Geology Reference
In-Depth Information
Gladman, B. J., J. A. Burns, M. J. Duncan, and H. F. Levison
(1995), The dynamical evolution of lunar impact ejecta,
Icarus, 118 , 302-321.
Gnos, E., B. A. Hofmann, A. Al-Kathiri, S. Lorenzetti, O.
Eugster, M. J. Whitehouse, I. M. Villa, A. J. T. Jull, J.
Eikenberg, B. Spettel, U. Krähenbühl, I. A. Franchi, and R.
C. Greenwood (2004), Pinpointing the source of a lunar
meteorite: Implications for the evolution of the Moon,
Science, 305 , 657-660.
Gooding, J. L. (1981), Mineralogical aspects of terrestrial
weathering effects in chondrites from Allan Hills, Antarctica.
Proc.12th Lunar Planet. Sci. Conf., 1105-1122.
Grady, M. M., E. K. Gibson Jr., I. P. Wright, and C. T. Pillinger
(1989), The formation of weathering products on the LEW
85320 ordinary chondrite: Evidence from carbon and oxygen
stable isotope compositions and implications for carbonates
in SNC meteorites, Meteoritics, 24 , 1-7 .
Graf, T., and K. Marti (1995), Collisional history of H chon-
drites, J. Geophys. Res. (Planets), 100 , 21,247-21,263.
Harvey, R. P., J. Schutt, and J. Karner (2014), Fieldwork
methods of the U.S. Antarctic Search for Meteorites program,
in 35 Seasons of U. S. Antarctic Meteorites (1976-2010): A
Pictorial Guide to  the Collection, Special Publication 68,
edited by K. Righter, C. M. Corrigan, R. P. Harvey, and T. J.
McCoy, American Geophysical Union/John Wiley & Sons,
Washington, D. C.
Hasan, F. A., M. Haq, and D. W. G. Sears (1987), The natural
thermoluminescence of meteorites: I. Twenty-three Antarctic
meteorites of known 26 Al content, Proc. 17th Lunar Planet.
Sci. Conf., Part 2, J. Geophys. Res., 92 , E703-E709.
Heck, P. R., B. Schmitz, H. Baur, A. N. Halliday, and R. Wieler
(2004), Fast delivery of meteorites to Earth after a major
asteroid collision, Nature, 430 , 323-325.
Herzog, G. F., and M. W. Caffee (2014), 1.13 Cosmic-ray
exposure ages of meteorites, in Treatise on Geochemistry, 2nd
ed, vol.  1, edited by H. D. Holland and K. K. Turekian,
Elsevier, Oxford, UK (pp. 419-453).
Hey, M. H. (1966), Catalogue of Meteorites . Trustees of the
British Museum (Natural History), London.
Hidaka, H., S. Yoneda, and K. Nishiizumi (2009), Cosmic-ray
exposure histories of martian meteorites studied from
neutron capture reactions of Sm and Gd isotopes, Earth
Planet. Sci. Lett., 288 , 564-571.
Höfle, H. C. 1989. The glacial history of the Outback Nunataks
Area in western North Victoria Land, Geol. Jahrb , E38 ,
335-355.
Jull, A. J. T. (2000), Terrestrial ages of meteorites, in Accretion
of Extraterrestrial Matter throughout Earth's History , edited
by B. Peuker-Ehrenbrink and B. Schmitz, Kluwer Academic/
Plenum, New York (pp. 241-266).
Jull, A. J. T. (2006), Terrestrial ages of meteorites, in Meteorites
and the Early Solar System II, edited by D. S. Lauretta and H.
Y. McSween Jr., University of Arizona Press, Tucson (pp.
889-905).
Jull, A. J. T., and D. J. Donahue (1988), Terrestrial 14 C age of
the Antarctic shergottite, EETA 79001, Science, 242 ,
417-419.
Jull, A. J. T., and D. J. Donahue (1992), 14 C Terrestrial ages of
two lunar meteorites, ALHA81005 and EET 87521, Lunar
Planet. Sci., 23 , 637-638.
Jull, A. J. T., S. Cheng, J. L. Gooding, and M. H. Velbel (1988),
Isotopic composition and mineralogy of weathering product
carbonates from the Antarctic meteorite LEW 85320,
Science, 242 , 417-419.
Jull, A. J. T., Y. Miura, E. Cielaszyk, D. J. Donahue, and
K. Yanai (1993), AMS 14 C ages of Yamato achondritic
meteorites, Proc. NIPR Symp. Antarctic Meteorites, 6 ,
374-380.
Jull, A. J. T., D. J. Donahue, R. C. Reedy, and J. Masarik (1994),
A carbon-14 depth profile in the L5 chondrite Knyahinya,
Meteoritics, 29 , 649-651.
Jull, A. J. T., S. Cloudt, and E. Cielaszyk (1998a), 14 C terrestrial
ages of meteorites from Victoria Land, Antarctica and the
infall rate of meteorites, in Meteorites: Flux with time and
impact effects, edited by G. J. McCall, R. Hutchison, M. M.
Grady, and D. Rothery, Geological Society of London
Special Publication 140 (pp. 75-91).
Jull, A. J. T., C. Courtney, D. A. Jeffrey, and J. W. Beck (1998b),
Isotopic evidence for a terrestrial source of organic com-
pounds found in martian meteorites ALH 84001 and EETA
79001, Science, 279 , 366-369.
Kigoshi, K., and E. Matsuda (1986), Radiocarbon datings of
Yamato meteorites. Lunar and Planetary Inst. International
Workshop on Antarctic Meteorites , 58-60.
Koeberl, C., and W. A. Cassidy (1991), Differences between
Antarctic and non-Antarctic meteorites: An assessment,
Geochim. Cosmochim. Acta, 55 , 3-18.
Kojima, H. (2006), The history of meteoritics and key meteorite
collections: Fireballs, falls and finds. Geological Society
Special Publications No. 256, Geological Society,
Brassmill Lane, Bath, UK, 291-304.
Korschinek, G., Bergmaier A., Faestermann T., Gerstmann U.
C., Knie K., Rugel G., Wallner A., Dillmann I., Dollinger G.,
Lierse von Gostomski Ch., Kossert K., Maiti M., Poutivtsev M.,
and Remmert A. (2010), A new value for the half-life of
10 Be  by heavy-ion elastic recoil detection and liquid scintil-
lation counting, Nuclear Instruments & Methods in Physical
Research, B268 , 187-191.
Kring, D. A., A. J. T. Jull, L. R. McHargue, P. A. Bland, D. H.
Hill, and F. J. Berry (2001), Gold Basin meteorite strewn
field, Mojave Desert, northwestern Arizona: Relic of a small
late Pleistocene impact event, Meteoritics Planet. Sci., 36 ,
1057-1066.
Lavielle, B., K. Marti, J.-P. Jeannot, K. Nishiizumi, and M.
Caffee (1999), The 36 Cl- 36 Ar- 40 K- 41 K records and cosmic ray
production rates in iron meteorites, Earth Planet. Sci. Lett.,
170 , 93-104.
Lee, M. R., and P. A. Bland (2004), Mechanisms of weathering
of meteorites recovered from hot and cold deserts and the
formation of phyllosilicates, Geochim. Cosmochim. Acta, 68 ,
893-916.
Lian, O. B. (2007), Luminescence Dating: Thermoluminescence,
in Encyclopedia of Quaternary Science , edited by S. Elias,
Elsevier, Amsterdam (pp. 1480-1491).
Search WWH ::




Custom Search