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pushcharovskite

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Journal Article
Published: 01 January 2000
European Journal of Mineralogy (2000) 12 (1): 95–104.
... = 106.933(2), β = 91.531(2), γ = 98.401(2)°, V = 3863.3(3) Å 3 , Z = 32, ϕ o = 3.35, ϕ c = 3.235 g/cm 3 , μ = 11.40 mm −1 . The crystal structure of pushcharovskite was solved and refined against data collected at the Daresbury Synchrotron Radiation Facility, using a 60 × 20 × 5 μm 3 single crystal, λ...
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Crystal data, structure solution and refinement for <span class="search-highlight">pushcharovskite</span>.
Published: 01 January 2000
Table 1. Crystal data, structure solution and refinement for pushcharovskite.
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X-ray powder diffraction data of <span class="search-highlight">pushcharovskite</span>*.
Published: 01 January 2000
Table 5. X-ray powder diffraction data of pushcharovskite*.
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Ranges of bond lengths (ι, Å) and of bond angles (°) in <span class="search-highlight">pushcharovskite</span>.
Published: 01 January 2000
Table 3. Ranges of bond lengths (ι, Å) and of bond angles (°) in pushcharovskite.
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Total bond strengths (∑s) for oxygen atoms in the crystal structure of push...
Published: 01 January 2000
Table 4. Total bond strengths (∑s) for oxygen atoms in the crystal structure of pushcharovskite*.
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Atomic coordinates (x 10 4 ), equivalent isotropic displacement parameters ...
Published: 01 January 2000
Table 2. Atomic coordinates (x 10 4 ), equivalent isotropic displacement parameters (Å 2 × 10 3 ) for cations and isotropic displacement parameters for O atoms in pushcharovskite*.
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Atomic coordinates (x 10 4 ), equivalent isotropic displacement parameters ...
Published: 01 January 2000
Table 2. Atomic coordinates (x 10 4 ), equivalent isotropic displacement parameters (Å 2 × 10 3 ) for cations and isotropic displacement parameters for O atoms in pushcharovskite*.
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Atomic coordinates (x 10 3 ), isotropic displacement parameters (Å 2 x 10 ...
Published: 01 January 2000
Appendix to Table 2. Atomic coordinates (x 10 3 ), isotropic displacement parameters (Å 2 x 10 3 ) and site occupancy factors for non-bonded H 2 O molecules in pushcharovskite*.
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A general view of the structure of <span class="search-highlight">pushcharovskite</span>. Cu,O polyhedra and AsO ...
Published: 01 January 2000
Fig. 2. A general view of the structure of pushcharovskite. Cu,O polyhedra and AsO 3 OH tetrahedra are shown with dark and light grey color, respectively. Big white octahedra between heteropolyhedral layers are filled by K atoms with partial occupancies.
Journal Article
Published: 01 April 1998
American Mineralogist (1998) 83 (3-4): 383–389.
..., arsenopyrite, native bismuth, chalcopyrite, and pushcharovskite. The crystal structure was solved by direct methods (MoKalpha radiation) and refined using 1429 observed unique reflections to R = 0.069, R w = 0.043. There are two symmetrically independent distorted CuO 5 (H 2 O) octahedra in the structure...
Journal Article
Published: 14 March 2019
Mineralogical Magazine (2019) 83 (3): 459–463.
... ), pushcharovskite (Sarp and Sanz-Gysler, 1997 ) and thérèsemagnanite (Sarp, 1993 ). This specimen was collected as part of the systematic study of the mine mineralogy by Association des Amis de la Mine de Cap Garonne (Favreau and Galea-Clolus, 2014 ; Mills et al ., 2014 , 2015 , 2017 , 2018 ; Plášil et al...
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Journal Article
Published: 01 June 2012
Mineralogical Magazine (2012) 76 (3): 769–775.
... analyses performed by SJM on the Salsigne material during the study of forêtite. A second new species was identified at Cap Garonne and Salsigne as a result, as the same author provided pushcharovskite specimens to Halil Sarp while he was studying the mineral from Cap Garonne ( Sarp and Sanz-Gysler, 1997...
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Journal Article
Published: 01 November 2000
American Mineralogist (2000) 85 (11-12): 1843–1847.
.... Sarp (2000) Crystal structure of pushcharovskite. Eur. J. Mineral., 12, 95–104. Single-crystal structure study (R= 0.054) of type pushcharovskite showed the mineral to be triclinic, space group P with the new cell a = 13.6164(7), b = 15.6672(8), c = 19.1869(9) Å, α = 106.933(2), β = 91.531(2...
Journal Article
Published: 01 February 2011
Mineralogical Magazine (2011) 75 (1): 135–144.
... species (camerolaite, capgaronnite, deloryite, geminite, guarinoite, iltisite, mahnertite, perroudite, pradetite, pushcharovskite, theresemagnanite, and zdenekite), and was the subject of two PhD studies ( Guillemin, 1952 ; Chiappero, 1993 ). The latter introduced a systematic numbering of the pillars...
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Journal Article
Published: 12 May 2021
Mineralogical Magazine (2021) 85 (3): 283–290.
... – 1276 . Plumhoff A.M. , Dachs E. , Benisek A. , Plášil J. , Sejkora J. , Števko M. , Rumsey M.S. and Majzlan J. ( 2020 ) Thermodynamic properties, crystal structure and phase relations of pushcharovskite Cu(AsO 3 OH)(H 2 O)⋅0.5H 2 O, geminite Cu(AsO 3 OH...
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Journal Article
Published: 01 March 2011
European Journal of Mineralogy (2011) 23 (2): 269–277.
... in the domain of micro-minerals. Members of AFM have been responsible for the discovery of 21 new minerals: bariopharmacoalumite, bouazzerite, capgaronnite, deliensite, gatelite-(Ce), geminite, gilmarite, iltisite, jacquesdietrichite, lapeyreite, maghrebite, perroudite, pushcharovskite, rabejacite, radovanite...
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Journal Article
Published: 21 December 2022
Mineralogical Magazine (2023) 87 (2): 194–203.
.... and Majzlan J. ( 2020 ) Thermodynamic properties, crystal structure and phase relations of pushcharovskite [Cu(AsO 3 OH)(H 2 O)⋅0.5H 2 O], geminite [Cu(AsO 3 OH)(H 2 O)] and liroconite [Cu 2 Al(AsO 4 )(OH) 4 ⋅4H 2 O] . European Journal of Mineralogy , 32 , 285 – 304...
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Journal Article
Published: 01 August 2006
American Mineralogist (2006) 91 (8-9): 1378–1384.
... ) Dana’s System of Mineralogy , 7 th edition, p. 925 – 926 . John Wiley and Sons , New York . Pushcharovskii , D. Yu. , Teat , S.J. , Zaitsev , V.N. , Zubkova , N.V. , and Sarp , H. ( 2000 ) Crystal structure of pushcharovskite . European Journal of Mineralogy , 12 , 95...
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Journal Article
Published: 01 April 2013
Mineralogical Magazine (2013) 77 (3): 275–326.
... and Hawthorne, 1995 ), and pushcharovskite, Cu(AsO 3 OH)(H 2 O) 1.5 ( Pushcharovsky et al. , 2000 ), differ by 0.5 H 2 O molecules only, whereas their structural information contents are 269.212 and 1640.967 bits/u.c., respectively. It is obvious that the structural complexity of a mineral is not a simple...
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Journal Article
Published: 01 January 2014
Reviews in Mineralogy and Geochemistry (2014) 79 (1): 17–184.
... of the minerals in this group is the strong Jahn-Teller distortion of the Cu 2+ octahedra ( Prensipe et al. 1996 ). Sheet structure of pushcharovskite ( Pushcharovsky et al. 2000 ) has a topology similar to that seen in geminite. The Cu chains are built by distorted octahedra and square pyramids...
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