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Chemistry of the Calcalong Creek lunar meteorite and its relationship to lunar terranes

Hill, D. H., Boynton, W. V.(2003). Chemistry of the Calcalong Creek lunar meteorite and its relationship to lunar terranes. Meteoritics and Planetary Science, 38(4), 595-626. https://doi.org/10.1111/j.1945-5100.2003.tb00029.x

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Datasets

numbertitleMethodsvariables analyzed
2Compilation of INAA concentrations for separated clasts from Calcalong CreekCALC, INAACr2O3, Hf, Mn, Sb, Sm, Sr, Yb, FeO, MnO, La, Lu, U, K2O, Na2O, Ce, Dy, Ir, K, Co, Eu, Ru, Th, Zn, SiO2, Na, Ni, Sc, Tb, Al2O3, Al, Fe, Br, Cr, As, Ba, Ho, Mg, Au, Cs, Ca, V, Zr, MgO, Ga, CaO, Gd, TiO2, Rb, Ta, Ti, Tm, Nd, W, Mo, Os
3aRepresentative mineral compositions in Calcalong CreekEMP, CALCMnO, SiO2, ANORTHITE, CaO, Cr2O3, FeO, NiO, Al2O3, ALBITE, ORTHOCLASE, P2O5, K2O, MgO, TOTAL, TiO2, Na2O, SO3, FERROSILITE, BaO, ENSTATITE, WOLLASTONITE
3bRepresentative mineral compositions in Calcalong Creek bEMP, CALCMnO, FORSTERITE, CaO, K2O, P2O5, Cr2O3, Na2O, FeO, SiO2, TiO2, TOTAL, NiO, Al2O3, MgO, FAYALITE, SO3, BaO
4aMicroprobe analyses of INAA samplesEMPCaO, FeO, K2O, MnO, ZrO2, Cr2O3, NiO, MgO, Na2O, SiO2, TOTAL, BaO, P2O5, TiO2, Ce2O3, Al2O3
4bMicroprobe analyses of INAA samples bEMPBaO, K2O, Cr2O3, MnO, NiO, Na2O, P2O5, Al2O3, MgO, FeO, SiO2, TiO2, Ce2O3, TOTAL, ZrO2, CaO
4cMicroprobe analyses of INAA samples cEMPMnO, FeO, NiO, Ce2O3, TiO2, K2O, MgO, Na2O, P2O5, TOTAL, SiO2, Al2O3, Cr2O3, ZrO2, BaO, CaO
5Concentrations of Clast F grains counted separately late in the INAA experimentINAA, CALCTb, Rb, Cr2O3, Nd, Sc, Tm, Ta, Dy, Sb, Yb, Au, Hf, Mo, Zr, CaO, FeO, Br, Ga, Ir, Fe, Co, Sm, Th, Zn, Na2O, U, La, Na, Ca, Lu, Cs, Eu, Ba, Ce, Ni, Cr, Sr, Gd, Os, Ag, W, V, MgO, MnO, TiO2, K, Ho, Mn, Ti, Mg, Al, K2O, SiO2, Al2O3
6Concentrations of soils near Imbrium Basin (PKT) and Calcalong CreekCALCMnO, TOTAL, FeO, MgO, SiO2, CaO, K2O, Al2O3, Na2O, TiO2, P2O3, Cr2O3
1Compilation of Calcalong Creek INAA concentrations for bulk and matrix samples from all experimentsINAA, CALCEu, Ho, Tm, Zr, FeO, Na, Ta, V, Fe, K2O, SiO2, Dy, TiO2, Gd, Ir, U, Ba, Al, Hf, La, Ca, Sc, Sr, Ti, Yb, Na2O, Tb, Co, Cs, Mo, CaO, Cr, Lu, Sm, Ce, Th, Cr2O3, MnO, K, Mn, Br, Al2O3, Au, W, Nd, Ni, Rb, Zn, Os, MgO, Mg, As, Ga
MB-CMetBase 766 CompilationINAACr, Fe, K, As, Ce, Ru, Sc, Sm, U, Br, Eu, Hf, La, Lu, Mn, Yb, Tb, Th, Co, Al, Na, Ni, Sb, Zn, Dy, Ir, W, Au, Ho, Nd, V, Ta, Gd, Sr, Mg, Cs, Ga, Ca, Rb, Tm, Ba, Ti, Mo, Os, Zr, FeO, TiO2, SiO2, FeTOT, MgO, MnO, CaO, Cr2O3, K2O, Na2O, Al2O3

Methods

method namelaboratorymethod comment More details are available for the following variables
CALCULATEDUNKNOWNcalculated from INAA determination., SiO2 is an estimate calculated by the difference of the major oxides
ELECTRON MICROPROBEUNIVERSITY OF ARIZONACameca SX50 electron microprobe with 15 keV accelerating voltage, 20 nA current, and 1-micron beam.
INSTRUMENTAL NEUTRON ACTIVATION ANALYSISUNIVERSITY OF ARIZONAirradiated twice at the University of Arizona TRIGA reactor with neutron fluence of 2.1 × 1012 ncm-2 (rabbit facility) and 2.5 × 1015 ncm-2 (lazy susan) and at the University of Missouri Research Reactor with a neutron fluence of 1.38 × 1019 ncm-2 (H1 reflector).

Samples

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