Crystallography Open Database

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9006595 CIFFeI m -3 m2.8652; 2.8652; 2.8652
90; 90; 90
23.521Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 1.8 GPa, T = 573 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006596 CIFFeI m -3 m2.8544; 2.8544; 2.8544
90; 90; 90
23.257Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 3.6 GPa, T = 573 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006597 CIFFeI m -3 m2.8468; 2.8468; 2.8468
90; 90; 90
23.071Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 4.9 GPa, T = 573 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006598 CIFFeI m -3 m2.8396; 2.8396; 2.8396
90; 90; 90
22.897Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 6.1 GPa, T = 573 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006599 CIFFeI m -3 m2.8339; 2.8339; 2.8339
90; 90; 90
22.759Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 7.2 GPa, T = 572 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006600 CIFFeI m -3 m2.826; 2.826; 2.826
90; 90; 90
22.569Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 8.7 GPa, T = 573 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006601 CIFFeI m -3 m2.8716; 2.8716; 2.8716
90; 90; 90
23.679Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 2.3 GPa, T = 773 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006602 CIFFeI m -3 m2.8599; 2.8599; 2.8599
90; 90; 90
23.391Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 3.9 GPa, T = 773 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006603 CIFFeI m -3 m2.8515; 2.8515; 2.8515
90; 90; 90
23.186Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 5.3 GPa, T = 774 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006604 CIFFeI m -3 m2.8434; 2.8434; 2.8434
90; 90; 90
22.989Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 6.6 GPa, T = 773 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006605 CIFFeI m -3 m2.8373; 2.8373; 2.8373
90; 90; 90
22.841Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 7.7 GPa, T = 774 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006606 CIFFeI m -3 m2.8317; 2.8317; 2.8317
90; 90; 90
22.706Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 8.9 GPa, T = 773 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006607 CIFFe0.91 Si0.09I m -3 m2.8429; 2.8429; 2.8429
90; 90; 90
22.977Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 0.0 GPa, T = 298 K, prior to the experiment
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006608 CIFFe0.91 Si0.09I m -3 m2.8436; 2.8436; 2.8436
90; 90; 90
22.994Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 0.0 GPa, T = 300 K, after the experiment
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006609 CIFFe0.91 Si0.09I m -3 m2.8369; 2.8369; 2.8369
90; 90; 90
22.831Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 1.3 GPa, T = 299 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006610 CIFFe0.91 Si0.09I m -3 m2.827; 2.827; 2.827
90; 90; 90
22.593Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 3.0 GPa, T = 299 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006611 CIFFe0.91 Si0.09I m -3 m2.819; 2.819; 2.819
90; 90; 90
22.402Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 4.3 GPa, T = 299 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006612 CIFFe0.91 Si0.09I m -3 m2.8121; 2.8121; 2.8121
90; 90; 90
22.238Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 5.6 GPa, T = 299 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006613 CIFFe0.91 Si0.09I m -3 m2.8063; 2.8063; 2.8063
90; 90; 90
22.101Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 6.6 GPa, T = 299 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006614 CIFFe0.91 Si0.09I m -3 m2.7995; 2.7995; 2.7995
90; 90; 90
21.94Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 8.1 GPa, T = 299 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006615 CIFFe0.91 Si0.09I m -3 m2.8438; 2.8438; 2.8438
90; 90; 90
22.998Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 1.8 GPa, T = 573 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006616 CIFFe0.91 Si0.09I m -3 m2.8335; 2.8335; 2.8335
90; 90; 90
22.749Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 3.6 GPa, T = 573 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006617 CIFFe0.91 Si0.09I m -3 m2.8251; 2.8251; 2.8251
90; 90; 90
22.548Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 4.9 GPa, T = 573 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006618 CIFFe0.91 Si0.09I m -3 m2.818; 2.818; 2.818
90; 90; 90
22.378Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 6.1 GPa, T = 573 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006619 CIFFe0.91 Si0.09I m -3 m2.812; 2.812; 2.812
90; 90; 90
22.235Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 7.2 GPa, T = 572 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006620 CIFFe0.91 Si0.09I m -3 m2.8063; 2.8063; 2.8063
90; 90; 90
22.101Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 8.7 GPa, T = 573 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006621 CIFFe0.91 Si0.09I m -3 m2.8492; 2.8492; 2.8492
90; 90; 90
23.13Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 2.3 GPa, T = 773 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006622 CIFFe0.91 Si0.09I m -3 m2.8392; 2.8392; 2.8392
90; 90; 90
22.887Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 3.9 GPa, T = 773 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006623 CIFFe0.91 Si0.09I m -3 m2.8304; 2.8304; 2.8304
90; 90; 90
22.675Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 5.3 GPa, T = 774 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006624 CIFFe0.91 Si0.09I m -3 m2.8224; 2.8224; 2.8224
90; 90; 90
22.483Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 6.6 GPa, T = 773 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006625 CIFFe0.91 Si0.09I m -3 m2.8159; 2.8159; 2.8159
90; 90; 90
22.328Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 7.7 GPa, T = 774 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006626 CIFFe0.91 Si0.09I m -3 m2.8105; 2.8105; 2.8105
90; 90; 90
22.2Zhang, J.; Guyot, F.
Thermal equation of iron and Fe0.91Si0.09 Sample: P = 8.9 GPa, T = 773 K
Physics and Chemistry of Minerals, 1999, 26, 206-211
9006627 CIFAl1.971 Fe0.23 Mg0.7 O4F d -3 m :28.067; 8.067; 8.067
90; 90; 90
524.972Pavese, A.; Artioli, G.; Russo, U.; Hoser, A.
Cation partitioning versus temperature in (Mg0.70Fe0.23)Al1.97O4 synthetic spinel by in situ neutron powder diffraction Sample: T = 300 K
Physics and Chemistry of Minerals, 1999, 26, 242-250
9006628 CIFAl1.971 Fe0.23 Mg0.7 O4F d -3 m :28.0811; 8.0811; 8.0811
90; 90; 90
527.73Pavese, A.; Artioli, G.; Russo, U.; Hoser, A.
Cation partitioning versus temperature in (Mg0.70Fe0.23)Al1.97O4 synthetic spinel by in situ neutron powder diffraction Sample: T = 523 K
Physics and Chemistry of Minerals, 1999, 26, 242-250
9006629 CIFAl1.971 Fe0.23 Mg0.7 O4F d -3 m :28.0973; 8.0973; 8.0973
90; 90; 90
530.91Pavese, A.; Artioli, G.; Russo, U.; Hoser, A.
Cation partitioning versus temperature in (Mg0.70Fe0.23)Al1.97O4 synthetic spinel by in situ neutron powder diffraction Sample: T = 773 K
Physics and Chemistry of Minerals, 1999, 26, 242-250
9006630 CIFAl1.969 Fe0.23 Mg0.701 O4F d -3 m :28.1115; 8.1115; 8.1115
90; 90; 90
533.708Pavese, A.; Artioli, G.; Russo, U.; Hoser, A.
Cation partitioning versus temperature in (Mg0.70Fe0.23)Al1.97O4 synthetic spinel by in situ neutron powder diffraction Sample: T = 973 K
Physics and Chemistry of Minerals, 1999, 26, 242-250
9006631 CIFAl1.969 Fe0.23 Mg0.701 O4F d -3 m :28.1256; 8.1256; 8.1256
90; 90; 90
536.496Pavese, A.; Artioli, G.; Russo, U.; Hoser, A.
Cation partitioning versus temperature in (Mg0.70Fe0.23)Al1.97O4 synthetic spinel by in situ neutron powder diffraction Sample: T = 1123 K
Physics and Chemistry of Minerals, 1999, 26, 242-250
9006632 CIFAl1.969 Fe0.23 Mg0.701 O4F d -3 m :28.1437; 8.1437; 8.1437
90; 90; 90
540.089Pavese, A.; Artioli, G.; Russo, U.; Hoser, A.
Cation partitioning versus temperature in (Mg0.70Fe0.23)Al1.97O4 synthetic spinel by in situ neutron powder diffraction Sample: T = 1273 K
Physics and Chemistry of Minerals, 1999, 26, 242-250
9006633 CIFAl1.969 Fe0.23 Mg0.701 O4F d -3 m :28.1612; 8.1612; 8.1612
90; 90; 90
543.578Pavese, A.; Artioli, G.; Russo, U.; Hoser, A.
Cation partitioning versus temperature in (Mg0.70Fe0.23)Al1.97O4 synthetic spinel by in situ neutron powder diffraction Sample: T = 1423 K
Physics and Chemistry of Minerals, 1999, 26, 242-250
9006634 CIFAl1.969 Fe0.23 Mg0.701 O4F d -3 m :28.1768; 8.1768; 8.1768
90; 90; 90
546.701Pavese, A.; Artioli, G.; Russo, U.; Hoser, A.
Cation partitioning versus temperature in (Mg0.70Fe0.23)Al1.97O4 synthetic spinel by in situ neutron powder diffraction Sample: T = 1573 K
Physics and Chemistry of Minerals, 1999, 26, 242-250
9006635 CIFAl1.969 Fe0.23 Mg0.701 O4F d -3 m :28.1907; 8.1907; 8.1907
90; 90; 90
549.494Pavese, A.; Artioli, G.; Russo, U.; Hoser, A.
Cation partitioning versus temperature in (Mg0.70Fe0.23)Al1.97O4 synthetic spinel by in situ neutron powder diffraction Sample: T = 1723 K
Physics and Chemistry of Minerals, 1999, 26, 242-250
9006636 CIFMg1.82 O4 SiC 1 2/m 1 (a+c-1/4,b+1/4,c)5.674; 11.477; 8.235
90; 90.21; 90
536.264Kudoh, Y.; Inoue, T.
Mg-vacant structural modules and dilution of the symmetry of hydrous wadsleyite, beta-Mg2-xSiH2xO4 with 0.00<=x<=0.25 Sample: 0.3H-beta
Physics and Chemistry of Minerals, 1999, 26, 382-388
9006637 CIFMg1.72 O4 SiC 1 2/m 1 (a+c-1/4,b+1/4,c)5.675; 11.579; 8.244
90; 90.09; 90
541.719Kudoh, Y.; Inoue, T.
Mg-vacant structural modules and dilution of the symmetry of hydrous wadsleyite, beta-Mg2-xSiH2xO4 with 0.00<=x<=0.25 Sample: 0.5H-beta
Physics and Chemistry of Minerals, 1999, 26, 382-388
9006638 CIFLa0.34 Na0.45 O3 Th0.13 TiI 4/m c m5.4652; 5.4652; 7.7476
90; 90; 90
231.409Mitchell, R. H.; Chakhmouradian, A. R.
Solid solubility in the system NaLREETi2O6 - ThTi2O6 (LREE, light rare-earth elements): experimental and analytical data
Physics and Chemistry of Minerals, 1999, 26, 396-405
9006639 CIFO6 Th Ti2C 1 2/m 19.814; 3.8228; 7.0313
90; 118.82; 90
231.119Mitchell, R. H.; Chakhmouradian, A. R.
Solid solubility in the system NaLREETi2O6 - ThTi2O6 (LREE, light rare-earth elements): experimental and analytical data
Physics and Chemistry of Minerals, 1999, 26, 396-405
9006640 CIFCr2 O4 SiF d d d :25.7005; 11.1651; 9.5847
90; 90; 90
610.034Miletich, R.; Nowak, M.; Seifert, F.; Angel, R. J.; Brandstatter, G.
High-pressure crystal chemistry of chromous orthosilicate, Cr2SiO4. A single-crystal X-ray diffraction and electronic absorption spectroscopy study Sample in air: P = 0.0001 GPa
Physics and Chemistry of Minerals, 1999, 26, 446-459
9006641 CIFCr2 O4 SiF d d d :25.7007; 11.1653; 9.585
90; 90; 90
610.085Miletich, R.; Nowak, M.; Seifert, F.; Angel, R. J.; Brandstatter, G.
High-pressure crystal chemistry of chromous orthosilicate, Cr2SiO4. A single-crystal X-ray diffraction and electronic absorption spectroscopy study Sample in diamond anvil cell: P = 0.0001 GPa
Physics and Chemistry of Minerals, 1999, 26, 446-459
9006642 CIFCr2 O4 SiF d d d :25.6804; 11.1174; 9.3842
90; 90; 90
592.624Miletich, R.; Nowak, M.; Seifert, F.; Angel, R. J.; Brandstatter, G.
High-pressure crystal chemistry of chromous orthosilicate, Cr2SiO4. A single-crystal X-ray diffraction and electronic absorption spectroscopy study Sample: P = 3.106 GPa
Physics and Chemistry of Minerals, 1999, 26, 446-459
9006643 CIFCr2 O4 SiF d d d :25.665; 11.0863; 9.2742
90; 90; 90
582.456Miletich, R.; Nowak, M.; Seifert, F.; Angel, R. J.; Brandstatter, G.
High-pressure crystal chemistry of chromous orthosilicate, Cr2SiO4. A single-crystal X-ray diffraction and electronic absorption spectroscopy study Sample: P = 5.303 GPa
Physics and Chemistry of Minerals, 1999, 26, 446-459
9006644 CIFCr2 O4 SiF d d d :25.6512; 11.0598; 9.191
90; 90; 90
574.448Miletich, R.; Nowak, M.; Seifert, F.; Angel, R. J.; Brandstatter, G.
High-pressure crystal chemistry of chromous orthosilicate, Cr2SiO4. A single-crystal X-ray diffraction and electronic absorption spectroscopy study Sample: P = 7.300 GPa
Physics and Chemistry of Minerals, 1999, 26, 446-459
9006645 CIFCr2 O4 SiF d d d :25.6374; 11.0375; 9.1192
90; 90; 90
567.422Miletich, R.; Nowak, M.; Seifert, F.; Angel, R. J.; Brandstatter, G.
High-pressure crystal chemistry of chromous orthosilicate, Cr2SiO4. A single-crystal X-ray diffraction and electronic absorption spectroscopy study Sample: P = 9.220 GPa
Physics and Chemistry of Minerals, 1999, 26, 446-459
9006646 CIFCa D4 O6 SI 1 2/a 15.6769; 15.2074; 6.5277
90; 118.494; 90
495.279Knight, K. S.; Stretton, I. C.; Schofield, P. F.
Temperature evolution between 50 K and 320 K of the thermal expansion tensor of gypsum derived from neutron powder diffraction data Sample: T = 320 K
Physics and Chemistry of Minerals, 1999, 26, 477-483
9006647 CIFAl4 Co2 O18 Si5P 6/m c c9.841; 9.841; 9.372
90; 90; 120
786.034Knorr, K.; Meschke, M.; Winkler, B.
Structural and magnetic properties of Co2Al4Si5O18 and Mn2Al4Si5O18 cordierite
Physics and Chemistry of Minerals, 1999, 26, 521-529
9006648 CIFAl4 Mn2 O18 Si5C c c m17.128; 9.764; 9.147
90; 90; 90
1529.72Knorr, K.; Meschke, M.; Winkler, B.
Structural and magnetic properties of Co2Al4Si5O18 and Mn2Al4Si5O18 cordierite
Physics and Chemistry of Minerals, 1999, 26, 521-529
9006649 CIFMg OF m -3 m3.899; 3.899; 3.899
90; 90; 90
59.273Dubrovinsky, L. S.; Lazor, P.; Saxena, S. K.; Haggkvist, P.; Weber, H. P.; Le Bihan, T.; Hausermann, D.
Study of laser heated iron using third generation synchrotron X-ray radiation facility with imaging plate at high pressures Sample: P = 61 GPa, T = 300 K
Physics and Chemistry of Minerals, 1999, 26, 539-545
9006650 CIFMg OF m -3 m3.897; 3.897; 3.897
90; 90; 90
59.182Dubrovinsky, L. S.; Lazor, P.; Saxena, S. K.; Haggkvist, P.; Weber, H. P.; Le Bihan, T.; Hausermann, D.
Study of laser heated iron using third generation synchrotron X-ray radiation facility with imaging plate at high pressures Sample: P = 61 GPa, T = 1550 K
Physics and Chemistry of Minerals, 1999, 26, 539-545
9006651 CIFCa O5 Si SnA 1 2/a 17.156; 8.875; 6.66
90; 113.38; 90
388.244Zhang, M.; Meyer, H. W.; Groat, L. A.; Bismayer, U.; Salje, E. K. H.; Adiwidjaja, G.
An infrared spectroscopic and single-crystal X-ray study of malayaite, CaSnSiO5 Sample: T = 300 K
Physics and Chemistry of Minerals, 1999, 26, 546-553
9006652 CIFCa O5 Si SnA 1 2/a 17.16; 8.897; 6.672
90; 113.34; 90
390.244Zhang, M.; Meyer, H. W.; Groat, L. A.; Bismayer, U.; Salje, E. K. H.; Adiwidjaja, G.
An infrared spectroscopic and single-crystal X-ray study of malayaite, CaSnSiO5 Sample: T = 450 K
Physics and Chemistry of Minerals, 1999, 26, 546-553
9006653 CIFCa O5 Si SnA 1 2/a 17.166; 8.903; 6.678
90; 113.39; 90
391.038Zhang, M.; Meyer, H. W.; Groat, L. A.; Bismayer, U.; Salje, E. K. H.; Adiwidjaja, G.
An infrared spectroscopic and single-crystal X-ray study of malayaite, CaSnSiO5 Sample: T = 550 K Note: U33 for O1 has been altered by personal communication with authors, Dec 2003
Physics and Chemistry of Minerals, 1999, 26, 546-553
9006654 CIFCa O5 Si SnA 1 2/a 17.173; 8.901; 6.683
90; 113.36; 90
391.714Zhang, M.; Meyer, H. W.; Groat, L. A.; Bismayer, U.; Salje, E. K. H.; Adiwidjaja, G.
An infrared spectroscopic and single-crystal X-ray study of malayaite, CaSnSiO5 Sample: T = 670 K
Physics and Chemistry of Minerals, 1999, 26, 546-553
9006655 CIFCa O5 Si SnA 1 2/a 17.167; 8.912; 6.688
90; 113.36; 90
392.163Zhang, M.; Meyer, H. W.; Groat, L. A.; Bismayer, U.; Salje, E. K. H.; Adiwidjaja, G.
An infrared spectroscopic and single-crystal X-ray study of malayaite, CaSnSiO5 Sample: T = 730 K Note: x-coordinate of O1 altered from the value reported
Physics and Chemistry of Minerals, 1999, 26, 546-553
9006656 CIFFeP 63/m m c2.347; 2.347; 3.797
90; 90; 120
18.113Dubrovinsky, L. S.; Lazor, P.; Saxena, S. K.; Haggkvist, P.; Weber, H. P.; Le Bihan, T.; Hausermann, D.
Study of laser heated iron using third generation synchrotron X-ray radiation facility with imaging plate at high pressures Sample: epsilon iron phase: P = 61 GPa, T = 300 K
Physics and Chemistry of Minerals, 1999, 26, 539-545
9006657 CIFFeP 63/m m c2.346; 2.346; 3.808
90; 90; 120
18.15Dubrovinsky, L. S.; Lazor, P.; Saxena, S. K.; Haggkvist, P.; Weber, H. P.; Le Bihan, T.; Hausermann, D.
Study of laser heated iron using third generation synchrotron X-ray radiation facility with imaging plate at high pressures Sample epsilon iron phase: P = 61 GPa, T = 1550 K
Physics and Chemistry of Minerals, 1999, 26, 539-545
9006658 CIFMn OF m -3 m4.4459; 4.4459; 4.4459
90; 90; 90
87.878Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #1: P = 0.00 GPa at beginning of experiment
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006659 CIFMn OF m -3 m4.4464; 4.4464; 4.4464
90; 90; 90
87.907Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #1: P = 0.00 GPa at end of experiment
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006660 CIFMn OF m -3 m4.4397; 4.4397; 4.4397
90; 90; 90
87.511Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #1: P = 0.68 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006661 CIFMn OF m -3 m4.4326; 4.4326; 4.4326
90; 90; 90
87.091Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #1: P = 1.43 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006662 CIFMn OF m -3 m4.4254; 4.4254; 4.4254
90; 90; 90
86.668Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #1: P = 2.16 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006663 CIFMn OF m -3 m4.4169; 4.4169; 4.4169
90; 90; 90
86.169Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #1: P = 3.09 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006664 CIFMn OF m -3 m4.4106; 4.4106; 4.4106
90; 90; 90
85.801Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #1: P = 3.73 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006665 CIFMn OF m -3 m4.4042; 4.4042; 4.4042
90; 90; 90
85.428Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #1: P = 4.46 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006666 CIFMn OF m -3 m4.3963; 4.3963; 4.3963
90; 90; 90
84.969Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #1: P = 5.41 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006667 CIFMn OF m -3 m4.3891; 4.3891; 4.3891
90; 90; 90
84.552Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #1: P = 6.17 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006668 CIFMn OF m -3 m4.3846; 4.3846; 4.3846
90; 90; 90
84.293Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #1: P = 6.73 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006669 CIFMn OF m -3 m4.3792; 4.3792; 4.3792
90; 90; 90
83.982Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #1: P = 7.27 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006670 CIFMn OF m -3 m4.3726; 4.3726; 4.3726
90; 90; 90
83.602Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #1: P = 8.09 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006671 CIFCd OF m -3 m4.6963; 4.6963; 4.6963
90; 90; 90
103.578Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #1: P = 0.00 GPa at beginning of experiment
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006672 CIFCd OF m -3 m4.6969; 4.6969; 4.6969
90; 90; 90
103.618Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #1: P = 0.00 GPa at end of experiment
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006673 CIFCd OF m -3 m4.69; 4.69; 4.69
90; 90; 90
103.162Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #1: P = 0.68 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006674 CIFCd OF m -3 m4.6821; 4.6821; 4.6821
90; 90; 90
102.641Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #1: P = 1.43 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006675 CIFCd OF m -3 m4.6749; 4.6749; 4.6749
90; 90; 90
102.168Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #1: P = 2.16 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006676 CIFCd OF m -3 m4.6656; 4.6656; 4.6656
90; 90; 90
101.56Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #1: P = 3.09 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006677 CIFCd OF m -3 m4.6598; 4.6598; 4.6598
90; 90; 90
101.182Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #1: P = 3.73 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006678 CIFCd OF m -3 m4.6522; 4.6522; 4.6522
90; 90; 90
100.687Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #1: P = 4.46 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006679 CIFCd OF m -3 m4.6433; 4.6433; 4.6433
90; 90; 90
100.111Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #1: P = 5.41 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006680 CIFCd OF m -3 m4.6366; 4.6366; 4.6366
90; 90; 90
99.678Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #1: P = 6.17 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006681 CIFCd OF m -3 m4.6309; 4.6309; 4.6309
90; 90; 90
99.311Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #1: P = 6.73 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006682 CIFCd OF m -3 m4.6259; 4.6259; 4.6259
90; 90; 90
98.989Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #1: P = 7.27 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006683 CIFCd OF m -3 m4.619; 4.619; 4.619
90; 90; 90
98.547Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #1: P = 8.09 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006684 CIFCd OF m -3 m4.6953; 4.6953; 4.6953
90; 90; 90
103.512Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #2: P = 0.00 GPa at beginning of experiment
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006685 CIFCd OF m -3 m4.6956; 4.6956; 4.6956
90; 90; 90
103.532Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #2: P = 0.00 GPa at end of experiment
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006686 CIFCd OF m -3 m4.6833; 4.6833; 4.6833
90; 90; 90
102.72Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #2: P = 1.25 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006687 CIFCd OF m -3 m4.6708; 4.6708; 4.6708
90; 90; 90
101.9Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #2: P = 2.56 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006688 CIFCd OF m -3 m4.6595; 4.6595; 4.6595
90; 90; 90
101.162Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #2: P = 3.59 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006689 CIFCd OF m -3 m4.6502; 4.6502; 4.6502
90; 90; 90
100.558Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #2: P = 4.52 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006690 CIFCd OF m -3 m4.6438; 4.6438; 4.6438
90; 90; 90
100.143Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #2: P = 5.30 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006691 CIFCd OF m -3 m4.6371; 4.6371; 4.6371
90; 90; 90
99.71Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #2: P = 6.01 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006692 CIFCd OF m -3 m4.6217; 4.6217; 4.6217
90; 90; 90
98.72Zhang, J.
Room temperature compressibilities of MnO and CdO: further examination of the role of cation type in bulk modulus systematics Sample from Run #2: P = 7.80 GPa
Physics and Chemistry of Minerals, 1999, 26, 644-648
9006693 CIFAl4 Ca O11 Si2P 63/m m c5.4223; 5.4223; 12.7041
90; 90; 120
323.476Gautron, L.; Angel, R. J.; Miletich, R.
Structural characterisation of the high-pressure phase CaAl4Si2O11 Note: Biso values altered to agree with the anisotropic values, as indicated by Ross Angel, March 2004
Physics and Chemistry of Minerals, 1999, 27, 47-51
9006694 CIFCa OF m -3 m4.815; 4.815; 4.815
90; 90; 90
111.632Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: PtRh10% heating wire, T = 298 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006695 CIFCa OF m -3 m4.819; 4.819; 4.819
90; 90; 90
111.91Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: PtRh10% heating wire, T = 407 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006696 CIFCa OF m -3 m4.827; 4.827; 4.827
90; 90; 90
112.469Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: PtRh10% heating wire, T = 500 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006697 CIFCa OF m -3 m4.833; 4.833; 4.833
90; 90; 90
112.889Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: PtRh10% heating wire, T = 585 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006698 CIFCa OF m -3 m4.841; 4.841; 4.841
90; 90; 90
113.45Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: PtRh10% heating wire, T = 688 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006699 CIFCa OF m -3 m4.846; 4.846; 4.846
90; 90; 90
113.802Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: PtRh10% heating wire, T = 778 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006700 CIFCa OF m -3 m4.857; 4.857; 4.857
90; 90; 90
114.579Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: PtRh10% heating wire, T = 875 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006701 CIFCa OF m -3 m4.867; 4.867; 4.867
90; 90; 90
115.288Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: PtRh10% heating wire, T = 1001 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006702 CIFCa OF m -3 m4.876; 4.876; 4.876
90; 90; 90
115.929Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: PtRh10% heating wire, T = 1116 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006703 CIFCa OF m -3 m4.882; 4.882; 4.882
90; 90; 90
116.357Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: PtRh10% heating wire, T = 1222 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006704 CIFCa OF m -3 m4.887; 4.887; 4.887
90; 90; 90
116.715Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: PtRh10% heating wire, T = 1289 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006705 CIFCa OF m -3 m4.894; 4.894; 4.894
90; 90; 90
117.217Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: PtRh10% heating wire, T = 1390 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006706 CIFCa OF m -3 m4.902; 4.902; 4.902
90; 90; 90
117.793Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: PtRh10% heating wire, T = 1485 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006707 CIFCa OF m -3 m4.909; 4.909; 4.909
90; 90; 90
118.298Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: PtRh10% heating wire, T = 1573 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006708 CIFCa OF m -3 m4.915; 4.915; 4.915
90; 90; 90
118.733Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: PtRh10% heating wire, T = 1656 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006709 CIFCa OF m -3 m4.926; 4.926; 4.926
90; 90; 90
119.532Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: PtRh10% heating wire, T = 1812 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006710 CIFCa OF m -3 m4.913; 4.913; 4.913
90; 90; 90
118.588Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: PtRh10% heating wire, T = 1882 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006711 CIFCa OF m -3 m4.937; 4.937; 4.937
90; 90; 90
120.334Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: PtRh10% heating wire, T = 1964 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006712 CIFCa OF m -3 m4.811; 4.811; 4.811
90; 90; 90
111.354Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 300 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006713 CIFCa OF m -3 m4.819; 4.819; 4.819
90; 90; 90
111.91Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 398 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006714 CIFCa OF m -3 m4.823; 4.823; 4.823
90; 90; 90
112.189Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 528 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006715 CIFCa OF m -3 m4.83; 4.83; 4.83
90; 90; 90
112.679Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 664 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006716 CIFCa OF m -3 m4.842; 4.842; 4.842
90; 90; 90
113.521Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 844 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006717 CIFCa OF m -3 m4.857; 4.857; 4.857
90; 90; 90
114.579Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 1022 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006718 CIFCa OF m -3 m4.888; 4.888; 4.888
90; 90; 90
116.787Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 1292 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006719 CIFCa OF m -3 m4.898; 4.898; 4.898
90; 90; 90
117.505Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 1427 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006720 CIFCa OF m -3 m4.901; 4.901; 4.901
90; 90; 90
117.721Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 1548 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006721 CIFCa OF m -3 m4.908; 4.908; 4.908
90; 90; 90
118.226Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 1659 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006722 CIFCa OF m -3 m4.912; 4.912; 4.912
90; 90; 90
118.515Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 1733 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006723 CIFCa OF m -3 m4.914; 4.914; 4.914
90; 90; 90
118.66Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 1711 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006724 CIFCa OF m -3 m4.92; 4.92; 4.92
90; 90; 90
119.095Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 1808 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006725 CIFCa OF m -3 m4.933; 4.933; 4.933
90; 90; 90
120.042Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 1959 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006726 CIFCa OF m -3 m4.945; 4.945; 4.945
90; 90; 90
120.92Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 2114 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006727 CIFCa OF m -3 m4.956; 4.956; 4.956
90; 90; 90
121.729Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 2222 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006728 CIFCa OF m -3 m4.965; 4.965; 4.965
90; 90; 90
122.393Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 2303 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006729 CIFCa OF m -3 m4.973; 4.973; 4.973
90; 90; 90
122.986Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 2362 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006730 CIFCa OF m -3 m4.977; 4.977; 4.977
90; 90; 90
123.283Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 2407 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006731 CIFCa OF m -3 m4.813; 4.813; 4.813
90; 90; 90
111.493Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 298 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006732 CIFCa OF m -3 m4.891; 4.891; 4.891
90; 90; 90
117.002Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 1473 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006733 CIFCa OF m -3 m4.907; 4.907; 4.907
90; 90; 90
118.154Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 1673 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006734 CIFCa OF m -3 m4.915; 4.915; 4.915
90; 90; 90
118.733Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 1773 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006735 CIFCa OF m -3 m4.925; 4.925; 4.925
90; 90; 90
119.459Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 1873 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006736 CIFCa OF m -3 m4.932; 4.932; 4.932
90; 90; 90
119.969Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 1973 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006737 CIFCa OF m -3 m4.943; 4.943; 4.943
90; 90; 90
120.774Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 2073 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006738 CIFCa OF m -3 m4.95; 4.95; 4.95
90; 90; 90
121.287Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 2173 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006739 CIFCa OF m -3 m4.964; 4.964; 4.964
90; 90; 90
122.319Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 2273 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006740 CIFCa OF m -3 m4.969; 4.969; 4.969
90; 90; 90
122.689Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 2373 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006741 CIFCa OF m -3 m4.976; 4.976; 4.976
90; 90; 90
123.209Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 2473 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006742 CIFCa OF m -3 m4.987; 4.987; 4.987
90; 90; 90
124.028Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 2573 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006743 CIFCa OF m -3 m4.997; 4.997; 4.997
90; 90; 90
124.775Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 2673 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006744 CIFCa OF m -3 m5.009; 5.009; 5.009
90; 90; 90
125.676Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 2773 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006745 CIFCa OF m -3 m5.025; 5.025; 5.025
90; 90; 90
126.884Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 2973 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006746 CIFCa OF m -3 m5.03; 5.03; 5.03
90; 90; 90
127.264Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 3073 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006747 CIFMg OF m -3 m4.21; 4.21; 4.21
90; 90; 90
74.618Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 298 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006748 CIFMg OF m -3 m4.216; 4.216; 4.216
90; 90; 90
74.938Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 421 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006749 CIFMg OF m -3 m4.222; 4.222; 4.222
90; 90; 90
75.258Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 505 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006750 CIFMg OF m -3 m4.226; 4.226; 4.226
90; 90; 90
75.472Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 591 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006751 CIFMg OF m -3 m4.232; 4.232; 4.232
90; 90; 90
75.794Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 694 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006752 CIFMg OF m -3 m4.237; 4.237; 4.237
90; 90; 90
76.063Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 790 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006753 CIFMg OF m -3 m4.244; 4.244; 4.244
90; 90; 90
76.441Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 874 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006754 CIFMg OF m -3 m4.249; 4.249; 4.249
90; 90; 90
76.711Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 964 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006755 CIFMg OF m -3 m4.257; 4.257; 4.257
90; 90; 90
77.146Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 1052 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006756 CIFMg OF m -3 m4.261; 4.261; 4.261
90; 90; 90
77.363Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 1120 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006757 CIFMg OF m -3 m4.267; 4.267; 4.267
90; 90; 90
77.691Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 1211 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006758 CIFMg OF m -3 m4.276; 4.276; 4.276
90; 90; 90
78.183Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 1281 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006759 CIFMg OF m -3 m4.275; 4.275; 4.275
90; 90; 90
78.128Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 1335 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006760 CIFMg OF m -3 m4.282; 4.282; 4.282
90; 90; 90
78.513Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 1446 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006761 CIFMg OF m -3 m4.293; 4.293; 4.293
90; 90; 90
79.119Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 1557 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006762 CIFMg OF m -3 m4.303; 4.303; 4.303
90; 90; 90
79.674Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 1738 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006763 CIFMg OF m -3 m4.319; 4.319; 4.319
90; 90; 90
80.566Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 1901 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006764 CIFMg OF m -3 m4.326; 4.326; 4.326
90; 90; 90
80.958Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 2036 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006765 CIFMg OF m -3 m4.336; 4.336; 4.336
90; 90; 90
81.521Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 2153 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006766 CIFMg OF m -3 m4.343; 4.343; 4.343
90; 90; 90
81.916Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 2262 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006767 CIFMg OF m -3 m4.355; 4.355; 4.355
90; 90; 90
82.597Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: IR wire, T = 2385 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006768 CIFMg OF m -3 m4.212; 4.212; 4.212
90; 90; 90
74.725Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 298 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006769 CIFMg OF m -3 m4.281; 4.281; 4.281
90; 90; 90
78.458Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 1474 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006770 CIFMg OF m -3 m4.297; 4.297; 4.297
90; 90; 90
79.341Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 1664 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006771 CIFMg OF m -3 m4.305; 4.305; 4.305
90; 90; 90
79.785Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 1773 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006772 CIFMg OF m -3 m4.31; 4.31; 4.31
90; 90; 90
80.063Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 1873 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006773 CIFMg OF m -3 m4.322; 4.322; 4.322
90; 90; 90
80.734Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 1973 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006774 CIFMg OF m -3 m4.324; 4.324; 4.324
90; 90; 90
80.846Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 2073 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006775 CIFMg OF m -3 m4.343; 4.343; 4.343
90; 90; 90
81.916Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 2273 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006776 CIFMg OF m -3 m4.352; 4.352; 4.352
90; 90; 90
82.426Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 2373 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006777 CIFMg OF m -3 m4.358; 4.358; 4.358
90; 90; 90
82.768Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 2473 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006778 CIFMg OF m -3 m4.371; 4.371; 4.371
90; 90; 90
83.511Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 2573 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006779 CIFMg OF m -3 m4.381; 4.381; 4.381
90; 90; 90
84.085Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 2673 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006780 CIFMg OF m -3 m4.396; 4.396; 4.396
90; 90; 90
84.952Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 2773 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006781 CIFMg OF m -3 m4.403; 4.403; 4.403
90; 90; 90
85.358Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 2873 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006782 CIFMg OF m -3 m4.408; 4.408; 4.408
90; 90; 90
85.649Fiquet, G.; Richet, P.; Montagnac, G.
High-temperature thermal expansion of lime, periclase, corundum and spinel Sample: Re wire, T = 2973 K
Physics and Chemistry of Minerals, 1999, 27, 103-111
9006783 CIFCr2 Mg O4F d -3 m :28.3327; 8.3327; 8.3327
90; 90; 90
578.572Tabira, Y.; Withers, R. L.
Cation ordering in NiAl2O4 spinel by a 111 systematic row CBED technique Sample: picrochromite
Physics and Chemistry of Minerals, 1999, 27, 112-118
9006784 CIFMg OF m -3 m4.2131; 4.2131; 4.2131
90; 90; 90
74.783Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run1 at T = 300 K, P = 0.00 GPa, measured at beginning of the experiments
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006785 CIFMg OF m -3 m4.2136; 4.2136; 4.2136
90; 90; 90
74.81Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run1 at T = 300 K, P = 0.00 GPa, measured at the end of the experiments
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006786 CIFMg OF m -3 m4.1899; 4.1899; 4.1899
90; 90; 90
73.555Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run1 at T = 300 K, P = 2.65 GPa
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006787 CIFMg OF m -3 m4.1942; 4.1942; 4.1942
90; 90; 90
73.781Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run1 at T = 373 K, P = 2.68 GPa
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006788 CIFMg OF m -3 m4.1988; 4.1988; 4.1988
90; 90; 90
74.025Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run1 at T = 473 K, P = 2.62 GPa
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006789 CIFMg OF m -3 m4.2039; 4.2039; 4.2039
90; 90; 90
74.295Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run1 at T = 573 K, P = 2.66 GPa
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006790 CIFMg OF m -3 m4.2081; 4.2081; 4.2081
90; 90; 90
74.517Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run1 at T = 673 K, P = 2.66 GPa
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006791 CIFMg OF m -3 m4.2143; 4.2143; 4.2143
90; 90; 90
74.847Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run1 at T = 773 K, P = 2.61 GPa
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006792 CIFMg OF m -3 m4.2202; 4.2202; 4.2202
90; 90; 90
75.162Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run1 at T = 873 K, P = 2.64 GPa
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006793 CIFMg OF m -3 m4.2251; 4.2251; 4.2251
90; 90; 90
75.424Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run1 at T = 973 K, P = 2.67 GPa
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006794 CIFMg OF m -3 m4.2322; 4.2322; 4.2322
90; 90; 90
75.805Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run1 at T = 1073 K, P = 2.63 GPa
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006795 CIFMg OF m -3 m4.2128; 4.2128; 4.2128
90; 90; 90
74.767Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run2 at T = 300 K, P = 0.00 GPa, measured at beginning of the experiments
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006796 CIFMg OF m -3 m4.2133; 4.2133; 4.2133
90; 90; 90
74.794Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run2 at T = 300 K, P = 0.00 GPa, measured at end of the experiments
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006797 CIFMg OF m -3 m4.1674; 4.1674; 4.1674
90; 90; 90
72.376Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run2 at T = 300 K, P = 5.44 GPa
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006798 CIFMg OF m -3 m4.1697; 4.1697; 4.1697
90; 90; 90
72.496Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run2 at T = 373 K, P = 5.47 GPa
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006799 CIFMg OF m -3 m4.1749; 4.1749; 4.1749
90; 90; 90
72.768Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run2 at T = 473 K, P = 5.44 GPa
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006800 CIFMg OF m -3 m4.1801; 4.1801; 4.1801
90; 90; 90
73.04Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run2 at T = 573 K, P = 5.43 GPa
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006801 CIFMg OF m -3 m4.1842; 4.1842; 4.1842
90; 90; 90
73.255Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run2 at T = 673 K, P = 5.44 GPa
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006802 CIFMg OF m -3 m4.1894; 4.1894; 4.1894
90; 90; 90
73.528Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run2 at T = 773 K, P = 5.39 GPa
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006803 CIFMg OF m -3 m4.1948; 4.1948; 4.1948
90; 90; 90
73.813Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run2 at T = 873 K, P = 5.42 GPa
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006804 CIFMg OF m -3 m4.2005; 4.2005; 4.2005
90; 90; 90
74.114Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run2 at T = 973 K, P = 5.42 GPa
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006805 CIFMg OF m -3 m4.2052; 4.2052; 4.2052
90; 90; 90
74.364Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run2 at T = 1073 K, P = 5.40 GPa
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006806 CIFMg OF m -3 m4.2126; 4.2126; 4.2126
90; 90; 90
74.757Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run3 at T = 300 K, P = 0.00 GPa, measured at beginning of the experiments
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006808 CIFMg OF m -3 m4.1451; 4.1451; 4.1451
90; 90; 90
71.221Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run3 at T = 300 K, P = 8.21 GPa
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006809 CIFMg OF m -3 m4.1476; 4.1476; 4.1476
90; 90; 90
71.349Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run3 at T = 373 K, P = 8.24 GPa
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006810 CIFMg OF m -3 m4.1515; 4.1515; 4.1515
90; 90; 90
71.551Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run3 at T = 473 K, P = 8.21 GPa
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006811 CIFMg OF m -3 m4.1559; 4.1559; 4.1559
90; 90; 90
71.779Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run3 at T = 573 K, P = 8.25 GPa
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006812 CIFMg OF m -3 m4.1605; 4.1605; 4.1605
90; 90; 90
72.017Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run3 at T = 673 K, P = 8.20 GPa
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006813 CIFMg OF m -3 m4.1655; 4.1655; 4.1655
90; 90; 90
72.277Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run3 at T = 773 K, P = 8.20 GPa
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006814 CIFMg OF m -3 m4.1693; 4.1693; 4.1693
90; 90; 90
72.475Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run3 at T = 873 K, P = 8.19 GPa
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006815 CIFMg OF m -3 m4.1752; 4.1752; 4.1752
90; 90; 90
72.783Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run3 at T = 973 K, P = 8.21 GPa
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006816 CIFMg OF m -3 m4.1789; 4.1789; 4.1789
90; 90; 90
72.977Zhang, J.
Effect of pressure on the thermal expansion of MgO up to 8.2 GPa Sample: Run3 at T = 1073 K, P = 8.19 GPa
Physics and Chemistry of Minerals, 2000, 27, 145-148
9006817 CIFGa2 Mg O4F d -3 m :28.2891; 8.2891; 8.2891
90; 90; 90
569.537Millard, R. L.; Peterson, R. C.; Swainson, I. P.
Synthetic MgGa2O4-Mg2GeO4 spinel solid solution and beta-Mg3Ga2GeO8: chemistry, crystal structures, cation ordering, and comparison to Mg2GeO4 olivine Sample: RLM808, quenched from T = 1402 C Locality: synthetic
Physics and Chemistry of Minerals, 2000, 27, 179-193
9006818 CIFGa1.8 Ge0.1 Mg1.1 O4F d -3 m :28.2984; 8.2984; 8.2984
90; 90; 90
571.456Millard, R. L.; Peterson, R. C.; Swainson, I. P.
Synthetic MgGa2O4-Mg2GeO4 spinel solid solution and beta-Mg3Ga2GeO8: chemistry, crystal structures, cation ordering, and comparison to Mg2GeO4 olivine Sample: RLM801, quenched from T = 1402 C Locality: synthetic
Physics and Chemistry of Minerals, 2000, 27, 179-193
9006819 CIFGa1.6 Ge0.2 Mg1.2 O4F d -3 m :28.3007; 8.3007; 8.3007
90; 90; 90
571.932Millard, R. L.; Peterson, R. C.; Swainson, I. P.
Synthetic MgGa2O4-Mg2GeO4 spinel solid solution and beta-Mg3Ga2GeO8: chemistry, crystal structures, cation ordering, and comparison to Mg2GeO4 olivine Sample: RLM802, quenched from T = 1401 C Locality: synthetic
Physics and Chemistry of Minerals, 2000, 27, 179-193
9006820 CIFGa1.5 Ge0.25 Mg1.25 O4F d -3 m :28.3026; 8.3026; 8.3026
90; 90; 90
572.325Millard, R. L.; Peterson, R. C.; Swainson, I. P.
Synthetic MgGa2O4-Mg2GeO4 spinel solid solution and beta-Mg3Ga2GeO8: chemistry, crystal structures, cation ordering, and comparison to Mg2GeO4 olivine Sample: RLM813, quenched from T = 1400 C Locality: synthetic
Physics and Chemistry of Minerals, 2000, 27, 179-193
9006821 CIFGa Ge0.5 Mg1.5 O4I m m a5.8236; 11.8162; 8.3304
90; 90; 90
573.238Millard, R. L.; Peterson, R. C.; Swainson, I. P.
Synthetic MgGa2O4-Mg2GeO4 spinel solid solution and beta-Mg3Ga2GeO8: chemistry, crystal structures, cation ordering, and comparison to Mg2GeO4 olivine Sample: RLM812, beta-Mg3Ga2GeO8 spinelloid, quenched from T = 1350 C
Physics and Chemistry of Minerals, 2000, 27, 179-193
9006822 CIFH6 Mg7 O14 Si2P 637.8563; 7.8563; 9.5642
90; 90; 120
511.229Kagi, H.; Parise, J. B.; Cho, H.; Rossman, G. R.; Loveday, J. S.
Hydrogen bonding interactions in phase A [Mg7Si2O8(OH)6] at ambient and high pressure Sample: P = 0 GPa
Physics and Chemistry of Minerals, 2000, 27, 225-233
9006823 CIFH6 Mg7 O14 Si2P 637.7972; 7.7972; 9.5071
90; 90; 120
500.56Kagi, H.; Parise, J. B.; Cho, H.; Rossman, G. R.; Loveday, J. S.
Hydrogen bonding interactions in phase A [Mg7Si2O8(OH)6] at ambient and high pressure Sample: P = 3.2 GPa
Physics and Chemistry of Minerals, 2000, 27, 225-233
9006824 CIFCo0.754 Ni0.792 O4 Si Zn0.454P b n m4.7564; 10.2283; 5.9696
90; 90; 90
290.42Tsukimura, K.; Sasaki, S.
Determination of cation distribution in (Co,Ni,Zn)2Si04 olivine by synchrotron X-ray diffraction
Physics and Chemistry of Minerals, 2000, 27, 234-241
9006825 CIFAl3.07 Ba0.01 Ca0.01 Fe0.01 H2 K0.07 Mg0.02 Mn0.001 Na0.91 O12 Si2.92 Ti0.005C 1 2/c 15.14; 8.911; 19.38
90; 94.62; 90
884.769Comodi, P.; Zanazzi, P. F.
Structural thermal behavior of paragonite and its dehydroxylate: a high-temperature single-crystal study Sample 2: T = 25 C
Physics and Chemistry of Minerals, 2000, 27, 377-385
9006826 CIFAl3.07 Ba0.01 Ca0.01 Fe0.01 H2 K0.07 Mg0.02 Mn0.001 Na0.91 O12 Si2.92 Ti0.005C 1 2/c 15.152; 8.941; 19.459
90; 94.26; 90
893.884Comodi, P.; Zanazzi, P. F.
Structural thermal behavior of paragonite and its dehydroxylate: a high-temperature single-crystal study Sample 2: T = 210 C
Physics and Chemistry of Minerals, 2000, 27, 377-385
9006827 CIFAl3.07 Ba0.01 Ca0.01 Fe0.01 H2 K0.07 Mg0.02 Mn0.001 Na0.91 O12 Si2.92 Ti0.005C 1 2/c 15.173; 8.985; 19.553
90; 93.58; 90
907.038Comodi, P.; Zanazzi, P. F.
Structural thermal behavior of paragonite and its dehydroxylate: a high-temperature single-crystal study Sample 2: T = 450 C
Physics and Chemistry of Minerals, 2000, 27, 377-385
9006828 CIFAl3.07 Ba0.01 Ca0.01 Fe0.01 H2 K0.07 Mg0.02 Mn0.001 Na0.91 O12 Si2.92 Ti0.005C 1 2/c 15.19; 9.011; 19.603
90; 92.96; 90
915.552Comodi, P.; Zanazzi, P. F.
Structural thermal behavior of paragonite and its dehydroxylate: a high-temperature single-crystal study Sample 2: T = 600 C
Physics and Chemistry of Minerals, 2000, 27, 377-385
9006829 CIFAl3 Na O11 Si3C 1 2/c 15.182; 9.117; 19.55
90; 92.7; 90
922.601Comodi, P.; Zanazzi, P. F.
Structural thermal behavior of paragonite and its dehydroxylate: a high-temperature single-crystal study Sample: Dehydroxylate phase at T = 25 C
Physics and Chemistry of Minerals, 2000, 27, 377-385
9006830 CIFFe3 H2 O10 P2P 1 21/n 17.3294; 7.4921; 7.4148
90; 118.43; 90
358.061Redhammer, G. J.; Tippelt, G.; Roth, G.; Lottermoser, W.; Amthauer, G.
Structure and Mossbauer spectroscopy of barbosalite Fe2+Fe3+2(PO4)2(OH)2 between 80 K and 300 K Sample: T = 298 K
Physics and Chemistry of Minerals, 2000, 27, 419-429
9006831 CIFFe3 H2 O10 P2P 1 21/n 17.3065; 7.5026; 7.4105
90; 118.49; 90
357.033Redhammer, G. J.; Tippelt, G.; Roth, G.; Lottermoser, W.; Amthauer, G.
Structure and Mossbauer spectroscopy of barbosalite Fe2+Fe3+2(PO4)2(OH)2 between 80 K and 300 K Sample: T = 110 K
Physics and Chemistry of Minerals, 2000, 27, 419-429
9006832 CIFCa H2 O2P -3 m 13.5682; 3.5682; 4.8625
90; 90; 120
53.615Nagai, T.; Ito, T.; Hattori, T.; Yamanaka, T.
Compression mechanism and amorphization of portlandite, Ca(OH)2: structural refinement under pressure Sample: P = 0.5 GPa
Physics and Chemistry of Minerals, 2000, 27, 462-466
9006833 CIFCa H2 O2P -3 m 13.5338; 3.5338; 4.712
90; 90; 120
50.959Nagai, T.; Ito, T.; Hattori, T.; Yamanaka, T.
Compression mechanism and amorphization of portlandite, Ca(OH)2: structural refinement under pressure Sample: P = 2.4 GPa
Physics and Chemistry of Minerals, 2000, 27, 462-466
9006834 CIFCa H2 O2P -3 m 13.5104; 3.5104; 4.6294
90; 90; 120
49.405Nagai, T.; Ito, T.; Hattori, T.; Yamanaka, T.
Compression mechanism and amorphization of portlandite, Ca(OH)2: structural refinement under pressure Sample: P = 4.3 GPa
Physics and Chemistry of Minerals, 2000, 27, 462-466
9006835 CIFCa H2 O2P -3 m 13.4806; 3.4806; 4.5352
90; 90; 120
47.581Nagai, T.; Ito, T.; Hattori, T.; Yamanaka, T.
Compression mechanism and amorphization of portlandite, Ca(OH)2: structural refinement under pressure Sample: P = 6.3 GPa
Physics and Chemistry of Minerals, 2000, 27, 462-466
9006836 CIFCa H2 O2P -3 m 13.4575; 3.4575; 4.451
90; 90; 120
46.08Nagai, T.; Ito, T.; Hattori, T.; Yamanaka, T.
Compression mechanism and amorphization of portlandite, Ca(OH)2: structural refinement under pressure Sample: P = 8.1 GPa
Physics and Chemistry of Minerals, 2000, 27, 462-466
9006837 CIFCa H2 O2P -3 m 13.442; 3.442; 4.4053
90; 90; 120
45.199Nagai, T.; Ito, T.; Hattori, T.; Yamanaka, T.
Compression mechanism and amorphization of portlandite, Ca(OH)2: structural refinement under pressure Sample: P = 9.7 GPa
Physics and Chemistry of Minerals, 2000, 27, 462-466
9006838 CIFC Ba O3P m c n5.316; 8.892; 6.428
90; 90; 90
303.851Holl, C. M.; Smyth, J. R.; Laustsen, H. M. S.; Jacobsen, S. D.; Downs, R. T.
Compression of witherite to 8 GPa and the crystal structure of BaCO3 II Sample: P = 0.00 GPa
Physics and Chemistry of Minerals, 2000, 27, 467-473
9006839 CIFC Ba O3P m c n5.3; 8.868; 6.318
90; 90; 90
296.949Holl, C. M.; Smyth, J. R.; Laustsen, H. M. S.; Jacobsen, S. D.; Downs, R. T.
Compression of witherite to 8 GPa and the crystal structure of BaCO3 II Sample: P = 1.26 GPa
Physics and Chemistry of Minerals, 2000, 27, 467-473
9006840 CIFC Ba O3P m c n5.292; 8.856; 6.246
90; 90; 90
292.725Holl, C. M.; Smyth, J. R.; Laustsen, H. M. S.; Jacobsen, S. D.; Downs, R. T.
Compression of witherite to 8 GPa and the crystal structure of BaCO3 II Sample: P = 1.98 GPa
Physics and Chemistry of Minerals, 2000, 27, 467-473
9006841 CIFC Ba O3P m c n5.282; 8.843; 6.148
90; 90; 90
287.165Holl, C. M.; Smyth, J. R.; Laustsen, H. M. S.; Jacobsen, S. D.; Downs, R. T.
Compression of witherite to 8 GPa and the crystal structure of BaCO3 II Sample: P = 2.95 GPa
Physics and Chemistry of Minerals, 2000, 27, 467-473
9006842 CIFC Ba O3P m c n5.274; 8.838; 6.06
90; 90; 90
282.466Holl, C. M.; Smyth, J. R.; Laustsen, H. M. S.; Jacobsen, S. D.; Downs, R. T.
Compression of witherite to 8 GPa and the crystal structure of BaCO3 II Sample: P = 3.94 GPa
Physics and Chemistry of Minerals, 2000, 27, 467-473
9006843 CIFC Ba O3P m c n5.269; 8.838; 5.999
90; 90; 90
279.358Holl, C. M.; Smyth, J. R.; Laustsen, H. M. S.; Jacobsen, S. D.; Downs, R. T.
Compression of witherite to 8 GPa and the crystal structure of BaCO3 II Sample: P = 4.56 GPa
Physics and Chemistry of Minerals, 2000, 27, 467-473
9006844 CIFC Ba O3P m c n5.26; 8.846; 5.895
90; 90; 90
274.294Holl, C. M.; Smyth, J. R.; Laustsen, H. M. S.; Jacobsen, S. D.; Downs, R. T.
Compression of witherite to 8 GPa and the crystal structure of BaCO3 II Sample: P = 5.50 GPa
Physics and Chemistry of Minerals, 2000, 27, 467-473
9006845 CIFC Ba O3P m c n5.255; 8.852; 5.838
90; 90; 90
271.568Holl, C. M.; Smyth, J. R.; Laustsen, H. M. S.; Jacobsen, S. D.; Downs, R. T.
Compression of witherite to 8 GPa and the crystal structure of BaCO3 II Sample: P = 6.20 GPa
Physics and Chemistry of Minerals, 2000, 27, 467-473
9006846 CIFC Ba O3P m c n5.251; 8.868; 5.762
90; 90; 90
268.313Holl, C. M.; Smyth, J. R.; Laustsen, H. M. S.; Jacobsen, S. D.; Downs, R. T.
Compression of witherite to 8 GPa and the crystal structure of BaCO3 II Sample: P = 7.05 GPa
Physics and Chemistry of Minerals, 2000, 27, 467-473
9006847 CIFC Ba O3P -3 1 c5.258; 5.258; 5.64
90; 90; 120
135.036Holl, C. M.; Smyth, J. R.; Laustsen, H. M. S.; Jacobsen, S. D.; Downs, R. T.
Compression of witherite to 8 GPa and the crystal structure of BaCO3 II Sample: P = 7.2 GPa
Physics and Chemistry of Minerals, 2000, 27, 467-473
9006848 CIFH0.3 Mg1.89 O4 Si0.98F d -3 m :28.0693; 8.0693; 8.0693
90; 90; 90
525.421Kudoh, Y.; Kuribayashi, T.; Mizobata, H.; Ohtami, E.
Structure and cation disorder of hydrous ringwoodite, gamma-Mg1.89Si0.98H0.30O4
Physics and Chemistry of Minerals, 2000, 27, 474-479
9006849 CIFGe O2P 42/m n m4.3966; 4.3966; 2.8626
90; 90; 90
55.334Haines, J.; Leger, J. M.; Chateau, C.; Pereira, A. S.
Structural evolution of rutile-type and CaCl2-type germanium dioxide at high pressure Sample: rutile-type, P = 0 GPa
Physics and Chemistry of Minerals, 2000, 27, 575-582
9006850 CIFGe O2P 42/m n m4.3751; 4.3751; 2.8511
90; 90; 90
54.574Haines, J.; Leger, J. M.; Chateau, C.; Pereira, A. S.
Structural evolution of rutile-type and CaCl2-type germanium dioxide at high pressure Sample: rutile-type, P = 4.2 GPa
Physics and Chemistry of Minerals, 2000, 27, 575-582
9006851 CIFGe O2P 42/m n m4.3553; 4.3553; 2.8463
90; 90; 90
53.99Haines, J.; Leger, J. M.; Chateau, C.; Pereira, A. S.
Structural evolution of rutile-type and CaCl2-type germanium dioxide at high pressure Sample: rutile-type, P = 6.2 GPa
Physics and Chemistry of Minerals, 2000, 27, 575-582
9006852 CIFGe O2P 42/m n m4.3417; 4.3417; 2.8407
90; 90; 90
53.548Haines, J.; Leger, J. M.; Chateau, C.; Pereira, A. S.
Structural evolution of rutile-type and CaCl2-type germanium dioxide at high pressure Sample: rutile-type, P = 8.9 GPa
Physics and Chemistry of Minerals, 2000, 27, 575-582
9006853 CIFGe O2P 42/m n m4.334; 4.334; 2.8376
90; 90; 90
53.3Haines, J.; Leger, J. M.; Chateau, C.; Pereira, A. S.
Structural evolution of rutile-type and CaCl2-type germanium dioxide at high pressure Sample: rutile-type, P = 10.4 GPa
Physics and Chemistry of Minerals, 2000, 27, 575-582
9006854 CIFGe O2P 42/m n m4.3349; 4.3349; 2.8424
90; 90; 90
53.413Haines, J.; Leger, J. M.; Chateau, C.; Pereira, A. S.
Structural evolution of rutile-type and CaCl2-type germanium dioxide at high pressure Sample: rutile-type, P = 10.5 GPa
Physics and Chemistry of Minerals, 2000, 27, 575-582
9006855 CIFGe O2P 42/m n m4.298; 4.298; 2.8295
90; 90; 90
52.269Haines, J.; Leger, J. M.; Chateau, C.; Pereira, A. S.
Structural evolution of rutile-type and CaCl2-type germanium dioxide at high pressure Sample: rutile-type, P = 16.1 GPa
Physics and Chemistry of Minerals, 2000, 27, 575-582
9006856 CIFGe O2P 42/m n m4.2835; 4.2835; 2.8193
90; 90; 90
51.73Haines, J.; Leger, J. M.; Chateau, C.; Pereira, A. S.
Structural evolution of rutile-type and CaCl2-type germanium dioxide at high pressure Sample: rutile-type, P = 20.3 GPa
Physics and Chemistry of Minerals, 2000, 27, 575-582
9006857 CIFGe O2P 42/m n m4.263; 4.263; 2.8148
90; 90; 90
51.154Haines, J.; Leger, J. M.; Chateau, C.; Pereira, A. S.
Structural evolution of rutile-type and CaCl2-type germanium dioxide at high pressure Sample: rutile-type, P = 25 GPa
Physics and Chemistry of Minerals, 2000, 27, 575-582
9006858 CIFGe O2P n n m4.2841; 4.2098; 2.8089
90; 90; 90
50.659Haines, J.; Leger, J. M.; Chateau, C.; Pereira, A. S.
Structural evolution of rutile-type and CaCl2-type germanium dioxide at high pressure Sample: CaCl2-type, post-argutite, P = 28 GPa
Physics and Chemistry of Minerals, 2000, 27, 575-582
9006859 CIFGe O2P n n m4.2852; 4.1959; 2.8062
90; 90; 90
50.456Haines, J.; Leger, J. M.; Chateau, C.; Pereira, A. S.
Structural evolution of rutile-type and CaCl2-type germanium dioxide at high pressure Sample: CaCl2-type, post-argutite, P = 29 GPa
Physics and Chemistry of Minerals, 2000, 27, 575-582
9006860 CIFGe O2P n n m4.2866; 4.1742; 2.7995
90; 90; 90
50.092Haines, J.; Leger, J. M.; Chateau, C.; Pereira, A. S.
Structural evolution of rutile-type and CaCl2-type germanium dioxide at high pressure Sample: CaCl2-type, post-argutite, P = 32 GPa
Physics and Chemistry of Minerals, 2000, 27, 575-582
9006861 CIFGe O2P n n m4.2834; 4.1508; 2.7941
90; 90; 90
49.678Haines, J.; Leger, J. M.; Chateau, C.; Pereira, A. S.
Structural evolution of rutile-type and CaCl2-type germanium dioxide at high pressure Sample: CaCl2-type, post-argutite, P = 35 GPa Note: O y-coordinate altered from the reported value
Physics and Chemistry of Minerals, 2000, 27, 575-582
9006862 CIFGe O2P n n m4.2814; 4.1424; 2.7919
90; 90; 90
49.515Haines, J.; Leger, J. M.; Chateau, C.; Pereira, A. S.
Structural evolution of rutile-type and CaCl2-type germanium dioxide at high pressure Sample: CaCl2-type, post-argutite, P = 36 GPa
Physics and Chemistry of Minerals, 2000, 27, 575-582
9006863 CIFLa0.25 Na0.25 O3 Sr0.5 TiI 4/m c m5.49755; 5.49755; 7.7881
90; 90; 90
235.38Mitchell, R. H.; Chakhmouradian, A. R.; Woodward, P. M.
Crystal chemistry of perovskite-type compounds in the tausonite-loparite series, (Sr1-2xNaxLax)TiO3 Sample: synchrotron XRD data
Physics and Chemistry of Minerals, 2000, 27, 583-589
9006864 CIFO3 Sr TiP m -3 m3.90528; 3.90528; 3.90528
90; 90; 90
59.56Mitchell, R. H.; Chakhmouradian, A. R.; Woodward, P. M.
Crystal chemistry of perovskite-type compounds in the tausonite-loparite series, (Sr1-2xNaxLax)TiO3 Sample: x = 0.00
Physics and Chemistry of Minerals, 2000, 27, 583-589
9006865 CIFLa0.05 Na0.05 O3 Sr0.9 TiP m -3 m3.90427; 3.90427; 3.90427
90; 90; 90
59.514Mitchell, R. H.; Chakhmouradian, A. R.; Woodward, P. M.
Crystal chemistry of perovskite-type compounds in the tausonite-loparite series, (Sr1-2xNaxLax)TiO3 Sample: x = 0.05
Physics and Chemistry of Minerals, 2000, 27, 583-589
9006866 CIFLa0.1 Na0.1 O3 Sr0.8 TiP m -3 m3.9017; 3.9017; 3.9017
90; 90; 90
59.397Mitchell, R. H.; Chakhmouradian, A. R.; Woodward, P. M.
Crystal chemistry of perovskite-type compounds in the tausonite-loparite series, (Sr1-2xNaxLax)TiO3 Sample: x = 0.10
Physics and Chemistry of Minerals, 2000, 27, 583-589
9006867 CIFLa0.15 Na0.15 O3 Sr0.7 TiI 4/m c m5.5116; 5.5116; 7.8036
90; 90; 90
237.056Mitchell, R. H.; Chakhmouradian, A. R.; Woodward, P. M.
Crystal chemistry of perovskite-type compounds in the tausonite-loparite series, (Sr1-2xNaxLax)TiO3 Sample: x = 0.15
Physics and Chemistry of Minerals, 2000, 27, 583-589
9006868 CIFLa0.2 Na0.2 O3 Sr0.6 TiI 4/m c m5.5073; 5.5073; 7.8018
90; 90; 90
236.631Mitchell, R. H.; Chakhmouradian, A. R.; Woodward, P. M.
Crystal chemistry of perovskite-type compounds in the tausonite-loparite series, (Sr1-2xNaxLax)TiO3 Sample: x = 0.20
Physics and Chemistry of Minerals, 2000, 27, 583-589
9006869 CIFLa0.25 Na0.25 O3 Sr0.5 TiI 4/m c m5.5016; 5.5016; 7.7976
90; 90; 90
236.015Mitchell, R. H.; Chakhmouradian, A. R.; Woodward, P. M.
Crystal chemistry of perovskite-type compounds in the tausonite-loparite series, (Sr1-2xNaxLax)TiO3 Sample: x = 0.25
Physics and Chemistry of Minerals, 2000, 27, 583-589
9006870 CIFLa0.3 Na0.3 O3 Sr0.4 TiI 4/m c m5.5025; 5.5025; 7.7701
90; 90; 90
235.259Mitchell, R. H.; Chakhmouradian, A. R.; Woodward, P. M.
Crystal chemistry of perovskite-type compounds in the tausonite-loparite series, (Sr1-2xNaxLax)TiO3 Sample: x = 0.30
Physics and Chemistry of Minerals, 2000, 27, 583-589
9006871 CIFLa0.35 Na0.35 O3 Sr0.3 TiI 4/m c m5.4912; 5.4912; 7.7839
90; 90; 90
234.71Mitchell, R. H.; Chakhmouradian, A. R.; Woodward, P. M.
Crystal chemistry of perovskite-type compounds in the tausonite-loparite series, (Sr1-2xNaxLax)TiO3 Sample: x = 0.35
Physics and Chemistry of Minerals, 2000, 27, 583-589
9006872 CIFLa0.4 Na0.4 O3 Sr0.2 TiR -3 c :H5.4882; 5.4882; 13.442
90; 90; 120
350.634Mitchell, R. H.; Chakhmouradian, A. R.; Woodward, P. M.
Crystal chemistry of perovskite-type compounds in the tausonite-loparite series, (Sr1-2xNaxLax)TiO3 Sample: x = 0.40
Physics and Chemistry of Minerals, 2000, 27, 583-589
9006873 CIFLa0.45 Na0.45 O3 Sr0.1 TiR -3 c :H5.4855; 5.4855; 13.44
90; 90; 120
350.237Mitchell, R. H.; Chakhmouradian, A. R.; Woodward, P. M.
Crystal chemistry of perovskite-type compounds in the tausonite-loparite series, (Sr1-2xNaxLax)TiO3 Sample: x = 0.45
Physics and Chemistry of Minerals, 2000, 27, 583-589
9006874 CIFLa0.5 Na0.5 O3 TiR -3 c :H5.482; 5.482; 13.4104
90; 90; 120
349.02Mitchell, R. H.; Chakhmouradian, A. R.; Woodward, P. M.
Crystal chemistry of perovskite-type compounds in the tausonite-loparite series, (Sr1-2xNaxLax)TiO3 Sample: x = 0.50
Physics and Chemistry of Minerals, 2000, 27, 583-589
9006875 CIFFe Mg O4 SiP b n m4.8025; 10.3648; 6.0529
90; 90; 90
301.295Redfern, S. A. T.; Artioli, G.; Rinaldi, R.; Henderson, C. M. B.; Knight, K. S.; Wood, B. J.
Octahedral cation ordering in olivine at high temperature. II: an in situ neutron powder diffraction study on synthetic MgFeSiO4 (Fa50) Sample: T = 100 C
Physics and Chemistry of Minerals, 2000, 27, 630-637
9006876 CIFFe Mg O4 SiP b n m4.8065; 10.3759; 6.0609
90; 90; 90
302.268Redfern, S. A. T.; Artioli, G.; Rinaldi, R.; Henderson, C. M. B.; Knight, K. S.; Wood, B. J.
Octahedral cation ordering in olivine at high temperature. II: an in situ neutron powder diffraction study on synthetic MgFeSiO4 (Fa50) Sample: T = 200 C
Physics and Chemistry of Minerals, 2000, 27, 630-637
9006877 CIFFe Mg O4 SiP b n m4.8106; 10.3863; 6.0682
90; 90; 90
303.194Redfern, S. A. T.; Artioli, G.; Rinaldi, R.; Henderson, C. M. B.; Knight, K. S.; Wood, B. J.
Octahedral cation ordering in olivine at high temperature. II: an in situ neutron powder diffraction study on synthetic MgFeSiO4 (Fa50) Sample: T = 300 C
Physics and Chemistry of Minerals, 2000, 27, 630-637
9006878 CIFFe Mg O4 SiP b n m4.8126; 10.3916; 6.0721
90; 90; 90
303.669Redfern, S. A. T.; Artioli, G.; Rinaldi, R.; Henderson, C. M. B.; Knight, K. S.; Wood, B. J.
Octahedral cation ordering in olivine at high temperature. II: an in situ neutron powder diffraction study on synthetic MgFeSiO4 (Fa50) Sample: T = 350 C
Physics and Chemistry of Minerals, 2000, 27, 630-637
9006879 CIFFe Mg O4 SiP b n m4.8147; 10.3971; 6.076
90; 90; 90
304.158Redfern, S. A. T.; Artioli, G.; Rinaldi, R.; Henderson, C. M. B.; Knight, K. S.; Wood, B. J.
Octahedral cation ordering in olivine at high temperature. II: an in situ neutron powder diffraction study on synthetic MgFeSiO4 (Fa50) Sample: T = 400 C
Physics and Chemistry of Minerals, 2000, 27, 630-637
9006880 CIFFe Mg O4 SiP b n m4.8168; 10.4029; 6.08
90; 90; 90
304.661Redfern, S. A. T.; Artioli, G.; Rinaldi, R.; Henderson, C. M. B.; Knight, K. S.; Wood, B. J.
Octahedral cation ordering in olivine at high temperature. II: an in situ neutron powder diffraction study on synthetic MgFeSiO4 (Fa50) Sample: T = 450 C
Physics and Chemistry of Minerals, 2000, 27, 630-637
9006881 CIFFe Mg O4 SiP b n m4.819; 10.4091; 6.0841
90; 90; 90
305.187Redfern, S. A. T.; Artioli, G.; Rinaldi, R.; Henderson, C. M. B.; Knight, K. S.; Wood, B. J.
Octahedral cation ordering in olivine at high temperature. II: an in situ neutron powder diffraction study on synthetic MgFeSiO4 (Fa50) Sample: T = 500 C
Physics and Chemistry of Minerals, 2000, 27, 630-637
9006882 CIFFe Mg O4 SiP b n m4.8212; 10.4148; 6.0882
90; 90; 90
305.7Redfern, S. A. T.; Artioli, G.; Rinaldi, R.; Henderson, C. M. B.; Knight, K. S.; Wood, B. J.
Octahedral cation ordering in olivine at high temperature. II: an in situ neutron powder diffraction study on synthetic MgFeSiO4 (Fa50) Sample: T = 550 C
Physics and Chemistry of Minerals, 2000, 27, 630-637
9006883 CIFFe Mg O4 SiP b n m4.8233; 10.4211; 6.0923
90; 90; 90
306.224Redfern, S. A. T.; Artioli, G.; Rinaldi, R.; Henderson, C. M. B.; Knight, K. S.; Wood, B. J.
Octahedral cation ordering in olivine at high temperature. II: an in situ neutron powder diffraction study on synthetic MgFeSiO4 (Fa50) Sample: T = 600 C
Physics and Chemistry of Minerals, 2000, 27, 630-637
9006884 CIFFe Mg O4 SiP b n m4.8276; 10.4332; 6.1001
90; 90; 90
307.246Redfern, S. A. T.; Artioli, G.; Rinaldi, R.; Henderson, C. M. B.; Knight, K. S.; Wood, B. J.
Octahedral cation ordering in olivine at high temperature. II: an in situ neutron powder diffraction study on synthetic MgFeSiO4 (Fa50) Sample: T = 700 C
Physics and Chemistry of Minerals, 2000, 27, 630-637
9006885 CIFFe Mg O4 SiP b n m4.8321; 10.4453; 6.1078
90; 90; 90
308.277Redfern, S. A. T.; Artioli, G.; Rinaldi, R.; Henderson, C. M. B.; Knight, K. S.; Wood, B. J.
Octahedral cation ordering in olivine at high temperature. II: an in situ neutron powder diffraction study on synthetic MgFeSiO4 (Fa50) Sample: T = 800 C
Physics and Chemistry of Minerals, 2000, 27, 630-637
9006886 CIFFe Mg O4 SiP b n m4.8341; 10.4515; 6.1115
90; 90; 90
308.775Redfern, S. A. T.; Artioli, G.; Rinaldi, R.; Henderson, C. M. B.; Knight, K. S.; Wood, B. J.
Octahedral cation ordering in olivine at high temperature. II: an in situ neutron powder diffraction study on synthetic MgFeSiO4 (Fa50) Sample: T = 850 C
Physics and Chemistry of Minerals, 2000, 27, 630-637
9006887 CIFFe Mg O4 SiP b n m4.8363; 10.4582; 6.1155
90; 90; 90
309.316Redfern, S. A. T.; Artioli, G.; Rinaldi, R.; Henderson, C. M. B.; Knight, K. S.; Wood, B. J.
Octahedral cation ordering in olivine at high temperature. II: an in situ neutron powder diffraction study on synthetic MgFeSiO4 (Fa50) Sample: T = 900 C
Physics and Chemistry of Minerals, 2000, 27, 630-637
9006888 CIFFe Mg O4 SiP b n m4.8426; 10.481; 6.1284
90; 90; 90
311.049Redfern, S. A. T.; Artioli, G.; Rinaldi, R.; Henderson, C. M. B.; Knight, K. S.; Wood, B. J.
Octahedral cation ordering in olivine at high temperature. II: an in situ neutron powder diffraction study on synthetic MgFeSiO4 (Fa50) Sample: T = 1050 C
Physics and Chemistry of Minerals, 2000, 27, 630-637
9006889 CIFFe Mg O4 SiP b n m4.8472; 10.4955; 6.1368
90; 90; 90
312.202Redfern, S. A. T.; Artioli, G.; Rinaldi, R.; Henderson, C. M. B.; Knight, K. S.; Wood, B. J.
Octahedral cation ordering in olivine at high temperature. II: an in situ neutron powder diffraction study on synthetic MgFeSiO4 (Fa50) Sample: T = 1150 C
Physics and Chemistry of Minerals, 2000, 27, 630-637
9006890 CIFFe Mg O4 SiP b n m4.8488; 10.5009; 6.1399
90; 90; 90
312.624Redfern, S. A. T.; Artioli, G.; Rinaldi, R.; Henderson, C. M. B.; Knight, K. S.; Wood, B. J.
Octahedral cation ordering in olivine at high temperature. II: an in situ neutron powder diffraction study on synthetic MgFeSiO4 (Fa50) Sample: T = 1200 C
Physics and Chemistry of Minerals, 2000, 27, 630-637
9006891 CIFFe Mg O4 SiP b n m4.8494; 10.5023; 6.1409
90; 90; 90
312.755Redfern, S. A. T.; Artioli, G.; Rinaldi, R.; Henderson, C. M. B.; Knight, K. S.; Wood, B. J.
Octahedral cation ordering in olivine at high temperature. II: an in situ neutron powder diffraction study on synthetic MgFeSiO4 (Fa50) Sample: T = 1225 C
Physics and Chemistry of Minerals, 2000, 27, 630-637
9006892 CIFFe Mg O4 SiP b n m4.8497; 10.5034; 6.1418
90; 90; 90
312.853Redfern, S. A. T.; Artioli, G.; Rinaldi, R.; Henderson, C. M. B.; Knight, K. S.; Wood, B. J.
Octahedral cation ordering in olivine at high temperature. II: an in situ neutron powder diffraction study on synthetic MgFeSiO4 (Fa50) Sample: T = 1250 C
Physics and Chemistry of Minerals, 2000, 27, 630-637
9006893 CIFFe2 O4 ZnF d -3 m :28.4412; 8.4412; 8.4412
90; 90; 90
601.468Levy, D.; Pavese, A.; Hanfland, M.
Phase transition of synthetic zinc ferrite spinel (ZnFe2O4) at high pressure, from synchrotron X-ray powder diffraction Sample: P = 0.0 GPa
Physics and Chemistry of Minerals, 2000, 27, 638-644
9006894 CIFFe2 O4 ZnF d -3 m :28.4129; 8.4129; 8.4129
90; 90; 90
595.439Levy, D.; Pavese, A.; Hanfland, M.
Phase transition of synthetic zinc ferrite spinel (ZnFe2O4) at high pressure, from synchrotron X-ray powder diffraction Sample: P = 1.8 GPa
Physics and Chemistry of Minerals, 2000, 27, 638-644
9006895 CIFFe2 O4 ZnF d -3 m :28.3731; 8.3731; 8.3731
90; 90; 90
587.028Levy, D.; Pavese, A.; Hanfland, M.
Phase transition of synthetic zinc ferrite spinel (ZnFe2O4) at high pressure, from synchrotron X-ray powder diffraction Sample: P = 4.6 GPa
Physics and Chemistry of Minerals, 2000, 27, 638-644
9006896 CIFFe2 O4 ZnF d -3 m :28.3603; 8.3603; 8.3603
90; 90; 90
584.34Levy, D.; Pavese, A.; Hanfland, M.
Phase transition of synthetic zinc ferrite spinel (ZnFe2O4) at high pressure, from synchrotron X-ray powder diffraction Sample: P = 5.5 GPa
Physics and Chemistry of Minerals, 2000, 27, 638-644
9006897 CIFFe2 O4 ZnF d -3 m :28.347; 8.347; 8.347
90; 90; 90
581.556Levy, D.; Pavese, A.; Hanfland, M.
Phase transition of synthetic zinc ferrite spinel (ZnFe2O4) at high pressure, from synchrotron X-ray powder diffraction Sample: P = 6.8 GPa
Physics and Chemistry of Minerals, 2000, 27, 638-644
9006898 CIFFe2 O4 ZnF d -3 m :28.3177; 8.3177; 8.3177
90; 90; 90
575.453Levy, D.; Pavese, A.; Hanfland, M.
Phase transition of synthetic zinc ferrite spinel (ZnFe2O4) at high pressure, from synchrotron X-ray powder diffraction Sample: P = 9.0 GPa
Physics and Chemistry of Minerals, 2000, 27, 638-644
9006899 CIFFe2 O4 ZnF d -3 m :28.3069; 8.3069; 8.3069
90; 90; 90
573.214Levy, D.; Pavese, A.; Hanfland, M.
Phase transition of synthetic zinc ferrite spinel (ZnFe2O4) at high pressure, from synchrotron X-ray powder diffraction Sample: P = 10.2 GPa
Physics and Chemistry of Minerals, 2000, 27, 638-644
9006900 CIFFe2 O4 ZnF d -3 m :28.2884; 8.2884; 8.2884
90; 90; 90
569.393Levy, D.; Pavese, A.; Hanfland, M.
Phase transition of synthetic zinc ferrite spinel (ZnFe2O4) at high pressure, from synchrotron X-ray powder diffraction Sample: P = 11.5 GPa
Physics and Chemistry of Minerals, 2000, 27, 638-644
9006901 CIFFe2 O4 ZnF d -3 m :28.2719; 8.2719; 8.2719
90; 90; 90
565.999Levy, D.; Pavese, A.; Hanfland, M.
Phase transition of synthetic zinc ferrite spinel (ZnFe2O4) at high pressure, from synchrotron X-ray powder diffraction Sample: P = 12.9 GPa
Physics and Chemistry of Minerals, 2000, 27, 638-644
9006902 CIFFe2 O4 ZnF d -3 m :28.2634; 8.2634; 8.2634
90; 90; 90
564.256Levy, D.; Pavese, A.; Hanfland, M.
Phase transition of synthetic zinc ferrite spinel (ZnFe2O4) at high pressure, from synchrotron X-ray powder diffraction Sample: P = 14.2 GPa
Physics and Chemistry of Minerals, 2000, 27, 638-644
9006903 CIFFe2 O4 ZnF d -3 m :28.244; 8.244; 8.244
90; 90; 90
560.291Levy, D.; Pavese, A.; Hanfland, M.
Phase transition of synthetic zinc ferrite spinel (ZnFe2O4) at high pressure, from synchrotron X-ray powder diffraction Sample: P = 16.0 GPa
Physics and Chemistry of Minerals, 2000, 27, 638-644
9006904 CIFFe2 O4 ZnF d -3 m :28.2289; 8.2289; 8.2289
90; 90; 90
557.218Levy, D.; Pavese, A.; Hanfland, M.
Phase transition of synthetic zinc ferrite spinel (ZnFe2O4) at high pressure, from synchrotron X-ray powder diffraction Sample: P = 17.8 GPa
Physics and Chemistry of Minerals, 2000, 27, 638-644
9006905 CIFFe2 O4 ZnF d -3 m :28.2151; 8.2151; 8.2151
90; 90; 90
554.42Levy, D.; Pavese, A.; Hanfland, M.
Phase transition of synthetic zinc ferrite spinel (ZnFe2O4) at high pressure, from synchrotron X-ray powder diffraction Sample: P = 19.7 GPa
Physics and Chemistry of Minerals, 2000, 27, 638-644
9006906 CIFFe2 O4 ZnF d -3 m :28.1939; 8.1939; 8.1939
90; 90; 90
550.138Levy, D.; Pavese, A.; Hanfland, M.
Phase transition of synthetic zinc ferrite spinel (ZnFe2O4) at high pressure, from synchrotron X-ray powder diffraction Sample: P = 22.1 GPa
Physics and Chemistry of Minerals, 2000, 27, 638-644
9006907 CIFFe2 O4 ZnF d -3 m :28.1758; 8.1758; 8.1758
90; 90; 90
546.501Levy, D.; Pavese, A.; Hanfland, M.
Phase transition of synthetic zinc ferrite spinel (ZnFe2O4) at high pressure, from synchrotron X-ray powder diffraction Sample: P = 24.4 GPa
Physics and Chemistry of Minerals, 2000, 27, 638-644
9006908 CIFAl H O2P 21 n m4.7134; 4.2241; 2.83252
90; 90; 90
56.395Suzuki, A.; Ohtani, E.; Kamada, T.
A new hydrous phase delta-AlOOH synthesized at 21 GPa and 1000 C
Physics and Chemistry of Minerals, 2000, 27, 689-693
9006909 CIFAl3.844 Fe0.857 H4 Mg0.598 Mn0.701 O14 Si2P -15.4744; 5.4766; 9.1505
83.53; 76.68; 60.06
231.335Koch-Muller M; Kahlenberg, V.; Schmidt, C.; Wirth, R.
Location of OH groups and oxidation processes in triclinic chloritoid
Physics and Chemistry of Minerals, 2000, 27, 703-712
9006910 CIFAl Li O6 Si2C 1 2/c 19.4628; 8.3882; 5.2186
90; 110.187; 90
388.785Arlt, T.; Angel, R. J.
Displacive phase transitions in C-centred clinopyroxenes: spodumene, LiScSi2O6 and ZnSiO3 Sample: P = 0 GPa
Physics and Chemistry of Minerals, 2000, 27, 719-731
9006911 CIFAl Li O6 Si2C 1 2/c 19.3895; 8.324; 5.1865
90; 110.023; 90
380.865Arlt, T.; Angel, R. J.
Displacive phase transitions in C-centred clinopyroxenes: spodumene, LiScSi2O6 and ZnSiO3 Sample: P = 3.164 GPa
Physics and Chemistry of Minerals, 2000, 27, 719-731
9006912 CIFAl Li O6 Si2P 1 21/c 19.3114; 8.3614; 5.11
90; 109.274; 90
375.547Arlt, T.; Angel, R. J.
Displacive phase transitions in C-centred clinopyroxenes: spodumene, LiScSi2O6 and ZnSiO3 Sample: P = 3.342 GPa
Physics and Chemistry of Minerals, 2000, 27, 719-731
9006913 CIFAl Li O6 Si2P 1 21/c 19.2007; 8.2656; 5.024
90; 108.91; 90
361.451Arlt, T.; Angel, R. J.
Displacive phase transitions in C-centred clinopyroxenes: spodumene, LiScSi2O6 and ZnSiO3 Sample: P = 8.835 GPa
Physics and Chemistry of Minerals, 2000, 27, 719-731
9006914 CIFLi O6 Sc Si2C 1 2/c 19.7969; 8.9459; 5.3581
90; 110.376; 90
440.212Arlt, T.; Angel, R. J.
Displacive phase transitions in C-centred clinopyroxenes: spodumene, LiScSi2O6 and ZnSiO3 Sample: P = 0 GPa
Physics and Chemistry of Minerals, 2000, 27, 719-731
9006915 CIFLi O6 Sc Si2P 1 21/c 19.6937; 8.8958; 5.3047
90; 109.992; 90
429.876Arlt, T.; Angel, R. J.
Displacive phase transitions in C-centred clinopyroxenes: spodumene, LiScSi2O6 and ZnSiO3 Sample: P = 2.113 GPa
Physics and Chemistry of Minerals, 2000, 27, 719-731
9006916 CIFLi O6 Sc Si2P 1 21/c 19.5954; 8.8304; 5.2448
90; 109.601; 90
418.646Arlt, T.; Angel, R. J.
Displacive phase transitions in C-centred clinopyroxenes: spodumene, LiScSi2O6 and ZnSiO3 Sample: P = 4.804 GPa
Physics and Chemistry of Minerals, 2000, 27, 719-731
9006917 CIFO3 Si ZnC 1 2/c 19.7633; 9.1598; 5.2889
90; 111.294; 90
440.695Arlt, T.; Angel, R. J.
Displacive phase transitions in C-centred clinopyroxenes: spodumene, LiScSi2O6 and ZnSiO3 Sample: P = .321 GPa
Physics and Chemistry of Minerals, 2000, 27, 719-731
9006918 CIFO3 Si ZnP 1 21/c 19.5781; 8.8905; 5.1798
90; 109.443; 90
415.928Arlt, T.; Angel, R. J.
Displacive phase transitions in C-centred clinopyroxenes: spodumene, LiScSi2O6 and ZnSiO3 Sample: P = 4.258 GPa
Physics and Chemistry of Minerals, 2000, 27, 719-731
9006919 CIFO3 Si ZnC 1 2/c 19.4098; 8.8327; 4.98
90; 103.906; 90
401.776Arlt, T.; Angel, R. J.
Displacive phase transitions in C-centred clinopyroxenes: spodumene, LiScSi2O6 and ZnSiO3 Sample: P = 5.304 GPa
Physics and Chemistry of Minerals, 2000, 27, 719-731
9006920 CIFFe3 O4F d -3 m :18.394; 8.394; 8.394
90; 90; 90
591.435Yamanaka, T.; Shimazu, H.; Ota, K.
Electric conductivity of Fe2SiO4-Fe3O4 spinel solid solutions Sample: Fe(3-x)SixO4, x = 0.000, synthesized at 1200 C, 6 GPa
Physics and Chemistry of Minerals, 2001, 28, 110-118
9006921 CIFFe2.91 O4 Si0.09F d -3 m :18.392; 8.392; 8.392
90; 90; 90
591.012Yamanaka, T.; Shimazu, H.; Ota, K.
Electric conductivity of Fe2SiO4-Fe3O4 spinel solid solutions Sample: Fe(3-x)SixO4, x = 0.090, synthesized at 1200 C, 6 GPa
Physics and Chemistry of Minerals, 2001, 28, 110-118
9006922 CIFFe2.719 O4 Si0.289F d -3 m :18.374; 8.374; 8.374
90; 90; 90
587.217Yamanaka, T.; Shimazu, H.; Ota, K.
Electric conductivity of Fe2SiO4-Fe3O4 spinel solid solutions Sample: Fe(3-x)SixO4, x = 0.288, synthesized at 1200 C, 10 GPa
Physics and Chemistry of Minerals, 2001, 28, 110-118
9006923 CIFFe2.25 O4 Si0.75F d -3 m :18.286; 8.286; 8.286
90; 90; 90
568.898Yamanaka, T.; Shimazu, H.; Ota, K.
Electric conductivity of Fe2SiO4-Fe3O4 spinel solid solutions Sample: Fe(3-x)SixO4, x = 0.750, synthesized at 1200 C, 10 GPa
Physics and Chemistry of Minerals, 2001, 28, 110-118
9006924 CIFFe2.08 O4 Si0.92F d -3 m :18.256; 8.256; 8.256
90; 90; 90
562.742Yamanaka, T.; Shimazu, H.; Ota, K.
Electric conductivity of Fe2SiO4-Fe3O4 spinel solid solutions Sample: Fe(3-x)SixO4, x = 0.920, synthesized at 1200 C, 10 GPa
Physics and Chemistry of Minerals, 2001, 28, 110-118
9006925 CIFFe2 O4 SiF d -3 m :18.2374; 8.2374; 8.2374
90; 90; 90
558.947Yamanaka, T.; Shimazu, H.; Ota, K.
Electric conductivity of Fe2SiO4-Fe3O4 spinel solid solutions Sample: Fe(3-x)SixO4, x = 1.000, synthesized at 1200 C, 10 GPa
Physics and Chemistry of Minerals, 2001, 28, 110-118
9006926 CIFCa2 Co O7 Si2P -4 21 m7.8444; 7.8444; 5.0265
90; 90; 90
309.304Kusaka, K.; Hagiya, K.; Ohmasa, M.; Okano, Y.; Mukai, M.; Iishi, K.; Haga, N.
Determination of structures of Ca2CoSi2O7, Ca2MgSi2O7, and Ca2(Mg.55Fe.45)Si2O7 in incommensurate and normal phases and observation of diffuse streaks at high temperature Sample: T = 297 K Melilite group
Physics and Chemistry of Minerals, 2001, 28, 150-166
9006927 CIFCa2 Co O7 Si2P -4 21 m7.8507; 7.8507; 5.0281
90; 90; 90
309.899Kusaka, K.; Hagiya, K.; Ohmasa, M.; Okano, Y.; Mukai, M.; Iishi, K.; Haga, N.
Determination of structures of Ca2CoSi2O7, Ca2MgSi2O7, and Ca2(Mg.55Fe.45)Si2O7 in incommensurate and normal phases and observation of diffuse streaks at high temperature Sample: T = 393 K Melilite group
Physics and Chemistry of Minerals, 2001, 28, 150-166
9006928 CIFCa2 Co O7 Si2P -4 21 m7.8563; 7.8563; 5.0294
90; 90; 90
310.422Kusaka, K.; Hagiya, K.; Ohmasa, M.; Okano, Y.; Mukai, M.; Iishi, K.; Haga, N.
Determination of structures of Ca2CoSi2O7, Ca2MgSi2O7, and Ca2(Mg.55Fe.45)Si2O7 in incommensurate and normal phases and observation of diffuse streaks at high temperature Sample: T = 468 K Melilite group
Physics and Chemistry of Minerals, 2001, 28, 150-166
9006929 CIFCa2 Co O7 Si2P -4 21 m7.859; 7.859; 5.026
90; 90; 90
310.425Kusaka, K.; Hagiya, K.; Ohmasa, M.; Okano, Y.; Mukai, M.; Iishi, K.; Haga, N.
Determination of structures of Ca2CoSi2O7, Ca2MgSi2O7, and Ca2(Mg.55Fe.45)Si2O7 in incommensurate and normal phases and observation of diffuse streaks at high temperature Sample: T = 493 K Melilite group
Physics and Chemistry of Minerals, 2001, 28, 150-166
9006930 CIFCa2 Co O7 Si2P -4 21 m7.8591; 7.8591; 5.0258
90; 90; 90
310.421Kusaka, K.; Hagiya, K.; Ohmasa, M.; Okano, Y.; Mukai, M.; Iishi, K.; Haga, N.
Determination of structures of Ca2CoSi2O7, Ca2MgSi2O7, and Ca2(Mg.55Fe.45)Si2O7 in incommensurate and normal phases and observation of diffuse streaks at high temperature Sample: T = 503 K Melilite group
Physics and Chemistry of Minerals, 2001, 28, 150-166
9006931 CIFCa2 Co O7 Si2P -4 21 m7.8615; 7.8615; 5.0268
90; 90; 90
310.672Kusaka, K.; Hagiya, K.; Ohmasa, M.; Okano, Y.; Mukai, M.; Iishi, K.; Haga, N.
Determination of structures of Ca2CoSi2O7, Ca2MgSi2O7, and Ca2(Mg.55Fe.45)Si2O7 in incommensurate and normal phases and observation of diffuse streaks at high temperature Sample: T = 533 K Melilite group
Physics and Chemistry of Minerals, 2001, 28, 150-166
9006932 CIFCa2 Co O7 Si2P -4 21 m7.8656; 7.8656; 5.0289
90; 90; 90
311.126Kusaka, K.; Hagiya, K.; Ohmasa, M.; Okano, Y.; Mukai, M.; Iishi, K.; Haga, N.
Determination of structures of Ca2CoSi2O7, Ca2MgSi2O7, and Ca2(Mg.55Fe.45)Si2O7 in incommensurate and normal phases and observation of diffuse streaks at high temperature Sample: T = 573 K Melilite group
Physics and Chemistry of Minerals, 2001, 28, 150-166
9006933 CIFCa2 Co O7 Si2P -4 21 m7.8732; 7.8732; 5.0336
90; 90; 90
312.019Kusaka, K.; Hagiya, K.; Ohmasa, M.; Okano, Y.; Mukai, M.; Iishi, K.; Haga, N.
Determination of structures of Ca2CoSi2O7, Ca2MgSi2O7, and Ca2(Mg.55Fe.45)Si2O7 in incommensurate and normal phases and observation of diffuse streaks at high temperature Sample: T = 673 K Melilite group
Physics and Chemistry of Minerals, 2001, 28, 150-166
9006934 CIFCa2 Co O7 Si2P -4 21 m7.8815; 7.8815; 5.0387
90; 90; 90
312.994Kusaka, K.; Hagiya, K.; Ohmasa, M.; Okano, Y.; Mukai, M.; Iishi, K.; Haga, N.
Determination of structures of Ca2CoSi2O7, Ca2MgSi2O7, and Ca2(Mg.55Fe.45)Si2O7 in incommensurate and normal phases and observation of diffuse streaks at high temperature Sample: T = 773 K Melilite group
Physics and Chemistry of Minerals, 2001, 28, 150-166
9006935 CIFCa2 Mg O7 Si2P -4 21 m7.8348; 7.8348; 5.0087
90; 90; 90
307.454Kusaka, K.; Hagiya, K.; Ohmasa, M.; Okano, Y.; Mukai, M.; Iishi, K.; Haga, N.
Determination of structures of Ca2CoSi2O7, Ca2MgSi2O7, and Ca2(Mg.55Fe.45)Si2O7 in incommensurate and normal phases and observation of diffuse streaks at high temperature Sample: T = 297 K Melilite group
Physics and Chemistry of Minerals, 2001, 28, 150-166
9006936 CIFCa2 Mg O7 Si2P -4 21 m7.8387; 7.8387; 5.0079
90; 90; 90
307.712Kusaka, K.; Hagiya, K.; Ohmasa, M.; Okano, Y.; Mukai, M.; Iishi, K.; Haga, N.
Determination of structures of Ca2CoSi2O7, Ca2MgSi2O7, and Ca2(Mg.55Fe.45)Si2O7 in incommensurate and normal phases and observation of diffuse streaks at high temperature Sample: T = 348 K Melilite group
Physics and Chemistry of Minerals, 2001, 28, 150-166
9006937 CIFCa2 Mg O7 Si2P -4 21 m7.8387; 7.8387; 5.0072
90; 90; 90
307.668Kusaka, K.; Hagiya, K.; Ohmasa, M.; Okano, Y.; Mukai, M.; Iishi, K.; Haga, N.
Determination of structures of Ca2CoSi2O7, Ca2MgSi2O7, and Ca2(Mg.55Fe.45)Si2O7 in incommensurate and normal phases and observation of diffuse streaks at high temperature Sample: T = 359.4 K Melilite group
Physics and Chemistry of Minerals, 2001, 28, 150-166
9006938 CIFCa2 Mg O7 Si2P -4 21 m7.8398; 7.8398; 5.0058
90; 90; 90
307.669Kusaka, K.; Hagiya, K.; Ohmasa, M.; Okano, Y.; Mukai, M.; Iishi, K.; Haga, N.
Determination of structures of Ca2CoSi2O7, Ca2MgSi2O7, and Ca2(Mg.55Fe.45)Si2O7 in incommensurate and normal phases and observation of diffuse streaks at high temperature Sample: T = 359.7 K Melilite group
Physics and Chemistry of Minerals, 2001, 28, 150-166
9006939 CIFCa2 Mg O7 Si2P -4 21 m7.8436; 7.8436; 5.007
90; 90; 90
308.041Kusaka, K.; Hagiya, K.; Ohmasa, M.; Okano, Y.; Mukai, M.; Iishi, K.; Haga, N.
Determination of structures of Ca2CoSi2O7, Ca2MgSi2O7, and Ca2(Mg.55Fe.45)Si2O7 in incommensurate and normal phases and observation of diffuse streaks at high temperature Sample: T = 413 K Melilite group
Physics and Chemistry of Minerals, 2001, 28, 150-166
9006940 CIFCa2 Mg O7 Si2P -4 21 m7.847; 7.847; 5.0097
90; 90; 90
308.474Kusaka, K.; Hagiya, K.; Ohmasa, M.; Okano, Y.; Mukai, M.; Iishi, K.; Haga, N.
Determination of structures of Ca2CoSi2O7, Ca2MgSi2O7, and Ca2(Mg.55Fe.45)Si2O7 in incommensurate and normal phases and observation of diffuse streaks at high temperature Sample: T = 463 K Melilite group
Physics and Chemistry of Minerals, 2001, 28, 150-166
9006941 CIFCa2 Mg O7 Si2P -4 21 m7.8509; 7.8509; 5.0127
90; 90; 90
308.966Kusaka, K.; Hagiya, K.; Ohmasa, M.; Okano, Y.; Mukai, M.; Iishi, K.; Haga, N.
Determination of structures of Ca2CoSi2O7, Ca2MgSi2O7, and Ca2(Mg.55Fe.45)Si2O7 in incommensurate and normal phases and observation of diffuse streaks at high temperature Sample: T = 513 K Melilite group
Physics and Chemistry of Minerals, 2001, 28, 150-166
9006942 CIFCa2 Fe0.45 Mg0.55 O7 Si2P -4 21 m7.8679; 7.8679; 5.0144
90; 90; 90
310.411Kusaka, K.; Hagiya, K.; Ohmasa, M.; Okano, Y.; Mukai, M.; Iishi, K.; Haga, N.
Determination of structures of Ca2CoSi2O7, Ca2MgSi2O7, and Ca2(Mg.55Fe.45)Si2O7 in incommensurate and normal phases and observation of diffuse streaks at high temperature Sample: T = 297 K Melilite group
Physics and Chemistry of Minerals, 2001, 28, 150-166
9006943 CIFCa2 Fe0.45 Mg0.55 O7 Si2P -4 21 m7.8743; 7.8743; 5.0155
90; 90; 90
310.984Kusaka, K.; Hagiya, K.; Ohmasa, M.; Okano, Y.; Mukai, M.; Iishi, K.; Haga, N.
Determination of structures of Ca2CoSi2O7, Ca2MgSi2O7, and Ca2(Mg.55Fe.45)Si2O7 in incommensurate and normal phases and observation of diffuse streaks at high temperature Sample: T = 383 K Melilite group
Physics and Chemistry of Minerals, 2001, 28, 150-166
9006944 CIFCa2 Fe0.45 Mg0.55 O7 Si2P -4 21 m7.8776; 7.8776; 5.0153
90; 90; 90
311.232Kusaka, K.; Hagiya, K.; Ohmasa, M.; Okano, Y.; Mukai, M.; Iishi, K.; Haga, N.
Determination of structures of Ca2CoSi2O7, Ca2MgSi2O7, and Ca2(Mg.55Fe.45)Si2O7 in incommensurate and normal phases and observation of diffuse streaks at high temperature Sample: T = 423 K Melilite group
Physics and Chemistry of Minerals, 2001, 28, 150-166
9006945 CIFCa2 Fe0.45 Mg0.55 O7 Si2P -4 21 m7.8868; 7.8868; 5.0171
90; 90; 90
312.072Kusaka, K.; Hagiya, K.; Ohmasa, M.; Okano, Y.; Mukai, M.; Iishi, K.; Haga, N.
Determination of structures of Ca2CoSi2O7, Ca2MgSi2O7, and Ca2(Mg.55Fe.45)Si2O7 in incommensurate and normal phases and observation of diffuse streaks at high temperature Sample: T = 503 K Melilite group
Physics and Chemistry of Minerals, 2001, 28, 150-166
9006946 CIFCa2 Fe0.45 Mg0.55 O7 Si2P -4 21 m7.8855; 7.8855; 5.017
90; 90; 90
311.963Kusaka, K.; Hagiya, K.; Ohmasa, M.; Okano, Y.; Mukai, M.; Iishi, K.; Haga, N.
Determination of structures of Ca2CoSi2O7, Ca2MgSi2O7, and Ca2(Mg.55Fe.45)Si2O7 in incommensurate and normal phases and observation of diffuse streaks at high temperature Sample: T = 523 K Melilite group
Physics and Chemistry of Minerals, 2001, 28, 150-166
9006947 CIFCa2 Fe0.45 Mg0.55 O7 Si2P -4 21 m7.8859; 7.8859; 5.0179
90; 90; 90
312.05Kusaka, K.; Hagiya, K.; Ohmasa, M.; Okano, Y.; Mukai, M.; Iishi, K.; Haga, N.
Determination of structures of Ca2CoSi2O7, Ca2MgSi2O7, and Ca2(Mg.55Fe.45)Si2O7 in incommensurate and normal phases and observation of diffuse streaks at high temperature Sample: T = 543 K Melilite group
Physics and Chemistry of Minerals, 2001, 28, 150-166
9006948 CIFCa2 Fe0.45 Mg0.55 O7 Si2P -4 21 m7.8875; 7.8875; 5.0191
90; 90; 90
312.252Kusaka, K.; Hagiya, K.; Ohmasa, M.; Okano, Y.; Mukai, M.; Iishi, K.; Haga, N.
Determination of structures of Ca2CoSi2O7, Ca2MgSi2O7, and Ca2(Mg.55Fe.45)Si2O7 in incommensurate and normal phases and observation of diffuse streaks at high temperature Sample: T = 573 K Melilite group
Physics and Chemistry of Minerals, 2001, 28, 150-166
9006949 CIFCa2 Fe0.45 Mg0.55 O7 Si2P -4 21 m7.8958; 7.8958; 5.0223
90; 90; 90
313.109Kusaka, K.; Hagiya, K.; Ohmasa, M.; Okano, Y.; Mukai, M.; Iishi, K.; Haga, N.
Determination of structures of Ca2CoSi2O7, Ca2MgSi2O7, and Ca2(Mg.55Fe.45)Si2O7 in incommensurate and normal phases and observation of diffuse streaks at high temperature Sample: T = 673 K Melilite group
Physics and Chemistry of Minerals, 2001, 28, 150-166
9006950 CIFCa2 Fe0.45 Mg0.55 O7 Si2P -4 21 m7.8989; 7.8989; 5.0237
90; 90; 90
313.442Kusaka, K.; Hagiya, K.; Ohmasa, M.; Okano, Y.; Mukai, M.; Iishi, K.; Haga, N.
Determination of structures of Ca2CoSi2O7, Ca2MgSi2O7, and Ca2(Mg.55Fe.45)Si2O7 in incommensurate and normal phases and observation of diffuse streaks at high temperature Sample: T = 773 K Melilite group
Physics and Chemistry of Minerals, 2001, 28, 150-166
9006951 CIFFe2 Mg O4P b c m2.7392; 9.2; 9.283
90; 90; 90
233.938Andrault, D.; Bolfan-Casanova N
High-pressure phase transformations in the MgFe2O4 and Fe2O3-MgSiO3 systems Sample refined as a CaMn2O4-type phase at P = 37.3 GPa
Physics and Chemistry of Minerals, 2001, 28, 211-217
9006952 CIFCa5 F O12 P3P 63/m9.375; 9.375; 6.887
90; 90; 120
524.208Comodi P; Liu Y; Zanazzi P F; Montagnoli M
Structural and vibrational behaviour of fluorapatite with pressure. Part 1: in situ single-crystal X-ray diffraction investigation Sample: P = .0001 GPa
Physics and Chemistry of Minerals, 2001, 28, 219-224
9006953 CIFCa5 F O12 P3P 63/m9.268; 9.268; 6.834
90; 90; 120
508.367Comodi P; Liu Y; Zanazzi P F; Montagnoli M
Structural and vibrational behaviour of fluorapatite with pressure. Part 1: in situ single-crystal X-ray diffraction investigation Sample: P = 3.04 GPa
Physics and Chemistry of Minerals, 2001, 28, 219-224
9006954 CIFCa5 F O12 P3P 63/m9.224; 9.224; 6.805
90; 90; 120
501.415Comodi P; Liu Y; Zanazzi P F; Montagnoli M
Structural and vibrational behaviour of fluorapatite with pressure. Part 1: in situ single-crystal X-ray diffraction investigation Sample: P = 4.72 GPa
Physics and Chemistry of Minerals, 2001, 28, 219-224
9006955 CIFF3 Mg NaP b n m5.3607; 5.4873; 7.6662
90; 90; 90
225.507Chakhmouradian, A. R.; Ross, K.; Mitchell, R. H.; Swainson, I.
The crystal chemistry of synthetic potassium-bearing neighborite, (Na1-xKx)MgF3 Sample studied by X-ray diffraction
Physics and Chemistry of Minerals, 2001, 28, 277-284
9006956 CIFF3 Mg NaP b n m5.365; 5.492; 7.674
90; 90; 90
226.111Chakhmouradian, A. R.; Ross, K.; Mitchell, R. H.; Swainson, I.
The crystal chemistry of synthetic potassium-bearing neighborite, (Na1-xKx)MgF3 Sample studied by neutron diffraction
Physics and Chemistry of Minerals, 2001, 28, 277-284
9006957 CIFF3 K0.18 Mg Na0.82P b n m5.4486; 5.5101; 7.7623
90; 90; 90
233.042Chakhmouradian, A. R.; Ross, K.; Mitchell, R. H.; Swainson, I.
The crystal chemistry of synthetic potassium-bearing neighborite, (Na1-xKx)MgF3 Sample studied by X-ray diffraction, x = .18
Physics and Chemistry of Minerals, 2001, 28, 277-284
9006958 CIFF3 K0.5 Mg Na0.5P 4/m b m5.566; 5.566; 3.953
90; 90; 90
122.465Chakhmouradian, A. R.; Ross, K.; Mitchell, R. H.; Swainson, I.
The crystal chemistry of synthetic potassium-bearing neighborite, (Na1-xKx)MgF3 Sample studied by neutron diffraction, x = .5 One of two alternative models
Physics and Chemistry of Minerals, 2001, 28, 277-284
9006959 CIFF3 K0.5 Mg Na0.5P m -3 m3.9354; 3.9354; 3.9354
90; 90; 90
60.949Chakhmouradian, A. R.; Ross, K.; Mitchell, R. H.; Swainson, I.
The crystal chemistry of synthetic potassium-bearing neighborite, (Na1-xKx)MgF3 Sample studied by neutron diffraction, x = .5 One of two alternative models
Physics and Chemistry of Minerals, 2001, 28, 277-284
9006960 CIFF3 K0.56 Mg Na0.44P m -3 m3.9494; 3.9492; 3.9492
90; 90; 90
61.596Chakhmouradian, A. R.; Ross, K.; Mitchell, R. H.; Swainson, I.
The crystal chemistry of synthetic potassium-bearing neighborite, (Na1-xKx)MgF3 Sample x = .56
Physics and Chemistry of Minerals, 2001, 28, 277-284
9006961 CIFF3 K0.6 Mg Na0.4P m -3 m3.9545; 3.9545; 3.9545
90; 90; 90
61.841Chakhmouradian, A. R.; Ross, K.; Mitchell, R. H.; Swainson, I.
The crystal chemistry of synthetic potassium-bearing neighborite, (Na1-xKx)MgF3 Sample x = .60
Physics and Chemistry of Minerals, 2001, 28, 277-284
9006962 CIFF3 K0.67 Mg Na0.33P m -3 m3.9622; 3.9622; 3.9622
90; 90; 90
62.203Chakhmouradian, A. R.; Ross, K.; Mitchell, R. H.; Swainson, I.
The crystal chemistry of synthetic potassium-bearing neighborite, (Na1-xKx)MgF3 Sample x = .67
Physics and Chemistry of Minerals, 2001, 28, 277-284
9006963 CIFF3 K0.7 Mg Na0.3P m -3 m3.9659; 3.9659; 3.9659
90; 90; 90
62.377Chakhmouradian, A. R.; Ross, K.; Mitchell, R. H.; Swainson, I.
The crystal chemistry of synthetic potassium-bearing neighborite, (Na1-xKx)MgF3 Sample x = .70
Physics and Chemistry of Minerals, 2001, 28, 277-284
9006964 CIFF3 K0.78 Mg Na0.22P m -3 m3.9742; 3.9742; 3.9742
90; 90; 90
62.77Chakhmouradian, A. R.; Ross, K.; Mitchell, R. H.; Swainson, I.
The crystal chemistry of synthetic potassium-bearing neighborite, (Na1-xKx)MgF3 Sample x = .78
Physics and Chemistry of Minerals, 2001, 28, 277-284
9006965 CIFF3 K0.89 Mg Na0.11P m -3 m3.9824; 3.9824; 3.9824
90; 90; 90
63.159Chakhmouradian, A. R.; Ross, K.; Mitchell, R. H.; Swainson, I.
The crystal chemistry of synthetic potassium-bearing neighborite, (Na1-xKx)MgF3 Sample x = .89
Physics and Chemistry of Minerals, 2001, 28, 277-284
9006966 CIFF3 K MgP m -3 m3.9897; 3.9897; 3.9897
90; 90; 90
63.507Chakhmouradian, A. R.; Ross, K.; Mitchell, R. H.; Swainson, I.
The crystal chemistry of synthetic potassium-bearing neighborite, (Na1-xKx)MgF3 Sample x = 1.00
Physics and Chemistry of Minerals, 2001, 28, 277-284
9006967 CIFO2 SiC 1 21 18.756; 5.0108; 8.2153
90; 90.2825; 90
360.438Graetsch, H.
X-ray powder diffraction study on the modulated high temperature forms of SiO2 tridymite between 110 and 220 C Sample: T = 150 C Locality: synthetic
Physics and Chemistry of Minerals, 2001, 28, 313-321
9006968 CIFO2 SiP 21 21 2126.1753; 4.98437; 8.2006
90; 90; 90
1069.91Graetsch, H.
X-ray powder diffraction study on the modulated high temperature forms of SiO2 tridymite between 110 and 220 C Sample: superstructure, T = 115 C
Physics and Chemistry of Minerals, 2001, 28, 313-321
9006969 CIFFe Li O6 Si2P 1 21/c 19.6223; 8.6638; 5.2655
90; 109.95; 90
412.62Redhammer, G. J.; Roth, G.; Paulus, W.; Andre, G.; Lottermoser, W.; Amthauer, G.; Treutmann, W.; Koppelhuber-Bitschnau B
The crystal and magnetic structure of Li-aegirine LiFeSi2O6: a temperature-dependent study Sample: T = 100 K Pyroxene
Physics and Chemistry of Minerals, 2001, 28, 337-346
9006970 CIFFe Li O6 Si2P 1 21/c 19.635; 8.665; 5.275
90; 110; 90
413.836Redhammer, G. J.; Roth, G.; Paulus, W.; Andre, G.; Lottermoser, W.; Amthauer, G.; Treutmann, W.; Koppelhuber-Bitschnau B
The crystal and magnetic structure of Li-aegirine LiFeSi2O6: a temperature-dependent study Sample: T = 200 K Pyroxene
Physics and Chemistry of Minerals, 2001, 28, 337-346
9006971 CIFFe Li O6 Si2C 1 2/c 19.684; 8.661; 5.292
90; 110.12; 90
416.77Redhammer, G. J.; Roth, G.; Paulus, W.; Andre, G.; Lottermoser, W.; Amthauer, G.; Treutmann, W.; Koppelhuber-Bitschnau B
The crystal and magnetic structure of Li-aegirine LiFeSi2O6: a temperature-dependent study Sample: T = 298 K Pyroxene
Physics and Chemistry of Minerals, 2001, 28, 337-346
9006972 CIFN O PI -4 2 d4.61865; 4.61865; 6.97882
90; 90; 90
148.872Leger, J. M.; Haines, J.; Chateau, C.; Bocquillon, G.; Schmidt, M. W.; Hull, S.; Gorelli, F.; Lesauze, A.; Marchand, R.
Phosphorus oxynitride PON, a silica analogue: structure and compression of the cristobalite-like phase; P-T phase diagram Note: cristobalite structure type
Physics and Chemistry of Minerals, 2001, 28, 388-398
9006973 CIFN O PP 32 2 14.757; 4.757; 5.246
90; 90; 120
102.808Leger, J. M.; Haines, J.; Chateau, C.; Bocquillon, G.; Schmidt, M. W.; Hull, S.; Gorelli, F.; Lesauze, A.; Marchand, R.
Phosphorus oxynitride PON, a silica analogue: structure and compression of the cristobalite-like phase; P-T phase diagram Note: quartz structure type
Physics and Chemistry of Minerals, 2001, 28, 388-398
9006974 CIFFe1.4 O3 Ti0.6R -3 :H5.07894; 5.07894; 13.9269
90; 90; 120
311.122Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm60, T = 203 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9006975 CIFFe1.4 O3 Ti0.6R -3 :H5.0845; 5.0845; 13.9353
90; 90; 120
311.992Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm60, T = 298 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9006976 CIFFe1.4 O3 Ti0.6R -3 :H5.09101; 5.09101; 13.9543
90; 90; 120
313.218Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm60, T = 399 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9006977 CIFFe1.4 O3 Ti0.6R -3 :H5.09641; 5.09641; 13.9695
90; 90; 120
314.225Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm60, T = 498 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9006978 CIFFe1.4 O3 Ti0.6R -3 :H5.09689; 5.09689; 13.9709
90; 90; 120
314.315Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm60, T = 506 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9006979 CIFFe1.4 O3 Ti0.6R -3 :H5.10042; 5.10042; 13.9775
90; 90; 120
314.9Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm60, T = 549 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9006980 CIFFe1.4 O3 Ti0.6R -3 :H5.10401; 5.10401; 13.9829
90; 90; 120
315.465Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm60, T = 598 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9006981 CIFFe1.4 O3 Ti0.6R -3 :H5.10777; 5.10777; 13.9886
90; 90; 120
316.059Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm60, T = 647 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9006982 CIFFe1.4 O3 Ti0.6R -3 :H5.11145; 5.11145; 13.9938
90; 90; 120
316.632Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm60, T = 697 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9006983 CIFFe1.4 O3 Ti0.6R -3 :H5.1131; 5.1131; 13.9964
90; 90; 120
316.895Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm60, T = 721 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9006984 CIFFe1.4 O3 Ti0.6R -3 :H5.11492; 5.11492; 13.9982
90; 90; 120
317.162Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm60, T = 745 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9006985 CIFFe1.4 O3 Ti0.6R -3 :H5.11667; 5.11667; 14.0008
90; 90; 120
317.438Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm60, T = 769 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9006986 CIFFe1.4 O3 Ti0.6R -3 :H5.11842; 5.11842; 14.0031
90; 90; 120
317.707Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm60, T = 793 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9006987 CIFFe1.4 O3 Ti0.6R -3 c :H5.12049; 5.12049; 14.0057
90; 90; 120
318.023Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm60, T = 818 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9006988 CIFFe1.4 O3 Ti0.6R -3 c :H5.12187; 5.12187; 14.0077
90; 90; 120
318.24Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm60, T = 844 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9006989 CIFFe1.4 O3 Ti0.6R -3 c :H5.1271; 5.1271; 14.0198
90; 90; 120
319.166Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm60, T = 921 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9006990 CIFFe1.4 O3 Ti0.6R -3 c :H5.13219; 5.13219; 14.0326
90; 90; 120
320.092Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm60, T = 999 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9006991 CIFFe1.4 O3 Ti0.6R -3 :H5.1188; 5.1188; 14.002
90; 90; 120
317.729Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm60, T = 795 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9006992 CIFFe1.4 O3 Ti0.6R -3 :H5.10615; 5.10615; 13.9817
90; 90; 120
315.702Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm60, T = 594 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9006993 CIFFe1.4 O3 Ti0.6R -3 :H5.09407; 5.09407; 13.9592
90; 90; 120
313.705Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm60, T = 392 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9006994 CIFFe1.4 O3 Ti0.6R -3 :H5.08205; 5.08205; 13.939
90; 90; 120
311.774Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm60, T = 203 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9006995 CIFFe1.35 O3 Ti0.65R -3 :H5.08175; 5.08175; 13.9383
90; 90; 120
311.722Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm65, T = 209 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9006996 CIFFe1.35 O3 Ti0.65R -3 :H5.08755; 5.08755; 13.9485
90; 90; 120
312.662Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm65, T = 301 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9006997 CIFFe1.35 O3 Ti0.65R -3 :H5.09392; 5.09392; 13.9672
90; 90; 120
313.866Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm65, T = 398 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9006998 CIFFe1.35 O3 Ti0.65R -3 :H5.09968; 5.09968; 13.9803
90; 90; 120
314.871Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm65, T = 497 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9006999 CIFFe1.35 O3 Ti0.65R -3 :H5.10668; 5.10668; 13.9928
90; 90; 120
316.019Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm65, T = 597 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9007000 CIFFe1.35 O3 Ti0.65R -3 :H5.11451; 5.11451; 14.0061
90; 90; 120
317.29Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm65, T = 697 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9007001 CIFFe1.35 O3 Ti0.65R -3 :H5.11897; 5.11897; 14.0135
90; 90; 120
318.011Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm65, T = 745 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9007002 CIFFe1.35 O3 Ti0.65R -3 :H5.12327; 5.12327; 14.0202
90; 90; 120
318.698Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm65, T = 794 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9007003 CIFFe1.35 O3 Ti0.65R -3 :H5.12539; 5.12539; 14.0237
90; 90; 120
319.041Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm65, T = 818 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9007004 CIFFe1.35 O3 Ti0.65R -3 :H5.12732; 5.12732; 14.0255
90; 90; 120
319.323Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm65, T = 843 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9007005 CIFFe1.35 O3 Ti0.65R -3 :H5.1294; 5.1294; 14.0271
90; 90; 120
319.618Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm65, T = 868 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9007006 CIFFe1.35 O3 Ti0.65R -3 :H5.13122; 5.13122; 14.0301
90; 90; 120
319.914Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm65, T = 893 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9007007 CIFFe1.35 O3 Ti0.65R -3 c :H5.13336; 5.13336; 14.0327
90; 90; 120
320.24Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm65, T = 918 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9007008 CIFFe1.35 O3 Ti0.65R -3 c :H5.1353; 5.1353; 14.0372
90; 90; 120
320.585Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm65, T = 945 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9007009 CIFFe1.35 O3 Ti0.65R -3 c :H5.13927; 5.13927; 14.0457
90; 90; 120
321.275Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm65, T = 994 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9007010 CIFFe1.35 O3 Ti0.65R -3 :H5.1322; 5.1322; 14.0317
90; 90; 120
320.072Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm65, T = 893 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9007011 CIFFe1.35 O3 Ti0.65R -3 :H5.12512; 5.12512; 14.0236
90; 90; 120
319.006Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm65, T = 793 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9007012 CIFFe1.35 O3 Ti0.65R -3 :H5.11249; 5.11249; 14.0019
90; 90; 120
316.944Harrison, R. J.; Redfern, S. A. T.
Short- and long-range ordering in the ilmenite-hematite solid solution Sample: ilm65, T = 592 C
Physics and Chemistry of Minerals, 2001, 28, 399-412
9007013 CIFC2 H2 Cu3 O8P 1 21/c 15.011; 5.85; 10.353
90; 92.41; 90
303.223Belokoneva, E. L.; Gubina, Y. K.; Forsyth, J. B.
The charge density distribution and antiferromagnetic properties of azurite Cu3[CO3]2(OH)2 Note: O1 x-coordinate altered
Physics and Chemistry of Minerals, 2001, 28, 498-507
9007014 CIFAl9 Ca3 Cl3 K3.36 Na5.64 O42 S1.5 Si9P 6322.161; 22.161; 5.358
90; 90; 120
2278.83Bonaccorsi, E.; Merlino, S.; Pasero, M.; Macedonio, G.
Microsommite: crystal chemistry, phase transitions, Ising model and Monte Carlo simulations
Physics and Chemistry of Minerals, 2001, 28, 509-522
9007015 CIFFe2.88 H5.83 K0.81 O13.64 S2R -3 m :H7.311; 7.311; 17.175
90; 90; 120
795.025Becker, U.; Gasharova, B.
AFM observations and simulations of jarosite growth at the molecular scale: probing the basis for the incorporation of foreign ions into jarosite as a storage mineral
Physics and Chemistry of Minerals, 2001, 28, 545-556
9007016 CIFMg O3 SiC 1 2/c 19.869; 9.059; 5.334
90; 109.91; 90
448.373Shimobayashi, N.; Miyake, A.; Kitamura, M.; Miura, E.
Molecular dynamics simulations of the phase transition between low-temperature and high-temperature clinoenstatites Sample: from Smyth and Burnham, 1972
Physics and Chemistry of Minerals, 2001, 28, 591-599
9007017 CIFAl2 O4 ZnF d -3 m :28.09117; 8.09117; 8.09117
90; 90; 90
529.705Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 0 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007018 CIFAl2 O4 ZnF d -3 m :28.08843; 8.08843; 8.08843
90; 90; 90
529.167Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 0.3 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007019 CIFAl2 O4 ZnF d -3 m :28.08318; 8.08318; 8.08318
90; 90; 90
528.137Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 0.6 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007020 CIFAl2 O4 ZnF d -3 m :28.07922; 8.07922; 8.07922
90; 90; 90
527.361Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 0.8 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007021 CIFAl2 O4 ZnF d -3 m :28.07098; 8.07098; 8.07098
90; 90; 90
525.749Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 1.8 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007022 CIFAl2 O4 ZnF d -3 m :28.0629; 8.0629; 8.0629
90; 90; 90
524.172Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 2.2 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007023 CIFAl2 O4 ZnF d -3 m :28.0532; 8.0532; 8.0532
90; 90; 90
522.282Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 3.1 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007024 CIFAl2 O4 ZnF d -3 m :28.0334; 8.0334; 8.0334
90; 90; 90
518.44Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 4.6 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007025 CIFAl2 O4 ZnF d -3 m :28.01869; 8.01869; 8.01869
90; 90; 90
515.597Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 6.1 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007026 CIFAl2 O4 ZnF d -3 m :27.99606; 7.99606; 7.99606
90; 90; 90
511.244Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 8.3 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007027 CIFAl2 O4 ZnF d -3 m :27.97037; 7.97037; 7.97037
90; 90; 90
506.332Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 10.8 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007028 CIFAl2 O4 ZnF d -3 m :27.95609; 7.95609; 7.95609
90; 90; 90
503.615Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 12.4 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007029 CIFAl2 O4 ZnF d -3 m :27.94532; 7.94532; 7.94532
90; 90; 90
501.573Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 13.7 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007030 CIFAl2 O4 ZnF d -3 m :27.9364; 7.9364; 7.9364
90; 90; 90
499.886Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 14.5 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007031 CIFAl2 O4 ZnF d -3 m :27.92472; 7.92472; 7.92472
90; 90; 90
497.682Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 15.9 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007032 CIFAl2 O4 ZnF d -3 m :27.91769; 7.91769; 7.91769
90; 90; 90
496.359Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 16.7 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007033 CIFAl2 O4 ZnF d -3 m :27.909; 7.909; 7.909
90; 90; 90
494.726Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 17.7 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007034 CIFAl2 O4 ZnF d -3 m :27.9035; 7.9035; 7.9035
90; 90; 90
493.695Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 18.6 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007035 CIFAl2 O4 ZnF d -3 m :27.8909; 7.8909; 7.8909
90; 90; 90
491.337Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 19.9 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007036 CIFAl2 O4 ZnF d -3 m :27.8837; 7.8837; 7.8837
90; 90; 90
489.993Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 21.0 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007037 CIFAl2 O4 ZnF d -3 m :27.8769; 7.8769; 7.8769
90; 90; 90
488.727Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 21.9 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007038 CIFAl2 O4 ZnF d -3 m :27.8629; 7.8629; 7.8629
90; 90; 90
486.125Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 23.8 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007039 CIFAl2 O4 ZnF d -3 m :27.8523; 7.8523; 7.8523
90; 90; 90
484.162Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 25.4 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007040 CIFAl2 O4 ZnF d -3 m :27.8389; 7.8389; 7.8389
90; 90; 90
481.687Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 27.2 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007041 CIFAl2 O4 ZnF d -3 m :27.8231; 7.8231; 7.8231
90; 90; 90
478.781Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 29.8 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007042 CIFAl2 O4 ZnF d -3 m :27.8083; 7.8083; 7.8083
90; 90; 90
476.069Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 32.2 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007043 CIFAl2 O4 ZnF d -3 m :27.79; 7.79; 7.79
90; 90; 90
472.729Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 35.2 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007044 CIFAl2 O4 ZnF d -3 m :27.762; 7.762; 7.762
90; 90; 90
467.65Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 39.8 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007045 CIFAl2 O4 ZnF d -3 m :27.7452; 7.7452; 7.7452
90; 90; 90
464.62Levy, D.; Pavese, A.; Sani, A.; Pischedda, V.
Structure and compressibility of synthetic ZnAl2O4 (gahnite) under high-pressure conditions, from synchrotron X-ray powder diffraction Sample: P = 42.9 GPa
Physics and Chemistry of Minerals, 2001, 28, 612-618
9007046 CIFFe2 O4 SiP n m a10.4597; 6.0818; 4.815
90; 90; 90
306.3Lottermoser, W.; Steiner, K.; Grodzicki, M.; Jiang, K.; Scharfetter, G.; Bats, J. W.; Redhammer, G. J.; Treutmann, W.; Hosoya, S.; Amthauer, G.
The electric field gradient in synthetic fayalite alpha-Fe2SiO4 at moderate temperatures Sample: T = 153 K
Physics and Chemistry of Minerals, 2002, 29, 112-121
9007047 CIFFe SiP 21 34.5507; 4.5507; 4.5507
90; 90; 90
94.24Vocadlo, L.; Knight, K. S.; Price, G. D.; Wood, I. G.
Thermal expansion and crystal structure of FeSi between 4 and 1173 K determined by time-of-flight neutron powder diffraction Sample: T = 300 K, epsilon FeSi phase
Physics and Chemistry of Minerals, 2002, 29, 132-139
9007048 CIFS3 Sb2P n m a11.292; 3.828; 11.205
90; 90; 90
484.345Kyono, A.; Kimata, M.; Matsuhisa, M.; Miyashita, Y.; Okamoto, K.
Low-temperature crystal structures of stibnite implying orbital overlap of Sb 5s2 inert pair electrons Sample: T = 128 K
Physics and Chemistry of Minerals, 2002, 29, 254-260
9007049 CIFS3 Sb2P n m a11.299; 3.828; 11.214
90; 90; 90
485.034Kyono, A.; Kimata, M.; Matsuhisa, M.; Miyashita, Y.; Okamoto, K.
Low-temperature crystal structures of stibnite implying orbital overlap of Sb 5s2 inert pair electrons Sample: T = 173 K
Physics and Chemistry of Minerals, 2002, 29, 254-260
9007050 CIFS3 Sb2P n m a11.305; 3.836; 11.223
90; 90; 90
486.696Kyono, A.; Kimata, M.; Matsuhisa, M.; Miyashita, Y.; Okamoto, K.
Low-temperature crystal structures of stibnite implying orbital overlap of Sb 5s2 inert pair electrons Sample: T = 225 K
Physics and Chemistry of Minerals, 2002, 29, 254-260
9007051 CIFS3 Sb2P n m a11.314; 3.837; 11.234
90; 90; 90
487.688Kyono, A.; Kimata, M.; Matsuhisa, M.; Miyashita, Y.; Okamoto, K.
Low-temperature crystal structures of stibnite implying orbital overlap of Sb 5s2 inert pair electrons Sample: T = 293 K
Physics and Chemistry of Minerals, 2002, 29, 254-260
9007052 CIFCa0.107 Fe0.416 Mg0.463 Mn0.014 O3 SiP 1 21/c 19.719; 8.947; 5.251
90; 108.49; 90
433.035Camara, F.; Carpenter, M. A.; Domeneghetti, M. C.; Tazzoli, V.
Non-convergent ordering and displacive phase transition in pigeonite: in situ HT XRD study Sample: hga, T = 25 C
Physics and Chemistry of Minerals, 2002, 29, 331-340
9007053 CIFCa0.106 Fe0.419 Mg0.461 Mn0.014 O3 SiP 1 21/c 19.801; 9.008; 5.296
90; 109.01; 90
442.07Camara, F.; Carpenter, M. A.; Domeneghetti, M. C.; Tazzoli, V.
Non-convergent ordering and displacive phase transition in pigeonite: in situ HT XRD study Sample: hgd, T = 650 C
Physics and Chemistry of Minerals, 2002, 29, 331-340
9007054 CIFCa0.107 Fe0.416 Mg0.464 Mn0.014 O3 SiP 1 21/c 19.824; 9.017; 5.309
90; 109.19; 90
444.155Camara, F.; Carpenter, M. A.; Domeneghetti, M. C.; Tazzoli, V.
Non-convergent ordering and displacive phase transition in pigeonite: in situ HT XRD study Sample: hgg, T = 750 C
Physics and Chemistry of Minerals, 2002, 29, 331-340
9007055 CIFCa0.107 Fe0.417 Mg0.462 Mn0.014 O3 SiP 1 21/c 19.84; 9.021; 5.3184
90; 109.35; 90
445.429Camara, F.; Carpenter, M. A.; Domeneghetti, M. C.; Tazzoli, V.
Non-convergent ordering and displacive phase transition in pigeonite: in situ HT XRD study Sample: hgi, T = 850 C
Physics and Chemistry of Minerals, 2002, 29, 331-340
9007056 CIFCa0.107 Fe0.411 Mg0.468 Mn0.014 O3 SiC 1 2/c 19.849; 9.018; 5.323
90; 109.44; 90
445.827Camara, F.; Carpenter, M. A.; Domeneghetti, M. C.; Tazzoli, V.
Non-convergent ordering and displacive phase transition in pigeonite: in situ HT XRD study Sample: hgj, T = 950 C
Physics and Chemistry of Minerals, 2002, 29, 331-340
9007057 CIFCu H2 O4 SiR -3 :R8.819; 8.819; 8.819
111.7; 111.7; 111.7
479.521Belokoneva, E. L.; Gubina, Y. K.; Forsyth, J. B.; Brown, P. J.
The charge-density distribution, its multipole refinement and the antiferromagnetic structure of dioptase, Cu6[Si6O18].6H2O
Physics and Chemistry of Minerals, 2002, 29, 430-438
9007058 CIFMg OF m -3 m4.2122; 4.2122; 4.2122
90; 90; 90
74.736Merli, M.; Pavese, A.; Ranzini, M.
Study of the electron density in MgO, (Mg0.963Fe0.037)O and Cu2O by the maximum entropy method and multipole refinements: comparison between methods Sample: multipole refinement
Physics and Chemistry of Minerals, 2002, 29, 455-464
9007059 CIFFe0.037 Mg0.963 OF m -3 m4.2163; 4.2163; 4.2163
90; 90; 90
74.954Merli, M.; Pavese, A.; Ranzini, M.
Study of the electron density in MgO, (Mg0.963Fe0.037)O and Cu2O by the maximum entropy method and multipole refinements: comparison between methods Sample: multipole refinement
Physics and Chemistry of Minerals, 2002, 29, 455-464
9007060 CIFCa F2F m -3 m5.4631; 5.4631; 5.4631
90; 90; 90
163.049Speziale, S.; Duffy, T. S.
Single-crystal elastic constants of fluorite (CaF2) to 9.3 GPa Sample: P = 0 GPa
Physics and Chemistry of Minerals, 2002, 29, 465-472
9007061 CIFCa F2F m -3 m5.4066; 5.4066; 5.4066
90; 90; 90
158.042Speziale, S.; Duffy, T. S.
Single-crystal elastic constants of fluorite (CaF2) to 9.3 GPa Sample: P = 0.95 GPa
Physics and Chemistry of Minerals, 2002, 29, 465-472
9007062 CIFCa F2F m -3 m5.3604; 5.3604; 5.3604
90; 90; 90
154.025Speziale, S.; Duffy, T. S.
Single-crystal elastic constants of fluorite (CaF2) to 9.3 GPa Sample: P = 3.31 GPa
Physics and Chemistry of Minerals, 2002, 29, 465-472
9007063 CIFCa F2F m -3 m5.3485; 5.3485; 5.3485
90; 90; 90
153.002Speziale, S.; Duffy, T. S.
Single-crystal elastic constants of fluorite (CaF2) to 9.3 GPa Sample: P = 3.96 GPa
Physics and Chemistry of Minerals, 2002, 29, 465-472
9007064 CIFCa F2F m -3 m5.322; 5.322; 5.322
90; 90; 90
150.739Speziale, S.; Duffy, T. S.
Single-crystal elastic constants of fluorite (CaF2) to 9.3 GPa Sample: P = 5.54 GPa
Physics and Chemistry of Minerals, 2002, 29, 465-472
9007065 CIFCa F2F m -3 m5.3043; 5.3043; 5.3043
90; 90; 90
149.24Speziale, S.; Duffy, T. S.
Single-crystal elastic constants of fluorite (CaF2) to 9.3 GPa Sample: P = 6.65 GPa
Physics and Chemistry of Minerals, 2002, 29, 465-472
9007066 CIFCa F2F m -3 m5.2991; 5.2991; 5.2991
90; 90; 90
148.801Speziale, S.; Duffy, T. S.
Single-crystal elastic constants of fluorite (CaF2) to 9.3 GPa Sample: P = 6.95 GPa
Physics and Chemistry of Minerals, 2002, 29, 465-472
9007067 CIFCa F2F m -3 m5.2914; 5.2914; 5.2914
90; 90; 90
148.153Speziale, S.; Duffy, T. S.
Single-crystal elastic constants of fluorite (CaF2) to 9.3 GPa Sample: P = 7.48 GPa
Physics and Chemistry of Minerals, 2002, 29, 465-472
9007068 CIFCa F2F m -3 m5.2812; 5.2812; 5.2812
90; 90; 90
147.298Speziale, S.; Duffy, T. S.
Single-crystal elastic constants of fluorite (CaF2) to 9.3 GPa Sample: P = 8.15 GPa
Physics and Chemistry of Minerals, 2002, 29, 465-472
9007069 CIFCa F2F m -3 m5.2786; 5.2786; 5.2786
90; 90; 90
147.081Speziale, S.; Duffy, T. S.
Single-crystal elastic constants of fluorite (CaF2) to 9.3 GPa Sample: P = 8.35 GPa Note: density changed to 3.462 Mg/m3, from personal communication by authors November 2003.
Physics and Chemistry of Minerals, 2002, 29, 465-472
9007070 CIFCa F2F m -3 m5.2695; 5.2695; 5.2695
90; 90; 90
146.322Speziale, S.; Duffy, T. S.
Single-crystal elastic constants of fluorite (CaF2) to 9.3 GPa Sample: P = 8.95 GPa
Physics and Chemistry of Minerals, 2002, 29, 465-472
9007071 CIFCa F2F m -3 m5.2645; 5.2645; 5.2645
90; 90; 90
145.905Speziale, S.; Duffy, T. S.
Single-crystal elastic constants of fluorite (CaF2) to 9.3 GPa Sample: P = 9.31 GPa
Physics and Chemistry of Minerals, 2002, 29, 465-472
9007072 CIFNa2 O5 Si2P 1 21/c 14.8521; 23.9793; 8.141
90; 90.15; 90
947.202Rakic, S.; Kahlenberg, V.; Weidenthaler, C.; Zibrowius, B.
Structural characterization of high-pressure C-Na2Si2O5 by single-crystal diffraction and 29Si MAS NMR
Physics and Chemistry of Minerals, 2002, 29, 477-484
9007073 CIFAl0.28 Ca2.912 Ce0.003 Fe1.336 Mg0.146 Mn0.019 Na0.025 Nd0.003 O12 Si2.337 Ti0.889 Y0.007 Zr0.039I a -3 d12.124; 12.124; 12.124
90; 90; 90
1782.12Quartieri, S.; Boscherini, F.; Chaboy, J.; Dalconi, M. C.; Oberti, R.; Zanetti, A.
Characterization of trace Nd and Ce site preference and coordination in natural melanites: a combined X-ray diffraction and high-energy XAFS study Sample: A204
Physics and Chemistry of Minerals, 2002, 29, 495-502
9007074 CIFAl0.196 Ca2.892 Fe1.391 Mg0.129 Mn0.024 Na0.04 O12 Si2.465 Ti0.826 V0.006 Zr0.028I a -3 d12.127; 12.127; 12.127
90; 90; 90
1783.45Quartieri, S.; Boscherini, F.; Chaboy, J.; Dalconi, M. C.; Oberti, R.; Zanetti, A.
Characterization of trace Nd and Ce site preference and coordination in natural melanites: a combined X-ray diffraction and high-energy XAFS study Sample: V19
Physics and Chemistry of Minerals, 2002, 29, 495-502
9007075 CIFAl0.26 Ca2.973 Fe1.438 Mg0.089 Mn0.031 Na0.018 O12 Si2.657 Ti0.494 V0.024 Zr0.016I a -3 d12.071; 12.071; 12.071
90; 90; 90
1758.85Quartieri, S.; Boscherini, F.; Chaboy, J.; Dalconi, M. C.; Oberti, R.; Zanetti, A.
Characterization of trace Nd and Ce site preference and coordination in natural melanites: a combined X-ray diffraction and high-energy XAFS study Sample: 89/35
Physics and Chemistry of Minerals, 2002, 29, 495-502
9007076 CIFAl1.937 Cr0.061 Fe0.002 Mg0.996 O4 Zn0.004F d -3 m :28.0942; 8.0942; 8.0942
90; 90; 90
530.3Carbonin, S.; Martignago, F.; Menegazzo, G.; Dal Negro, A.
X-ray single-crystal study of spinels: in situ heating Sample: NAT, Heating,1st run, T = 25 C
Physics and Chemistry of Minerals, 2002, 29, 503-514
9007077 CIFAl1.937 Cr0.061 Fe0.002 Mg0.996 O4 Zn0.004F d -3 m :28.1044; 8.1044; 8.1044
90; 90; 90
532.308Carbonin, S.; Martignago, F.; Menegazzo, G.; Dal Negro, A.
X-ray single-crystal study of spinels: in situ heating Sample: NAT, Heating, 1st run, T = 200 C
Physics and Chemistry of Minerals, 2002, 29, 503-514
9007078 CIFAl1.937 Cr0.061 Fe0.002 Mg0.996 O4 Zn0.004F d -3 m :28.119; 8.119; 8.119
90; 90; 90
535.19Carbonin, S.; Martignago, F.; Menegazzo, G.; Dal Negro, A.
X-ray single-crystal study of spinels: in situ heating Sample: NAT, Heating, 1st run, T = 400 C
Physics and Chemistry of Minerals, 2002, 29, 503-514
9007079 CIFAl1.937 Cr0.061 Fe0.002 Mg0.996 O4 Zn0.004F d -3 m :28.1232; 8.1232; 8.1232
90; 90; 90
536.021Carbonin, S.; Martignago, F.; Menegazzo, G.; Dal Negro, A.
X-ray single-crystal study of spinels: in situ heating Sample: NAT, Heating, 1st run, T = 450 C
Physics and Chemistry of Minerals, 2002, 29, 503-514
9007080 CIFAl1.937 Cr0.061 Fe0.002 Mg0.996 O4 Zn0.004F d -3 m :28.1195; 8.1195; 8.1195
90; 90; 90
535.288Carbonin, S.; Martignago, F.; Menegazzo, G.; Dal Negro, A.
X-ray single-crystal study of spinels: in situ heating Sample: NAT, Heating, 1st run, T = 400 C
Physics and Chemistry of Minerals, 2002, 29, 503-514
9007081 CIFAl1.937 Cr0.061 Fe0.002 Mg0.996 O4 Zn0.004F d -3 m :28.0944; 8.0944; 8.0944
90; 90; 90
530.34Carbonin, S.; Martignago, F.; Menegazzo, G.; Dal Negro, A.
X-ray single-crystal study of spinels: in situ heating Sample: NAT, Heating, 1st run, T = 25 C
Physics and Chemistry of Minerals, 2002, 29, 503-514
9007082 CIFAl1.937 Cr0.061 Fe0.002 Mg0.996 O4 Zn0.004F d -3 m :28.1271; 8.1271; 8.1271
90; 90; 90
536.793Carbonin, S.; Martignago, F.; Menegazzo, G.; Dal Negro, A.
X-ray single-crystal study of spinels: in situ heating Sample: NAT, Heating, 2nd run, T = 500 C
Physics and Chemistry of Minerals, 2002, 29, 503-514
9007083 CIFAl1.937 Cr0.061 Fe0.002 Mg0.996 O4 Zn0.004F d -3 m :28.1235; 8.1235; 8.1235
90; 90; 90
536.08Carbonin, S.; Martignago, F.; Menegazzo, G.; Dal Negro, A.
X-ray single-crystal study of spinels: in situ heating Sample: NAT, Heating, 2nd run, T = 450 C
Physics and Chemistry of Minerals, 2002, 29, 503-514
9007084 CIFAl1.937 Cr0.061 Fe0.002 Mg0.996 O4 Zn0.004F d -3 m :28.1323; 8.1323; 8.1323
90; 90; 90
537.824Carbonin, S.; Martignago, F.; Menegazzo, G.; Dal Negro, A.
X-ray single-crystal study of spinels: in situ heating Sample: NAT, Heating, 3rd run, T = 550 C
Physics and Chemistry of Minerals, 2002, 29, 503-514
9007085 CIFAl1.937 Cr0.061 Fe0.002 Mg0.996 O4 Zn0.004F d -3 m :28.1282; 8.1282; 8.1282
90; 90; 90
537.011Carbonin, S.; Martignago, F.; Menegazzo, G.; Dal Negro, A.
X-ray single-crystal study of spinels: in situ heating Sample: NAT, Heating, 3rd run, T = 500 C
Physics and Chemistry of Minerals, 2002, 29, 503-514
9007086 CIFAl1.937 Cr0.061 Fe0.002 Mg0.996 O4 Zn0.004F d -3 m :28.1362; 8.1362; 8.1362
90; 90; 90
538.598Carbonin, S.; Martignago, F.; Menegazzo, G.; Dal Negro, A.
X-ray single-crystal study of spinels: in situ heating Sample: NAT, Heating, 4th run, T = 600 C
Physics and Chemistry of Minerals, 2002, 29, 503-514
9007087 CIFAl1.937 Cr0.061 Fe0.002 Mg0.996 O4 Zn0.004F d -3 m :28.1441; 8.1441; 8.1441
90; 90; 90
540.169Carbonin, S.; Martignago, F.; Menegazzo, G.; Dal Negro, A.
X-ray single-crystal study of spinels: in situ heating Sample: NAT, Heating, 4th run, T = 700 C
Physics and Chemistry of Minerals, 2002, 29, 503-514
9007088 CIFAl1.937 Cr0.061 Fe0.002 Mg0.996 O4 Zn0.004F d -3 m :28.1516; 8.1516; 8.1516
90; 90; 90
541.662Carbonin, S.; Martignago, F.; Menegazzo, G.; Dal Negro, A.
X-ray single-crystal study of spinels: in situ heating Sample: NAT, Heating, 4th run, T = 800 C
Physics and Chemistry of Minerals, 2002, 29, 503-514
9007089 CIFAl1.937 Cr0.061 Fe0.002 Mg0.996 O4 Zn0.004F d -3 m :28.1592; 8.1592; 8.1592
90; 90; 90
543.179Carbonin, S.; Martignago, F.; Menegazzo, G.; Dal Negro, A.
X-ray single-crystal study of spinels: in situ heating Sample: NAT, Heating, 4th run, T = 900 C
Physics and Chemistry of Minerals, 2002, 29, 503-514
9007090 CIFAl1.937 Cr0.061 Fe0.002 Mg0.996 O4 Zn0.004F d -3 m :28.151; 8.151; 8.151
90; 90; 90
541.543Carbonin, S.; Martignago, F.; Menegazzo, G.; Dal Negro, A.
X-ray single-crystal study of spinels: in situ heating Sample: NAT, Cooling, T = 800 C
Physics and Chemistry of Minerals, 2002, 29, 503-514
9007092 CIFAl1.937 Cr0.061 Fe0.002 Mg0.996 O4 Zn0.004F d -3 m :28.1431; 8.1431; 8.1431
90; 90; 90
539.97Carbonin, S.; Martignago, F.; Menegazzo, G.; Dal Negro, A.
X-ray single-crystal study of spinels: in situ heating Sample: NAT, Cooling, T = 700 C
Physics and Chemistry of Minerals, 2002, 29, 503-514
9007093 CIFAl1.937 Cr0.061 Fe0.002 Mg0.996 O4 Zn0.004F d -3 m :28.135; 8.135; 8.135
90; 90; 90
538.36Carbonin, S.; Martignago, F.; Menegazzo, G.; Dal Negro, A.
X-ray single-crystal study of spinels: in situ heating Sample: NAT, Cooling, T = 600 C
Physics and Chemistry of Minerals, 2002, 29, 503-514
9007094 CIFAl1.937 Cr0.061 Fe0.002 Mg0.996 O4 Zn0.004F d -3 m :28.1271; 8.1271; 8.1271
90; 90; 90
536.793Carbonin, S.; Martignago, F.; Menegazzo, G.; Dal Negro, A.
X-ray single-crystal study of spinels: in situ heating Sample: NAT, Cooling, T = 500 C
Physics and Chemistry of Minerals, 2002, 29, 503-514
9007095 CIFAl1.937 Cr0.061 Fe0.002 Mg0.996 O4 Zn0.004F d -3 m :28.1183; 8.1183; 8.1183
90; 90; 90
535.051Carbonin, S.; Martignago, F.; Menegazzo, G.; Dal Negro, A.
X-ray single-crystal study of spinels: in situ heating Sample: NAT, Cooling, T = 400 C
Physics and Chemistry of Minerals, 2002, 29, 503-514
9007096 CIFAl1.937 Cr0.061 Fe0.002 Mg0.996 O4 Zn0.004F d -3 m :28.1036; 8.1036; 8.1036
90; 90; 90
532.15Carbonin, S.; Martignago, F.; Menegazzo, G.; Dal Negro, A.
X-ray single-crystal study of spinels: in situ heating Sample: NAT, Cooling, T = 200 C
Physics and Chemistry of Minerals, 2002, 29, 503-514

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