Heat capacities of synthetic hedenbergite, ferrobustamite and CaFeSi2O6 glass
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[1] M. Barton,et al. Heat capacity and thermodynamic properties of andradite garnet, Ca3Fe2Si3O12, between 10 and 1000 K and revised values for ΔfGom (298.15 K) of hedenbergite and wollastonite , 1987 .
[2] B. Mysen,et al. The structural state of iron in oxidized vs. reduced glasses at 1 atm: A57Fe Mössbauer study , 1985 .
[3] J. Coey,et al. Magnetic order in hedenbergite: CaFeSi2O6 , 1985 .
[4] J. A. Kittrick,et al. The heat capacities of osumilite from 298.15 to 1000 K, the thermodynamic properties of two natural chlorites to 500 K, and the thermodynamic properties of petalite to 1800 K , 1984 .
[5] R. Angel. The experimental determination of the johannsenite-bustamite equilibrium inversion boundary , 1984 .
[6] R. Beyer,et al. Thermodynamic properties of hedenbergite, a complex silicate of Ca, Fe, Mn, and Mg , 1984 .
[7] R. P. Gamble. An experimental study of sulfidation reactions involving andradite and hedenbergite , 1982 .
[8] L. Taylor,et al. The f O2 -T and f S2 -T stability relations of hedenbergite and of hedenbergite-johannsenite solid solutions , 1982 .
[9] R. A. Robie,et al. Heat capacities of the alkali feldspars between 350 and 1000 K from differential scanning calorimetry, the thermodynamic functions of the alkali feldspars from 298.15 to 1400 K, and the reaction quartz + jadeite = analbite , 1981 .
[10] J. Abrecht. Stability relations in the system CaSiO3-CaMnSi2O6-CaFeSi2O6 , 1980 .
[11] R. A. Robie,et al. High-temperature heat capacities of corundum, periclase, anorthite, CaAl 2 Si 2 O 8 glass, muscovite, pyrophyllite, KAlSi 3 O 8 glass, grossular, and NaAlSi 3 O 8 glass , 1979 .
[12] E. C. Beutner. Slaty cleavage and related strain in Martinsburg Slate, Delaware Water Gap, New Jersey , 1978 .
[13] Y. Takéuchi,et al. Structural variation in the ferrobustamite solid solution , 1977 .
[14] C. Hubbard,et al. A silicon powder diffraction standard reference material , 1975 .
[15] W. Gustafson. The Stability of Andradite, Hedenbergite, and Related Minerals in the System Ca—Fe—Si—O—H , 1974 .
[16] J. Papike,et al. High-temperature crystal chemistry of acmite, diopside, hedenbergite, jadeite, spodumene, and ureyite , 1973 .
[17] C. Burnham. Ferrobustamite: The crystal structures of two Ca, Fe bustamite-type pyroxenoids: correction , 1973 .
[18] R. A. Robie,et al. Calorimeters for heat of solution and low-temperature heat capacity measurements , 1972 .
[19] M. Rutstein. Re-Examination of the Wollastonite-Hedenbergite (CaSi03-CaFeSi2O6) Equilibria , 1971 .
[20] E. Gopal. Specific Heats at Low Temperatures , 1966 .
[21] L. B. Freeman. : Geological Investigations in East Greenland, Part III: The Petrology of the Skaergaard Intrusion, Kangerdlugssuaq, East Greenland , 1941 .
[22] N. L. Bowen,et al. The system CaO-FeO-SiO 2 , 1933 .