Fe/Mg–Fe/Mn relations of meteorites and primary heterogeneity of primitive achondrite parent bodies
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[1] S. Taylor,et al. The Bulk Composition of the Moon , 2002 .
[2] C. Goodrich. Are ureilites residues from partial melting of chondritic material? The answer from MAGPOX , 1999 .
[3] C. Goodrich. Queen Alexandra Range 93148: A Unique Achondrite , 1998 .
[4] K. Keil,et al. A petrologic and isotopic study of winonaites: Evidence for early partial melting, brecciation, and metamorphism , 1998 .
[5] J. Zipfel,et al. Bulk chemistry and mineralogy of a new "Unique" metal-rich chondritic breccia, Hamadah Al Hamra 237 , 1998 .
[6] M. Burkland,et al. Noble gases, bulk chemistry, and petrography of olivine‐rich achondrites Eagles Nest and Lewis Cliff 88763: Comparison to brachinites , 1998 .
[7] I. Jackson. The Earth's Mantle: Composition, Structure, and Evolution , 1998 .
[8] H. Palme,et al. The Earth's Mantle: Composition of the Silicate Earth: Implications for Accretion and Core Formation , 1998 .
[9] J. Delaney,et al. Origin of the total iron - oxidized iron - Δ17O correlations among ordinary chondrites , 1998 .
[10] J. Delaney,et al. A model composition of the basaltic achondrite planetoid , 1997 .
[11] P. Kong,et al. The origin and nebular history of the metal phase of ordinary chondrites , 1997 .
[12] R. Clayton,et al. A petrologic and isotopic study of lodranites: Evidence for early formation as partial melt residues from heterogeneous precursors , 1997 .
[13] K. Keil,et al. PARTIAL MELTING AND MELT MIGRATION IN THE ACAPULCOITE-LODRANITE PARENT BODY , 1997 .
[14] R. Clayton,et al. Oxygen isotope studies of achondrites , 1996 .
[15] M. Lindstrom,et al. Acapulco- and Lodran-like achondrites: Petrology, geochemistry, chronology, and origin , 1996 .
[16] J. Zipfel,et al. Chemical composition and origin of the Acapulco meteorite , 1995 .
[17] John H. Jones,et al. Experimental partial melting of the St. Severin (LL) and Lost City (H) chondrites , 1995 .
[18] A. Rubin,et al. THE COMPOSITIONAL CLASSIFICATION OF CHONDRITES. VI: THE CR CARBONACEOUS CHONDRITE GROUP , 1994 .
[19] A. Rubin,et al. Pecora Escarpment 91002: A member of the new Rumuruti (R) chondrite group , 1994 .
[20] R. Clayton,et al. Acfer 217‐A new member of the Rumuruti chondrite group (R) , 1994 .
[21] G. Dreibus,et al. Mineralogy and chemistry of Rumuruti: The first meteorite fall of the new R chondrite group , 1994 .
[22] H. Palme,et al. Acfer 182 and paired samples, an iron-rich carbonaceous chondrite: Similarities with ALH85085 and relationship to CR chondrites , 1993 .
[23] R. Clayton,et al. The CR (Renazzo-type) carbonaceous chondrite group and its implications , 1993 .
[24] R. Clayton,et al. Paired Renazzo-type (CR) carbonaceous chondrites from the Sahara , 1993 .
[25] G. J. Taylor,et al. Origin of ureilite meteorites and implications for planetary accretion , 1993 .
[26] J. Zipfel,et al. Chemical Composition of New Acapulcoites and Lodranites , 1993 .
[27] G. Kallemeyn,et al. Explosive volcanism and the graphite-oxygen fugacity buffer on the parent asteroid(s) of the ureilite meteorites , 1992 .
[28] C. Goodrich. Ureilites - A critical review , 1992 .
[29] K. Yanai. Bulk Composition of Yamato-793575 Classified as Carlisle Lakes-type Chondrite , 1992 .
[30] A. Tsuchiyama,et al. Antarctic primitive achondrites Yamato-74025, -75300, and -75305:Their mineralogy, thermal history and the relevance to winonaite , 1992 .
[31] R. Clayton,et al. Oxygen isotope studies of ordinary chondrites , 1991 .
[32] A. Rubin,et al. The compositional classification of chondrites: V. The Karoonda (CK) group of carbonaceous chondrites , 1991 .
[33] Hideyasu,et al. Yamato-74063: Chondritic meteorite classified between E and H chondrite groups , 1991 .
[34] G. J. Taylor,et al. Zagami - Product of a two-stage magmatic history. [of shergottite meteorite] , 1991 .
[35] E. Jarosewich,et al. Chemical analyses of meteorites: A compilation of stony and iron meteorite analyses , 1990 .
[36] J. Wasson,et al. Allan Hills 85085: A subchondritic meteorite of mixed nebular and regolithic heritage , 1990 .
[37] A. Rubin,et al. Carlisle Lakes and Allan Hills 85151: Members of a new chondrite grouplet , 1989 .
[38] A. Rubin,et al. Ordinary chondrites: Bulk compositions, classification, lithophile-element fractionations and composition-petrographic type relationships , 1989 .
[39] P. Warren,et al. Allan Hills 84025 - The second brachinite, far more differentiated than brachina, and an ultramafic achondritic clast from L chondrite Yamato 75097 , 1989 .
[40] A. Rubin,et al. ALH85085: a unique volatile-poor carbonaceous chondrite with possible implications for nebular fractionation processes , 1988 .
[41] J. Wasson,et al. Compositions of chondrites , 1988, Philosophical Transactions of the Royal Society of London. Series A, Mathematical and Physical Sciences.
[42] R. Clayton,et al. Formation of ureilites by nebular processes , 1988 .
[43] E. Scott. A new kind of primitive chondrite, Allan Hills 85085 , 1988 .
[44] H. Palme,et al. Moderately volatile elements. , 1988 .
[45] J. Longhi,et al. Phase equilibrium constraints on the howardite-eucrite-diogenite association , 1988 .
[46] B. Fegley,et al. Oxidation state in chondrites , 1988 .
[47] J. Wasson,et al. Siderophile element fractionation , 1988 .
[48] John H. Jones,et al. Origin and evolution of the ureilite parent magmas: Multi-stage igneous activity on a large parent body , 1987 .
[49] R. Clayton,et al. ROOSEVELT COUNTY 027: A LOW‐SHOCK UREILITE WITH INTERSTITIAL SILICATES AND HIGH NOBLE GAS CONCENTRATIONS , 1987 .
[50] H. Takeda. Mineralogy of Antarctic ureilites and a working hypothesis for their origin and evolution , 1987 .
[51] J. Wasson,et al. Compositions of enstatite (EH3, EH4,5 and EL6) chondrites: Implications regarding their formation , 1986 .
[52] H. Nagahara,et al. Petrology of Yamato-791493, lodranite: Melting, crystallization, cooling history, and relationship to other meteorites , 1986 .
[53] A. Treiman. The parental magma of the Nakhla achondrite: Ultrabasic volcanism on the shergottite parent body , 1986 .
[54] D. Mittlefehldt. FeMgMn relations of ureilite olivines and pyroxenes and the genesis of ureilites , 1986 .
[55] J. Wasson,et al. The compositional classification of chondrites: IV. Ungrouped chondritic meteorites and clasts , 1985 .
[56] K. Yanai,et al. Chemical compositions of Antarctic meteorites I , 1983 .
[57] J. Wasson,et al. The compositional classification of chondrites: III. Ungrouped carbonaceous chondrites , 1982 .
[58] G. Mckay,et al. Chronology and petrogenesis of young achondrites, Shergotty, Zagami, and ALHA77005 - Late magmatism on a geologically active planet , 1982 .
[59] H. Wänke,et al. Allan Hills 77081—an unusual stony meteorite , 1982 .
[60] N. Bhandari,et al. THE LAHRAULI UREILITE , 1981 .
[61] H. Wänke,et al. The Acapulco meteorite: Chemistry, mineralogy and irradiation effects , 1981 .
[62] Basaltic Volcanism Study. Basaltic volcanism on the terrestrial planets , 1981 .
[63] K. Keil,et al. The nature and origin of ureilites , 1980 .
[64] B. Mason,et al. Catalog of Antarctic meteorites , 1980 .
[65] H. Wakita,et al. Lodran: the Residue of Limited Partial Melting of Matter like a Hybrid Between H and E Chondrites , 1978 .
[66] R. Göbel,et al. On trapped noble gases in ureilites , 1978 .
[67] R. W. Bild. Silicate inclusions in group IAB irons and a relation to the anomalous stones Winona and Mt Morris (Wis) , 1977 .
[68] E. Stolper. Experimental petrology of eucritic meteorites , 1977 .
[69] W. Boynton,et al. Chemical evidence for the genesis of the ureilites, the achondrite Chassigny and the nakhlites , 1976 .
[70] J. Duke. Distribution of the Period Four Transition Elements among Olivine, Calcic Clinopyroxene and Mafic Silicate Liquid: Experimental Results , 1976 .
[71] G. Wasserburg,et al. Petrography of isotopically-dated clasts in the Kapoeta howardite and petrologic constraints on the evolution of its parent body , 1976 .
[72] A. Kracher. Untersuchungen am Landes-Meteorit , 1974 .
[73] E. Anders,et al. Bulk compositions of the moon and earth, estimated from meteorites , 1974 .
[74] J. Laul,et al. Chemical composition of Apollo 15, 16, and 17 samples , 1973 .
[75] H. Wiik. THE CHEMICAL COMPOSITION OF THE HAVERÖ METEORITE AND THE GENESIS OF THE UREILITES , 1972 .
[76] G. Dreibus,et al. The Chemistry of the Havero Ureilite , 1972 .
[77] J. Wasson. Formation of ordinary chondrites. , 1972 .
[78] W. Boynton,et al. Bulk, rare earth and other trace elements in Apollo 14 and 15 and Luna 16 samples , 1972 .
[79] P. A. Baedecker,et al. Relationship between siderophilic-element content and oxidation state of ordinary chondrites , 1971 .
[80] E. Anders,et al. Meteorites and the Early Solar System , 1971 .
[81] E. Anders,et al. Chemical fractionations in meteorites—III. Major element fractionations in chondrites , 1970 .
[82] E. Jarosewich,et al. Mineralogical and chemical compositions of silicate inclusions in the EL Taco, Campo del Cielo, iron meteorite , 1969 .