Geology Reference
In-Depth Information
47. LEW 88774—UREiLiTE (ANoMALoUS)
49. gRA 06128, 06129—UNgRoUPED
ACHoNDRiTE
[343] Chikami, J., T. Mikouchi, H. Takeda, and M. Miyamoto
(1997), Mineralogy and cooling history of the Ca-Al-Cr
enriched ureilite, LEW 88774, Meteoritics , 32 , 343-348.
[344] Downes, H., D. W. Mittlefehldt, N. T. Kita, and Valley,
J. W. (2008), Evidence from polymict ureilite meteorites
for a disrupted and re-accreted single ureilite parent
asteroid gardened by several distinct impactors, Geochim.
Cosmochim. Acta , 72 , 4825-4844.
[345] goodrich, C. A., g. E. Harlow, and T. Mikouchi (2007),
New investigations of “Knorringite-Uvarovite garnet”
and “Cr-Eskola Pyroxene” in ureilites LEW 88774 and
NWA 766, Lunar Planet. Sci. Conf. , 38 , 1434.
[346] guan, y., and g. Crozaz (2000), LREE-enrichments in
ureilites: A detailed ion microprobe study, Meteorit.
Planet. Sci. , 35 , 131-144.
[347] Mikouchi, T., J. Chikami, H. Takeda, and M. Miyamoto
(1995), Mineralogical study of LEW 88774, not so
unusual ureilite, Lunar Planet. Sci. Conf. , 26 , 971.
[348] Prinz, M., M. K. Weisberg, and C. E. Nehru (1994), LEW
88774: A new type of Cr-rich ureilite, Lunar Planet. Sci.
Conf. , 25 , 1107.
[349] Rankenburg, K., A. D. Brandon, and M. Humayun
(2007), osmium isotope systematics of ureilites, Geochim.
Cosmochim. Acta , 71 , 2402-2413.
[350] Warren, P. H., F. Ulff-Møller, H. Huber, and g. W.
Kallemeyn (2006), Siderophile geochemistry of ureilites:
A record of early stages of planetesimal core formation,
Geochim. Cosmochim. Acta , 70 , 2104-2126.
[351] Warren, P. H., H. Huber, and F. Ulff-Møller (2006),
Alkali-feldspathic material entrained in Fe,S-rich veins in
a monomict ureilite, Meteorit. Planet. Sci. , 41 , 835-849.
[352] Warren, P. H., and g. W. Kallemeyn (1994), Petrology of
LEW 88774: An extremely chromium-rich ureilite, Lunar
Planet. Sci. Conf. , 25 , 1465.
[353] Kallemeyn, g. W., and P. H. Warren (1994), geochemistry
of LEW 88774 and two other unusual ureilites, Lunar
Planet. Sci. Conf. , 25 , 663.
[358] Arai, T., T. Tomiyama, K. Saiki, H. Takeda (2008),
Unique achondrites gRA 06128/06129: Andesitic partial
melt from a volatile-rich parent body, Lunar Planet. Sci.
Conf. , 39 , LPi Contribution No. 1391, 2465.
[359] Arculus, R., i. H. Campbell, S. M. McLennan, and S. R.
Taylor (2009), Asteroids and andesites, Nature , 459 ,
E1-1.
[360] Day, J. M. D., R. D. Ash, y. Liu, J. J. Bellucci, D. Rumble
iii, W. F. McDonough, R. J. Walker, and L. A. Taylor
(2009), Early formation of evolved asteroidal crust,
Nature , 457 , 179-182.
[361] Day, J. M. D., R. J. Walker, R. D. Ash, y. Liu,
D. Rumble iii, A. J. irving, C. A. goodrich, K. Tait,
W. F. McDonough, and L. A. Taylor (2012), origin of
felsic achondrites graves Nunataks 06128 and 06129,
and ultramafic brachinites and brachinite-like achon-
drites by partial melting of volatile-rich primitive
parent bodies, Geochim. Cosmochim. Acta ,
81 ,
94-128.
[362] Nyquist, L. E., C.-y. Shih, and y. D. Reese (2009),
Early petrogenesis and late impact(?), metamorphism
on the gRA 06128/9 parent body, Lunar Planet. Sci.
Conf. , 40 , 1290.
[363] Shearer, C. K., P. V. Burger, J. J. Papike, Z. D. Sharp,
and  K. D. McKeegan (2013), Fluids on differentiated
asteroids: Evidence from phosphates in differentiated
meteorites gRA 06128 and gRA 06129, Meteorit.
Planet. Sci. 46 , 1345-1362.
[364] Shearer C. K., P. V. Burger, C. R. Neal, Sharp Z. D., L. E.
Borg, L. Spivak-Birndorf, M. Wadhwa, J. J. Papike, J. M.
Karner, A. M. gaffney, J. Shafer, B. P. Weiss, J. geissman,
and V. A. Fernandes (2008), A unique glimpse into aster-
oidal melting processes in the early solar system from the
graves Nunatak 06128/06129 achondrites, American
Mineralogist, 93 , 1937-1940.
[365] Shearer, C. K., P. V. Burger, C. R. Neal, Z. Sharp, L.
Spivack-Birndorf, L. E. Borg, V. A. Fernandes, J. J.
Papike , J. M. Karner , M. Wadwha, A. M. gaffney, J.
Shafer, J. geissman, N. V. Atudorei, C. Herd, B. P. Weiss,
P. L. King, S. A. Crowther, and J. A. gilmour (2010),
Non-basaltic asteroidal magmatism during the earliest
stages of solar system evolution: A view from Antarctic
achondrites graves Nunatak 06128 and 06129, Geochim.
Cosmochim. Acta , 74 , 1172-1199 .
[366] Usui, T., J. H. Jones, D. W. Mittlefehldt (2010),
Low-degree partial melting experiments of CR and H
chondrite compositions: implications for asteroidal
magmatism recorded in gRA 06128 and gRA 06129,
Lunar Planet. Sci. Conf. , 41 , LPi Contribution No.
1533, 1186.
[367] Zeigler, R. A., B. L. Jolliff, R. L. Korotev , D. Rumble, P.
K. Carpenter, A. Wang (2008), Petrology, geochemistry,
and likely provenance of unique achondrite graves
Nunataks 06128, Lunar Planet. Sci. Conf., 39, LPi
Contribution No. 1391, 2456.
48. ALH 84025—BRACHiNiTE
[354] Mittlefehldt, D. W., D. D. Bogard, J. L. Berkley, and D. H.
garrison (2003), Brachinites: igneous rocks from a differ-
entiated asteroid, Meteorit. Planet. Sci. , 38 , 1601-1625.
[355] ott, U., H. P. Löhr, and F. Begemann (1987), Noble gases
in ALH 84025: Like brachina, unlike chassigny,
Meteoritics 22 , 476.
[356] Swindle, T. D., D. A. Kring, M. K. Burkland, D. H. Hill,
and W. V. Boynton (1998), Noble gases, bulk chemistry,
and petrography of olivine-rich achondrites Eagles Nest
and LEW 88763: Comparison to brachinites, Meteorit.
Planet. Sci. , 33 , 31-48.
[357] Warren, P. H., and g. W. Kallemeyn (1989), Allan Hills
84025: The second brachinite, far more differentiated than
brachina, and an ultramafic achondritic clast from L chon-
drite yamato 75097, Lunar Planet. Sci. Conf. , 19 , 475-486.
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