Cassiterite R050502

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Record 676 of 4039  


Name: Cassiterite
RRUFF ID: R050502
Ideal Chemistry: SnO2
Locality: Redruth, Cornwall, England
Source: California Institute of Technology W-20696
Owner: RRUFF
Description: Black crystals associated with colorless quartz and grey stannite.
Status: The identification of this mineral has been confirmed by X-ray diffraction and chemical analysis
Mineral Group: [ Rutile (18) ]
Quick search: [ All Cassiterite samples (4) ]
CHEMISTRY 
RRUFF ID: R050502.2
Sample Description: Microprobe Fragment
Measured Chemistry: SnO2
RAMAN SPECTRUM 
RRUFF ID:
Sample Description: Sample is oriented and mounted on a pin.
Pin ID: M00088
Orientation: Laser parallel to  -c*  (0 0 -1).     Fiducial mark perpendicular to laser is parallel to  b   [0 1 0].
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Direction of polarization of laser relative to fiducial mark:
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BROAD SCAN WITH SPECTRAL ARTIFACTS
RRUFF ID: R050502
Wavelength:
Sample Description: Unoriented sample
Instrument settings: Thermo Almega XR 532nm @ 100% of 150mW
INFRARED SPECTRUM (Attenuated Total Reflectance) 
RRUFF ID: R050502.1
Instrument settings: SensIR Durascope on a Nicolet Magna 860 FTIR
Resolution:
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POWDER DIFFRACTION 
RRUFF ID: R050502.1
Sample Description: Powder
Cell Refinement Output: a: 4.73692(6)Å    b: 4.73692(6)Å    c: 3.18516(8)Å
alpha: 90.°    beta: 90.°    gamma: 90.°   Volume: 71.470(2)Å3    Crystal System: tetragonal
  File Type Information Close
Calculated diffraction file.

  File Type Information Close
Output file from the Bruker D8 Advance instrument. Includes device headers and XY data.

  File Type Information Close
Output file from the Bruker D8 Advance instrument. Includes device headers and XY data.

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REFERENCES for Cassiterite

American Mineralogist Crystal Structure Database Record: [view record]

Anthony J W, Bideaux R A, Bladh K W, and Nichols M C (1990) Handbook of Mineralogy, Mineral Data Publishing, Tucson Arizona, USA, by permission of the Mineralogical Society of America. [view file]

Beudant F S (1832) Cassitérite, étain oxidé, in Traité Élémentaire de Minéralogie, 2nd Edition Paris 618-620   [view file]

Hutton C O (1950) Studies of heavy detrital minerals, Bulletin of the Geological Society of America, 61, 635-710   [view file]

Baur W H (1956) Über die verfeinerung der kristallstrukturbestimmung einiger vertreter des rutiltyps: TiO2, SnO2, GeO2 und MgF2, Acta Crystallographica, 9, 515-520   [link]

Thiel B, Helbig R (1976) Growth of SnO2 single crystals by a vapour phase reaction method, Journal of Crystal Growth, 32, 259-264

Neiva A M R (1996) Geochemistry of cassiterite and its inclusions and exclution products from tin and tungsten deposits in Portugal, The Canadian Mineralogist, 34, 745-768   [view file]

Bolzan A A, Fong C, Kennedy B J, Howard C J (1997) Structural studies of rutile-type metal dioxides, Acta Crystallographica, B53, 373-380

Masau M, Černý P, Chapman R (2000) Exsolution of zirconian-hafnian wodginite from Manganoan-tantalian cassiterite, Annie Clain #3 granitic pegmatite, southeastern Manitoba, Canada, The Canadian Mineralogist, 38, 685-694   [view file]

Serranti S, Ferrini V, Masi U, Cabri L J (2002) Trace-element distribution in cassiterite and sulfides from Rubané and massive ores of the Corvo deposit, Portugal: erratum, The Canadian Mineralogist, 40, 1551-1551   [view file]

Shannon R D, Shannon R C, Medenbach O, Fischer R X (2002) Refractive index and dispersion of fluorides and oxides, Journal of Physical and Chemical Reference Data, 31, 931-970   [view file]

Mlynarczyk M S J, Williams-Jones A E (2006) Zoned tourmaline associated with cassiterite: implications for fluid evolution and tin mineralization in the San Rafael Sn–Cu deposit, southeastern Peru, The Canadian Mineralogist, 44, 347-365   [view file]

Fuchsloch W C, Nex P A M, Kinnaird J A (2019) The geochemical evolution of Nb-Ta-Sn oxides from pegmatites of the Cape Cross-Uis pegmatite belt, Namibia, Mineralogical Magazine, 83, 161-179