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Mineral contains: hedenbergite   

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Abdu Y A, Hawthorne F C (2013) Local structure in C2/c clinopyroxenes on the hedenbergite (CaFeSi2O6)-ferrosilite (Fe2Si2O6) join: A new interpretation for the Mössbauer spectra of Ca-rich C2/c clinopyroxenes and implications for pyroxene exsolution. American Mineralogist 98, 1227-1234

Berzelius J J (1819) Hedenbergite. in Nouveau Système de Minéralogie, Méquignon-Marvis (Paris) 269-270

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Buzatu A, Buzgar N (2010) The Raman study of single-chain silicates. Analele Stiintifice Ale Universitatii, Al. I. Cuza Iasi Geologie 56, 107-125

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Cameron M, Papike J J (1981) Structural and chemical variations in pyroxenes. American Mineralogist 66, 1-50

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Cameron M, Sueno S, Prewitt C T, Papike J J (1973) High-temperature crystal chemistry of acmite, diopside, hedenbergite, jadeite, spodumene, and ureyite. American Mineralogist 58, 594-618

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Dana E S (1904) Monoclinic Section. Pyroxene. in The System of Mineralogy of James Dwight Data 1837-1868, Sixth Edition, John Wiley & Sons (New York) 352-371

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Heuer M, Huber A L, Bromiley G D, Fehr K T, Bente K (2002) Characterization of synthetic hedenbergite (CaFeSi2O6)–petedunnite (CaZnSi2O6) solid solution series by X-ray single crystal diffraction. Physics and Chemistry of Minerals 32, 552-563

Huang E, Chen C H, Huang T, Lin E H, Xu J (2000) Raman spectroscopic characteristics of Mg-Fe-Ca pyroxenes. American Mineralogist 85, 473-479

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Inoue A, Utada M (1991) Pumpellyite and related minerals from hydrothermally altered rocks at the Kamikita area, northern Honshu Japan. The Canadian Mineralogist 29, 255-270

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Kolitsch U, Rieck B, Brandstätter F, Schreiber F, Fabritz K H, Blaß G, Gröbner J (2014) Neufunde aus dem altem Bergbau und den Schlacken von Lavrion (II). Mineralien Welt 25, 82-95

Kuno H, Hess H H (1953) Unit cell dimensions of clinoenstatite and pigeonite in relation to other common clinopyroxenes. American Journal of Science 251, 741-752

Mantovani L, Tribaudino M, Bertoni G, Salvianti G, Bromiley G (2014) Solid solutions and phase transitions in (Ca,M2+)M2+Si2O6 pyroxenes (M2+ = Co, Fe, Mg). American Mineralogist 99, 704-711

Mantovani L, Tribaudino M, Mezzadri F, Calestani G, Bromiley G (2013) The structure of (Ca,Co)CoSi2O6 pyroxenes and the Ca-M2+ substitution in (Ca,M2+)M2+Si2O6 pyroxenes (M2+ = Co, Fe, Mg). American Mineralogist 98, 1241-1252

Morimoto N (1988) Nomenclature of pyroxenes. Mineralogical Magazine 52, 535-550

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Nagashima M, Nishio-Hamane D (2018) Transmission electron microscopy study of the epitaxial association of hedenbergite whiskers with babingtonite. Mineralogical Magazine 82, 23-33

Nakano T (1991) An antipathetic relation between the hedenbergite and johannsenite components in skarn clinopyroxene from the Kagata tungsten deposit, central Japan. The Canadian Mineralogist 29, 427-434

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Nespolo M, Aroyo M I (2016) The modular structure of pyroxenes. European Journal of Mineralogy 28, 189-203

Nestola F, Tribaudino M, Boffa Ballaran T, Liebske C, Bruno M (2007) The crystal structure of pyroxenes along the jadeite-hedenbergite and jadeite-aegirine joins. American Mineralogist 92, 1492-1501

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Nolan J (1969) Physical properties of synthetic and natural pyroxenes in the system diopside-hedenbergite-acmite. Mineralogical Magazine 37, 216-229

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Ohashi Y, Burnham C W, Finger L W (1975) The effect of Ca-Fe on the clinopyroxene crystal structure. American Mineralogist 60, 423-434

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Raudsepp M, Hawthorne F C, Turnock A C (1990) Evaluation of the Rietveld method for the characterization of fine-grained products of mineral synthesis: the diopside-hedenbergite join. The Canadian Mineralogist 28, 93-109

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Redhammer G J, Amthauer G, Lottermoser W, Treutmann W (2000) Synthesis and structural properties of clinopyroxenes of the hedenbergite CaFeSi2O6 - aegirine NaFeSi2O6 solid-solution series. European Journal of Mineralogy 12, 105-120

Redhammer G J, Amthauer G, Roth G, Tippelt G, Lottermoser W (2006) Single crystal X-ray diffraction and temperature dependent 57Fe Mössbauer spectroscopy on the hedenbergite - aegirine (Ca,Na)(Fe2+,Fe3+)Si2O6 solid solution. American Mineralogist 91, 1271-1292

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Rutstein M S, Yund R A (1969) Unit-cell parameters of synthetic diopside-hedenbergite solid solutions. American Mineralogist 54, 238-245

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Tribaudino M, Mantovani L (2014) Thermal expansion in C2/c pyroxenes: a review and new high-temperature structural data for a pyroxene of composition (Na0.53Ca0.47)(Al0.53Fe0.47)Si2O6 (Jd53Hd47). Mineralogical Magazine 78, 311-324

Turnock A C, Lindsley D H, Grover J E (1973) Synthesis and unit cell parameters of Ca-Mg-Fe pyroxenes. American Mineralogist 58, 50-59

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Wang A, Jolliff B L, Haskin L A, Kuebler K E, Viskupic K M (2001) Characterization and comparison of structural and compositional features of planetary quadrilateral pyroxenes by Raman spectroscopy. American Mineralogist 86, 790-806

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