreibus, A. Burghele, K. P Jochum., L. Schultz,
H. W. Weber, F. Wlotzka, and H. Wänke (1995), Chemistry,
petrology, and noble gases of lunar highland meteorite Queen
Alexandra Range 93069, Meteoritics , 30 , 581-582.
Spicuzza, M. J., J. M. D. Day, L. A. Taylor, and J. W. Valley (2007),
Oxygen isotope constraints on the origin and differentiation of
the Moon, Earth Planet. Sci. Lett. , 253 , 254-265.
Spudis, P. D. (1984), Apollo 16 site geology and impact melts:
Implications for the geologic history of the lunar highlands,
Proc. 15th Lunar Planet. Sci. Conf ., in J. Geophys. Res. , 89 ,
C95-C107.
Stöffler, D., H.-D. Knöll, U. B. Marvin, C. H. Simonds, and
P.  H. Warren (1980), Recommended classification and
nomenclature of lunar highlands rocks: A committee report,
in Proc. Conf. Lunar Highlands Crust , edited by J. J. Papike
and R. B. Merrill, pp. 51-70, Pergamon Press, New York.
Stöffler, D. and R. A. F. Grieve (2007), Impactites, Chapter 2.11,
in Metamorphic Rocks: A Classification and Glossary of
Terms , edited by D. Fettes and J. Desmons, pp. 82-92, 111-
125, and 126-242, Cambridge Univ. Press, Cambridge, UK.
Sugihara, T., M Ohtake., A. Owada, T. Ishii, M. Otsuki, and
H. Takeda (2004), Petrology and reflectance spectroscopy of
lunar meteorite Yamato 981031: Implications for the source
region of the meteorite and remote-sensing spectroscopy,
Antarctic Meteorite Research 17 , 209-230.
Takeda, H., H. Mori, J. Saito, and M. Miyamoto (1991),
Mineral-chemical comparisons of MAC88105 with Yamato
lunar meteorites, Geochim. Cosmochim. Acta , 55 , 3009-3018.
Takeda, H., H. Mori, J. Saito, and M. Miyamoto (1992),
Mineralogical studies of lunar mare meteorites EET87521
and Y793274, Proc. Lunar Planet. Sci. , Vol. 22 , 275-301.
Taylor, G. J. (1991), Impact melts in the MAC88105 lunar mete-
orite: Inferences for the lunar magma ocean hypothesis and
the diversity of basaltic impact melts, Geochim. Cosmochim.
Acta , 55 , 3031-3036.
Taylor, L. A., M. Anand, C. Neal, A Patchen., and G. Kramer
(2004), Lunar meteorite PCA 02007: A feldspathic regolith
breccia with mixed mare/highland components, Lunar Planet.
Sci. , XXXV , abstract 1755.
Taylor, S. R. (1982), Planetary Science: A Lunar Perspective ,
Lunar and Planetary Institute, Houston, Tex.
Terada, K., T. Saiki, Y. Oka, Y. Hayasaka, and Y. Sano (2005),
Ion microprobe U-Pb dating of phosphates in lunar basaltic
breccia, Elephant Moraine 87521, Geophys. Res. Lett. , 32 ,
L20202, doi 10.1029/2005GL023909.
Terada, K., Y. Sasaki, and Y. Sano (2006), Ion microprobe
U-Pb dating of phosphates in very-low-Ti basaltic breccia,
Meteorit. Planet. Sci. , 41 , abstract 5129.
Terada, K., Y. Sasaki, M. Anand, K. H. Joy, and Sano Y. (2007),
Uranium-lead systematics of phosphates in lunar basaltic
regolith breccia, Meteorite Hills 01210, Earth Planet. Sci.
Lett. , doi:10.1016/j.epsl.2007.04.029.
Thaisen, K. G., and L. A. Taylor (2009), Meteorite fusion crust
variability, Meteorit. Planet. Sci. , 44 , 871-878.
Thalmann, C., O. Eugster, G. F. Herzog, J. Klein, U. Krähenbühl,
S. Vogt, and S. Xue (1996), History of lunar meteorites Queen
Search WWH ::




Custom Search