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paarite

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Journal Article
Published: 01 June 2005
The Canadian Mineralogist (2005) 43 (3): 909–917.
...Dan Topa; Emil Makovicky; Tonči Balić-Žunić Abstract Salzburgite, Cu 1.6 Pb 1.6 Bi 6.4 S 12 , with a 4.007(1), b 44.81(1), c 11.513(3) Å, space group Pmc 2 1 , Z = 4, and paarite, Cu 1.7 Pb 1.7 Bi 6.3 S 12 , with a 4.0070(6), b 55.998(8), c 11.512(2) Å, space group Pmcn , Z = 5, are two new...
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Journal Article
Published: 01 October 2001
The Canadian Mineralogist (2001) 39 (5): 1377–1382.
...Emil Makovicky; Dan Topa; Tonči Balić-Žunić Abstract We have determined the crystal structure of paarite, a newly discovered 56 Å derivative of the bismuthinite–aikinite series from the metamorphosed scheelite deposit of Felbertal, Austria. Its electron-microprobe-established composition is Cu...
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Journal Article
Published: 01 February 2006
The Canadian Mineralogist (2006) 44 (1): 189–206.
...Vaclav Petříček; Emil Makovicky Abstract The bismuthinite – aikinite (Bi 2 S 3 – CuPbBiS 3 ) series of ordered derivatives (superstructures) is based on the incremental Bi + vacancy → Pb + Cu substitution. Selected structures of this series, gladite, salzburgite, paarite and krupkaite, were...
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First thumbnail for: INTERPRETATION OF SELECTED STRUCTURES OF THE BISMU...
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Empirical compositions of bismuthinite derivatives from Felbertal, with the ideal compositions of known minerals and new, crystallographically characterized phases (salzburgite, paarite and emilite). Molar percentages as indicated. Abbreviations used throughout the text: bs: bismuthinite, pe: pekoite, gl: gladite, sa: salzburgite, pa: paarite, kr: krupkaite, li: lindströmite, em: emilite, ha: hammarite, fr: friedrichite, ai: aikinite, and bdnaik: bismuthinite derivatives with the percentage of aikinite end-member equal to naik.
Published: 01 June 2002
F ig . 2. Empirical compositions of bismuthinite derivatives from Felbertal, with the ideal compositions of known minerals and new, crystallographically characterized phases (salzburgite, paarite and emilite). Molar percentages as indicated. Abbreviations used throughout the text: bs
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Published: 01 June 2005
TABLE 1. REFLECTANCE DATA IN AIR FOR SALZBURGITE AND PAARITE
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Published: 01 June 2005
TABLE 5. CALCULATED POWDER-DIFFRACTION DATA FOR PAARITE
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Published: 01 June 2005
TABLE 3. CHEMICAL COMPOSITION OF PAARITE FROM FELBERTAL AUSTRIA
Journal Article
Published: 01 February 2013
The Canadian Mineralogist (2013) 51 (1): 119–142.
..., lillianite homologues, matildite), native elements (bismuth, electrum), and bismuth chalcogenides (joséite-A, joséite-B, ikunolite, and unnamed Bi-Pb-bearing sulfotellurides). The bismuthinite derivatives are mainly bismuthinite (including cuprian varieties), gladite-krupkaite, paarite, salzburgite...
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First thumbnail for: Bismuthinite derivatives, lillianite homologues, a...
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Published: 01 October 2001
TABLE 2. POSITIONAL AND DISPLACEMENT PARAMETERS FOR PAARITE, THE 56 Å DERIVATIVE OF THE BISMUTHINITE–ALKINITE SOLID-SOLUTION SERIES
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Published: 01 October 2001
TABLE 4. POLYHEDRON DISTORTION PARAMETERS FOR CATIONS IN PAARITE, THE 56 Å DERIVATIVE OF THE BISMUTHINITE–ALKINITE SOLID-SOLUTION SERIES
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Published: 01 October 2001
TABLE 1. CRYSTAL DATA AND STRUCTURE-REFINEMENT INFORMATION FOR PAARITE, THE 56 Å DERIVATIVE OF THE BISMUTHINITE–ALKINITE SOLID-SOLUTION SERIES
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Reflectance data (Rmax and Rmin) in air for salzburgite (larger squares), paarite (diamonds), gladite (smaller squares) and krupkaite (triangles).
Published: 01 June 2005
F ig . 1. Reflectance data (R max and R min ) in air for salzburgite (larger squares), paarite (diamonds), gladite (smaller squares) and krupkaite (triangles).
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The Δy coordinate curves for the string of Cu atoms in stoichiometric gladite, salzburgite and paarite, on the background of Fourier maps in the internal space x2 – x4.
Published: 01 February 2006
F ig . 10. The Δ y coordinate curves for the string of Cu atoms in stoichiometric gladite, salzburgite and paarite, on the background of Fourier maps in the internal space x 2 – x 4 .
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The Δy coordinate curves for the string of Cu atoms in stoichiometric gladite, salzburgite and paarite, on the background of Fourier maps in the internal space x2 – x4.
Published: 01 February 2006
F ig . 10. The Δ y coordinate curves for the string of Cu atoms in stoichiometric gladite, salzburgite and paarite, on the background of Fourier maps in the internal space x 2 – x 4 .
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The Δy coordinate curves for the string of Cu atoms in stoichiometric gladite, salzburgite and paarite, on the background of Fourier maps in the internal space x2 – x4.
Published: 01 February 2006
F ig . 10. The Δ y coordinate curves for the string of Cu atoms in stoichiometric gladite, salzburgite and paarite, on the background of Fourier maps in the internal space x 2 – x 4 .
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The crystal structures of (a) gladite, (b) salzburgite and (c) paarite, with the cation strings parallel to b indicated by labeling. Atoms of sulfur are shown in yellow, and atoms of copper, in green.
Published: 01 February 2006
F ig . 8. The crystal structures of (a) gladite, (b) salzburgite and (c) paarite, with the cation strings parallel to b indicated by labeling. Atoms of sulfur are shown in yellow, and atoms of copper, in green.
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The crystal structures of (a) gladite, (b) salzburgite and (c) paarite, with the cation strings parallel to b indicated by labeling. Atoms of sulfur are shown in yellow, and atoms of copper, in green.
Published: 01 February 2006
F ig . 8. The crystal structures of (a) gladite, (b) salzburgite and (c) paarite, with the cation strings parallel to b indicated by labeling. Atoms of sulfur are shown in yellow, and atoms of copper, in green.
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The crystal structures of (a) gladite, (b) salzburgite and (c) paarite, with the cation strings parallel to b indicated by labeling. Atoms of sulfur are shown in yellow, and atoms of copper, in green.
Published: 01 February 2006
F ig . 8. The crystal structures of (a) gladite, (b) salzburgite and (c) paarite, with the cation strings parallel to b indicated by labeling. Atoms of sulfur are shown in yellow, and atoms of copper, in green.
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Position of salzburgite (green) and paarite (turquoise) in the system Cu2S–Pb2S2–Bi2S3 (in at. %). Other derivatives of bismuthinite are shown in red.
Published: 01 June 2005
F ig . 2. Position of salzburgite (green) and paarite (turquoise) in the system Cu 2 S–Pb 2 S 2 –Bi 2 S 3 (in at. %). Other derivatives of bismuthinite are shown in red.
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The y coordinate curves for “Pb” (i.e., M2) atom string in the crystal structures of gladite, salzburgite and paarite, plotted on the background of Fourier maps of the internal space x2 – x4.
Published: 01 February 2006
F ig . 7a–c. The y coordinate curves for “Pb” ( i.e., M 2) atom string in the crystal structures of gladite, salzburgite and paarite, plotted on the background of Fourier maps of the internal space x 2 – x 4 .