Crystallography Open Database

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9006345 CIFNa2 O7 Si3C 1 2/c 18.922; 4.849; 11.567
90; 102.64; 90
488.292Fleet, M. E.; Henderson, G. S.
Soidium trisilicate: A new high-pressure silicate structure (Na2Si[Si2O7])
Physics and Chemistry of Minerals, 1995, 22, 383-386
9006346 CIFAl K O8 Si3C 1 2/m 18.58804; 13.00492; 7.19238
90; 116.026; 90
721.836Tseng, H.-Y.; Heaney, P. J.; Onstott, T. C.
Characterization of lattice strain induced by neutron irradiation Sample: Unirradiated
Physics and Chemistry of Minerals, 1995, 22, 399-405
9006347 CIFAl K O8 Si3C 1 2/m 18.59122; 13.00089; 7.19192
90; 116.009; 90
721.938Tseng, H.-Y.; Heaney, P. J.; Onstott, T. C.
Characterization of lattice strain induced by neutron irradiation Sample: neutron dose = 6.3*10^18 n/cm2
Physics and Chemistry of Minerals, 1995, 22, 399-405
9006348 CIFAl K O8 Si3C 1 2/m 18.59046; 12.99323; 7.18763
90; 115.99; 90
721.135Tseng, H.-Y.; Heaney, P. J.; Onstott, T. C.
Characterization of lattice strain induced by neutron irradiation Sample: neutron dose = 1.26*10^19 n/cm2
Physics and Chemistry of Minerals, 1995, 22, 399-405
9006349 CIFCu F3 KI 4/m c m5.8604; 5.8604; 7.8528
90; 90; 90
269.699Burns, P. C.; Hawthorne, F. C.; Hofmeister, A. M.; Moret, S. L.
A structural phase-transition in K(Mg1-xCux)F3 perovskite Sample: x = 1.000
Physics and Chemistry of Minerals, 1996, 23, 141-150
9006350 CIFCu0.95 F3 K Mg0.05I 4/m c m5.8564; 5.8564; 7.8555
90; 90; 90
269.423Burns, P. C.; Hawthorne, F. C.; Hofmeister, A. M.; Moret, S. L.
A structural phase-transition in K(Mg1-xCux)F3 perovskite Sample: x = 0.950
Physics and Chemistry of Minerals, 1996, 23, 141-150
9006351 CIFCu0.9 F3 K Mg0.1I 4/m c m5.8488; 5.8488; 7.8585
90; 90; 90
268.827Burns, P. C.; Hawthorne, F. C.; Hofmeister, A. M.; Moret, S. L.
A structural phase-transition in K(Mg1-xCux)F3 perovskite Sample: x = 0.900
Physics and Chemistry of Minerals, 1996, 23, 141-150
9006352 CIFCu0.85 F3 K Mg0.15I 4/m c m5.8423; 5.8423; 7.8647
90; 90; 90
268.442Burns, P. C.; Hawthorne, F. C.; Hofmeister, A. M.; Moret, S. L.
A structural phase-transition in K(Mg1-xCux)F3 perovskite Sample: x = 0.850
Physics and Chemistry of Minerals, 1996, 23, 141-150
9006353 CIFCu0.8 F3 K Mg0.2I 4/m c m5.8311; 5.8311; 7.8746
90; 90; 90
267.75Burns, P. C.; Hawthorne, F. C.; Hofmeister, A. M.; Moret, S. L.
A structural phase-transition in K(Mg1-xCux)F3 perovskite Sample: x = 0.800
Physics and Chemistry of Minerals, 1996, 23, 141-150
9006354 CIFCu0.75 F3 K Mg0.25I 4/m c m5.8149; 5.8149; 7.8863
90; 90; 90
266.66Burns, P. C.; Hawthorne, F. C.; Hofmeister, A. M.; Moret, S. L.
A structural phase-transition in K(Mg1-xCux)F3 perovskite Sample: x = 0.750
Physics and Chemistry of Minerals, 1996, 23, 141-150
9006355 CIFCu0.7 F3 K Mg0.3I 4/m c m5.8018; 5.8018; 7.9006
90; 90; 90
265.941Burns, P. C.; Hawthorne, F. C.; Hofmeister, A. M.; Moret, S. L.
A structural phase-transition in K(Mg1-xCux)F3 perovskite Sample: x = 0.700
Physics and Chemistry of Minerals, 1996, 23, 141-150
9006356 CIFCu0.65 F3 K Mg0.35I 4/m c m5.7746; 5.7746; 7.9245
90; 90; 90
264.25Burns, P. C.; Hawthorne, F. C.; Hofmeister, A. M.; Moret, S. L.
A structural phase-transition in K(Mg1-xCux)F3 perovskite Sample: x = 0.650
Physics and Chemistry of Minerals, 1996, 23, 141-150
9006357 CIFCu0.575 F3 K Mg0.425P m -3 m4.0226; 4.0226; 4.0226
90; 90; 90
65.091Burns, P. C.; Hawthorne, F. C.; Hofmeister, A. M.; Moret, S. L.
A structural phase-transition in K(Mg1-xCux)F3 perovskite Sample: x = 0.575
Physics and Chemistry of Minerals, 1996, 23, 141-150
9006358 CIFCu0.5 F3 K Mg0.5P m -3 m4.0112; 4.0112; 4.0112
90; 90; 90
64.539Burns, P. C.; Hawthorne, F. C.; Hofmeister, A. M.; Moret, S. L.
A structural phase-transition in K(Mg1-xCux)F3 perovskite Sample: x = 0.500
Physics and Chemistry of Minerals, 1996, 23, 141-150
9006359 CIFCu0.4 F3 K Mg0.6P m -3 m4.0068; 4.0068; 4.0068
90; 90; 90
64.327Burns, P. C.; Hawthorne, F. C.; Hofmeister, A. M.; Moret, S. L.
A structural phase-transition in K(Mg1-xCux)F3 perovskite Sample: x = 0.400
Physics and Chemistry of Minerals, 1996, 23, 141-150
9006360 CIFCu0.3 F3 K Mg0.7P m -3 m3.9987; 3.9987; 3.9987
90; 90; 90
63.938Burns, P. C.; Hawthorne, F. C.; Hofmeister, A. M.; Moret, S. L.
A structural phase-transition in K(Mg1-xCux)F3 perovskite Sample: x = 0.300
Physics and Chemistry of Minerals, 1996, 23, 141-150
9006361 CIFCu0.2 F3 K Mg0.8P m -3 m3.9978; 3.9978; 3.9978
90; 90; 90
63.894Burns, P. C.; Hawthorne, F. C.; Hofmeister, A. M.; Moret, S. L.
A structural phase-transition in K(Mg1-xCux)F3 perovskite Sample: x = 0.200
Physics and Chemistry of Minerals, 1996, 23, 141-150
9006362 CIFCu0.1 F3 K Mg0.9P m -3 m3.9894; 3.9894; 3.9894
90; 90; 90
63.493Burns, P. C.; Hawthorne, F. C.; Hofmeister, A. M.; Moret, S. L.
A structural phase-transition in K(Mg1-xCux)F3 perovskite Sample: x = 0.100
Physics and Chemistry of Minerals, 1996, 23, 141-150
9006363 CIFF3 K MgP m -3 m3.9859; 3.9859; 3.9859
90; 90; 90
63.326Burns, P. C.; Hawthorne, F. C.; Hofmeister, A. M.; Moret, S. L.
A structural phase-transition in K(Mg1-xCux)F3 perovskite Sample: x = 0.000
Physics and Chemistry of Minerals, 1996, 23, 141-150
9006364 CIFAl2 Ca H9.4 O17.77 Si4C 1 2/m 114.8066; 13.1678; 7.5389
90; 110.647; 90
1375.45Stahl, K.; Artioli, G.; Hanson, J. C.
The dehydration process in the zeolite laumontite: a real-time synchrotron X-ray powder diffraction study Sample: T = 310 K
Physics and Chemistry of Minerals, 1996, 23, 328-336
9006365 CIFAl2 Ca H7.92 O16.96 Si4C 1 2/m 114.7612; 13.0891; 7.548
90; 111.804; 90
1354.02Stahl, K.; Artioli, G.; Hanson, J. C.
The dehydration process in the zeolite laumontite: a real-time synchrotron X-ray powder diffraction study Sample: T = 367 K
Physics and Chemistry of Minerals, 1996, 23, 328-336
9006366 CIFAl2 Ca H6.1 O16.1 Si4C 1 2/m 114.6967; 13.0756; 7.47
90; 111.785; 90
1332.98Stahl, K.; Artioli, G.; Hanson, J. C.
The dehydration process in the zeolite laumontite: a real-time synchrotron X-ray powder diffraction study Sample: T = 425 K
Physics and Chemistry of Minerals, 1996, 23, 328-336
9006367 CIFAl2 Ca H4.24 O14.53 Si4C 1 2/m 114.5601; 13.1629; 7.4291
90; 110.582; 90
1332.93Stahl, K.; Artioli, G.; Hanson, J. C.
The dehydration process in the zeolite laumontite: a real-time synchrotron X-ray powder diffraction study Sample: T = 500 K
Physics and Chemistry of Minerals, 1996, 23, 328-336
9006368 CIFAl2 Ca H3.68 O14.13 Si4C 1 2/m 114.5279; 13.1979; 7.437
90; 110.368; 90
1336.8Stahl, K.; Artioli, G.; Hanson, J. C.
The dehydration process in the zeolite laumontite: a real-time synchrotron X-ray powder diffraction study Sample: T = 584 K
Physics and Chemistry of Minerals, 1996, 23, 328-336
9006369 CIFCl NaF m -3 m5.5937; 5.5937; 5.5937
90; 90; 90
175.024Wang, K.; Reeber, R. R.
Thermal expansion of alkali halides at high pressure: NaCl as an example Sample: T = 50 K, Molar volume = 26.35 cc/mol
Physics and Chemistry of Minerals, 1996, 23, 354-360
9006370 CIFCl NaF m -3 m5.5986; 5.5986; 5.5986
90; 90; 90
175.484Wang, K.; Reeber, R. R.
Thermal expansion of alkali halides at high pressure: NaCl as an example Sample: T = 100 K, Molar volume = 26.42 cc/mol
Physics and Chemistry of Minerals, 1996, 23, 354-360
9006371 CIFCl NaF m -3 m5.6071; 5.6071; 5.6071
90; 90; 90
176.285Wang, K.; Reeber, R. R.
Thermal expansion of alkali halides at high pressure: NaCl as an example Sample: T = 150 K, Molar volume = 26.54 cc/mol
Physics and Chemistry of Minerals, 1996, 23, 354-360
9006372 CIFCl NaF m -3 m5.6162; 5.6162; 5.6162
90; 90; 90
177.145Wang, K.; Reeber, R. R.
Thermal expansion of alkali halides at high pressure: NaCl as an example Sample: T = 200 K, Molar volume = 26.67 cc/mol
Physics and Chemistry of Minerals, 1996, 23, 354-360
9006373 CIFCl NaF m -3 m5.6267; 5.6267; 5.6267
90; 90; 90
178.14Wang, K.; Reeber, R. R.
Thermal expansion of alkali halides at high pressure: NaCl as an example Sample: T = 250 K, Molar volume = 26.82 cc/mol
Physics and Chemistry of Minerals, 1996, 23, 354-360
9006374 CIFCl NaF m -3 m5.6379; 5.6379; 5.6379
90; 90; 90
179.206Wang, K.; Reeber, R. R.
Thermal expansion of alkali halides at high pressure: NaCl as an example Sample: T = 300 K, Molar volume = 26.98 cc/mol
Physics and Chemistry of Minerals, 1996, 23, 354-360
9006375 CIFCl NaF m -3 m5.6497; 5.6497; 5.6497
90; 90; 90
180.333Wang, K.; Reeber, R. R.
Thermal expansion of alkali halides at high pressure: NaCl as an example Sample: T = 350 K, Molar volume = 27.15 cc/mol
Physics and Chemistry of Minerals, 1996, 23, 354-360
9006376 CIFCl NaF m -3 m5.6622; 5.6622; 5.6622
90; 90; 90
181.533Wang, K.; Reeber, R. R.
Thermal expansion of alkali halides at high pressure: NaCl as an example Sample: T = 400 K, Molar volume = 27.33 cc/mol
Physics and Chemistry of Minerals, 1996, 23, 354-360
9006377 CIFCl NaF m -3 m5.6746; 5.6746; 5.6746
90; 90; 90
182.728Wang, K.; Reeber, R. R.
Thermal expansion of alkali halides at high pressure: NaCl as an example Sample: T = 450 K, Molar volume = 27.51 cc/mol
Physics and Chemistry of Minerals, 1996, 23, 354-360
9006378 CIFCl NaF m -3 m5.6869; 5.6869; 5.6869
90; 90; 90
183.919Wang, K.; Reeber, R. R.
Thermal expansion of alkali halides at high pressure: NaCl as an example Sample: T = 500 K, Molar volume = 27.69 cc/mol
Physics and Chemistry of Minerals, 1996, 23, 354-360
9006379 CIFCl NaF m -3 m5.6999; 5.6999; 5.6999
90; 90; 90
185.183Wang, K.; Reeber, R. R.
Thermal expansion of alkali halides at high pressure: NaCl as an example Sample: T = 550 K, Molar volume = 27.88 cc/mol
Physics and Chemistry of Minerals, 1996, 23, 354-360
9006380 CIFCl NaF m -3 m5.7135; 5.7135; 5.7135
90; 90; 90
186.512Wang, K.; Reeber, R. R.
Thermal expansion of alkali halides at high pressure: NaCl as an example Sample: T = 600 K, Molar volume = 28.08 cc/mol
Physics and Chemistry of Minerals, 1996, 23, 354-360
9006381 CIFCl NaF m -3 m5.7277; 5.7277; 5.7277
90; 90; 90
187.906Wang, K.; Reeber, R. R.
Thermal expansion of alkali halides at high pressure: NaCl as an example Sample: T = 650 K, Molar volume = 28.29 cc/mol
Physics and Chemistry of Minerals, 1996, 23, 354-360
9006382 CIFCl NaF m -3 m5.7425; 5.7425; 5.7425
90; 90; 90
189.366Wang, K.; Reeber, R. R.
Thermal expansion of alkali halides at high pressure: NaCl as an example Sample: T = 700 K, Molar volume = 28.51 cc/mol
Physics and Chemistry of Minerals, 1996, 23, 354-360
9006383 CIFCl NaF m -3 m5.7579; 5.7579; 5.7579
90; 90; 90
190.894Wang, K.; Reeber, R. R.
Thermal expansion of alkali halides at high pressure: NaCl as an example Sample: T = 750 K, Molar volume = 28.74 cc/mol
Physics and Chemistry of Minerals, 1996, 23, 354-360
9006384 CIFCl NaF m -3 m5.7739; 5.7739; 5.7739
90; 90; 90
192.49Wang, K.; Reeber, R. R.
Thermal expansion of alkali halides at high pressure: NaCl as an example Sample: T = 800 K, Molar volume = 28.98 cc/mol
Physics and Chemistry of Minerals, 1996, 23, 354-360
9006385 CIFCl NaF m -3 m5.7904; 5.7904; 5.7904
90; 90; 90
194.145Wang, K.; Reeber, R. R.
Thermal expansion of alkali halides at high pressure: NaCl as an example Sample: T = 850 K, Molar volume = 29.23 cc/mol
Physics and Chemistry of Minerals, 1996, 23, 354-360
9006386 CIFCl NaF m -3 m5.8076; 5.8076; 5.8076
90; 90; 90
195.88Wang, K.; Reeber, R. R.
Thermal expansion of alkali halides at high pressure: NaCl as an example Sample: T = 900 K, Molar volume = 29.49 cc/mol
Physics and Chemistry of Minerals, 1996, 23, 354-360
9006387 CIFCl NaF m -3 m5.8259; 5.8259; 5.8259
90; 90; 90
197.738Wang, K.; Reeber, R. R.
Thermal expansion of alkali halides at high pressure: NaCl as an example Sample: T = 950 K, Molar volume = 29.77 cc/mol
Physics and Chemistry of Minerals, 1996, 23, 354-360
9006388 CIFCl NaF m -3 m5.8447; 5.8447; 5.8447
90; 90; 90
199.658Wang, K.; Reeber, R. R.
Thermal expansion of alkali halides at high pressure: NaCl as an example Sample: T = 100 K, Molar volume = 30.06 cc/mol
Physics and Chemistry of Minerals, 1996, 23, 354-360
9006389 CIFH Mg3.47 O8 Si2I m m a5.663; 11.546; 8.247
90; 90; 90
539.23Kudoh, Y.; Inoue, T.; Arashi, H.
Structure and crystal chemistry of hydrous wadsleyite, Mg1.75SiH0.5O4: possible hydrous magnesium silicate in the mantle transition zone
Physics and Chemistry of Minerals, 1996, 23, 461-469
9006390 CIFCo2 O4 SiP b n m4.7825; 10.304; 6.0041
90; 90; 90
295.875Muller-Sommer M; Hock, R.; Kirfel, A.
Rietveld refinement study of the cation distribution in (Co, Mg)-olivine solid solution Sample: M00
Physics and Chemistry of Minerals, 1997, 24, 17-23
9006391 CIFCo1.75 Mg0.25 O4 SiP b n m4.7814; 10.2924; 6.0007
90; 90; 90
295.307Muller-Sommer M; Hock, R.; Kirfel, A.
Rietveld refinement study of the cation distribution in (Co, Mg)-olivine solid solution Sample: M13
Physics and Chemistry of Minerals, 1997, 24, 17-23
9006392 CIFCo1.5 Mg0.5 O4 SiP b n m4.7773; 10.28; 5.9971
90; 90; 90
294.521Muller-Sommer M; Hock, R.; Kirfel, A.
Rietveld refinement study of the cation distribution in (Co, Mg)-olivine solid solution Sample: M251
Physics and Chemistry of Minerals, 1997, 24, 17-23
9006393 CIFCo1.249 Mg0.749 O4 SiP b n m4.7754; 10.2672; 5.9942
90; 90; 90
293.896Muller-Sommer M; Hock, R.; Kirfel, A.
Rietveld refinement study of the cation distribution in (Co, Mg)-olivine solid solution Sample: M38
Physics and Chemistry of Minerals, 1997, 24, 17-23
9006394 CIFCo Mg O4 SiP b n m4.7713; 10.2533; 5.9911
90; 90; 90
293.094Muller-Sommer M; Hock R; Kirfel A
Rietveld refinement study of the cation distribution in (Co, Mg)-olivine solid solution Sample: M502
Physics and Chemistry of Minerals, 1997, 24, 17-23
9006395 CIFCo0.75 Mg1.25 O4 SiP b n m4.7679; 10.24; 5.9884
90; 90; 90
292.373Muller-Sommer M; Hock, R.; Kirfel, A.
Rietveld refinement study of the cation distribution in (Co, Mg)-olivine solid solution Sample: M62
Physics and Chemistry of Minerals, 1997, 24, 17-23
9006396 CIFCo0.499 Mg1.499 O4 SiP b n m4.7633; 10.229; 5.9874
90; 90; 90
291.729Muller-Sommer M; Hock, R.; Kirfel, A.
Rietveld refinement study of the cation distribution in (Co, Mg)-olivine solid solution Sample: M75
Physics and Chemistry of Minerals, 1997, 24, 17-23
9006397 CIFCo0.249 Mg1.749 O4 SiP b n m4.7585; 10.2148; 5.9846
90; 90; 90
290.894Muller-Sommer M; Hock, R.; Kirfel, A.
Rietveld refinement study of the cation distribution in (Co, Mg)-olivine solid solution Sample: M87
Physics and Chemistry of Minerals, 1997, 24, 17-23
9006398 CIFMg2 O4 SiP b n m4.7536; 10.2066; 5.9845
90; 90; 90
290.357Muller-Sommer M; Hock, R.; Kirfel, A.
Rietveld refinement study of the cation distribution in (Co, Mg)-olivine solid solution Sample: MR100
Physics and Chemistry of Minerals, 1997, 24, 17-23
9006399 CIFCo Mg O4 SiP b n m4.7717; 10.2542; 5.9914
90; 90; 90
293.159Muller-Sommer M; Hock, R.; Kirfel, A.
Rietveld refinement study of the cation distribution in (Co, Mg)-olivine solid solution Sample: M501
Physics and Chemistry of Minerals, 1997, 24, 17-23
9006401 CIFCo Mg O4 SiP b n m4.7715; 10.2535; 5.9912
90; 90; 90
293.117Muller-Sommer M; Hock, R.; Kirfel, A.
Rietveld refinement study of the cation distribution in (Co, Mg)-olivine solid solution Sample: M503
Physics and Chemistry of Minerals, 1997, 24, 17-23
9006402 CIFCo Mg O4 SiP b n m4.7713; 10.2536; 5.9915
90; 90; 90
293.122Muller-Sommer M; Hock, R.; Kirfel, A.
Rietveld refinement study of the cation distribution in (Co, Mg)-olivine solid solution Sample: M504
Physics and Chemistry of Minerals, 1997, 24, 17-23
9006403 CIFCo Mg O4 SiP b n m4.7715; 10.2537; 5.9912
90; 90; 90
293.123Muller-Sommer M; Hock, R.; Kirfel, A.
Rietveld refinement study of the cation distribution in (Co, Mg)-olivine solid solution Sample: average
Physics and Chemistry of Minerals, 1997, 24, 17-23
9006404 CIFAl O4 PP 32 2 14.9438; 4.9438; 10.9498
90; 90; 120
231.771Muraoka, Y.; Kihara, K.
The temperature dependence of the crystal structure of berlinite, a quartz-type form of AlPO4 Sample: T = 25 C
Physics and Chemistry of Minerals, 1997, 24, 243-253
9006405 CIFAl O4 PP 32 2 14.949; 4.949; 10.955
90; 90; 120
232.369Muraoka, Y.; Kihara, K.
The temperature dependence of the crystal structure of berlinite, a quartz-type form of AlPO4 Sample: T = 92 C
Physics and Chemistry of Minerals, 1997, 24, 243-253
9006406 CIFAl O4 PP 32 2 14.958; 4.958; 10.967
90; 90; 120
233.47Muraoka, Y.; Kihara, K.
The temperature dependence of the crystal structure of berlinite, a quartz-type form of AlPO4 Sample: T = 183 C
Physics and Chemistry of Minerals, 1997, 24, 243-253
9006407 CIFAl O4 PP 32 2 14.9688; 4.9688; 10.979
90; 90; 120
234.745Muraoka, Y.; Kihara, K.
The temperature dependence of the crystal structure of berlinite, a quartz-type form of AlPO4 Sample: T = 275 C
Physics and Chemistry of Minerals, 1997, 24, 243-253
9006408 CIFAl O4 PP 32 2 14.9799; 4.9799; 10.992
90; 90; 120
236.074Muraoka, Y.; Kihara, K.
The temperature dependence of the crystal structure of berlinite, a quartz-type form of AlPO4 Sample: T = 366 C
Physics and Chemistry of Minerals, 1997, 24, 243-253
9006409 CIFAl O4 PP 32 2 14.9939; 4.9939; 11.01
90; 90; 120
237.792Muraoka, Y.; Kihara, K.
The temperature dependence of the crystal structure of berlinite, a quartz-type form of AlPO4 Sample: T = 458 C
Physics and Chemistry of Minerals, 1997, 24, 243-253
9006410 CIFAl O4 PP 32 2 15; 5; 11.016
90; 90; 120
238.503Muraoka, Y.; Kihara, K.
The temperature dependence of the crystal structure of berlinite, a quartz-type form of AlPO4 Sample: T = 486 C
Physics and Chemistry of Minerals, 1997, 24, 243-253
9006411 CIFAl O4 PP 32 2 15.0017; 5.0017; 11.019
90; 90; 120
238.731Muraoka, Y.; Kihara, K.
The temperature dependence of the crystal structure of berlinite, a quartz-type form of AlPO4 Sample: T = 523 C
Physics and Chemistry of Minerals, 1997, 24, 243-253
9006412 CIFAl O4 PP 32 2 15.017; 5.017; 11.038
90; 90; 120
240.608Muraoka, Y.; Kihara, K.
The temperature dependence of the crystal structure of berlinite, a quartz-type form of AlPO4 Sample: T = 568 C
Physics and Chemistry of Minerals, 1997, 24, 243-253
9006413 CIFAl O4 PP 62 2 25.0387; 5.0387; 11.061
90; 90; 120
243.199Muraoka, Y.; Kihara, K.
The temperature dependence of the crystal structure of berlinite, a quartz-type form of AlPO4 Sample: T = 585 C
Physics and Chemistry of Minerals, 1997, 24, 243-253
9006414 CIFAl O4 PP 62 2 25.04; 5.04; 11.063
90; 90; 120
243.369Muraoka, Y.; Kihara, K.
The temperature dependence of the crystal structure of berlinite, a quartz-type form of AlPO4 Sample: T = 589 C
Physics and Chemistry of Minerals, 1997, 24, 243-253
9006415 CIFAl O4 PP 62 2 25.04; 5.04; 11.061
90; 90; 120
243.325Muraoka, Y.; Kihara, K.
The temperature dependence of the crystal structure of berlinite, a quartz-type form of AlPO4 Sample: T = 598 C
Physics and Chemistry of Minerals, 1997, 24, 243-253
9006416 CIFAl O4 PP 62 2 25.0401; 5.0401; 11.063
90; 90; 120
243.378Muraoka, Y.; Kihara, K.
The temperature dependence of the crystal structure of berlinite, a quartz-type form of AlPO4 Sample: T = 612 C
Physics and Chemistry of Minerals, 1997, 24, 243-253
9006417 CIFAl O4 PP 62 2 25.0402; 5.0402; 11.063
90; 90; 120
243.388Muraoka, Y.; Kihara, K.
The temperature dependence of the crystal structure of berlinite, a quartz-type form of AlPO4 Sample: T = 631 C
Physics and Chemistry of Minerals, 1997, 24, 243-253
9006418 CIFAl2.96 Ba0.01 Ca0.01 Fe0.01 H4 K0.1 Mg0.006 Mn0.002 Na0.88 O12 Si3.01 Ti0.007C 1 2/c 15.135; 8.906; 19.384
90; 94.6; 90
883.62Comodi, P.; Zanazzi, P. F.
Pressure dependence of structural parameters of paragonite Sample: P = .0001 kbar Note: z-coordinate for T1 altered by author, Dec 2003
Physics and Chemistry of Minerals, 1997, 24, 274-280
9006419 CIFAl2.96 Ba0.01 Ca0.01 Fe0.01 H2 K0.1 Mg0.006 Mn0.002 Na0.88 O12 Si3.01 Ti0.007C 1 2/c 15.134; 8.906; 19.32
90; 94.5; 90
880.653Comodi, P.; Zanazzi, P. F.
Pressure dependence of structural parameters of paragonite Sample: P = 0.05 GPa
Physics and Chemistry of Minerals, 1997, 24, 274-280
9006420 CIFAl2.96 Ba0.01 Ca0.01 Fe0.01 H2 K0.1 Mg0.006 Mn0.002 Na0.88 O12 Si3.01 Ti0.007C 1 2/c 15.082; 8.813; 18.91
90; 94.7; 90
844.087Comodi, P.; Zanazzi, P. F.
Pressure dependence of structural parameters of paragonite Sample: P = 2.54 GPa
Physics and Chemistry of Minerals, 1997, 24, 274-280
9006421 CIFAl2.96 Ba0.01 Ca0.01 Fe0.01 H2 K0.1 Mg0.006 Mn0.002 Na0.88 O12 Si3.01 Ti0.007C 1 2/c 15.062; 8.769; 18.64
90; 95.2; 90
824Comodi, P.; Zanazzi, P. F.
Pressure dependence of structural parameters of paragonite Sample: P = 4.05 GPa
Physics and Chemistry of Minerals, 1997, 24, 274-280
9006422 CIFFe O3 SiP b c a18.417; 9.073; 5.239
90; 90; 90
875.423Hugh-Jones D A; Chopelas, A.; Angel, R. J.
Tetrahedral compression in (Mg,Fe)SiO3 orthopyroxenes Sample: P = 0 GPa
Physics and Chemistry of Minerals, 1997, 24, 301-310
9006423 CIFFe O3 SiP b c a18.3988; 9.0444; 5.2245
90; 90; 90
869.389Hugh-Jones D A; Chopelas, A.; Angel, R. J.
Tetrahedral compression in (Mg,Fe)SiO3 orthopyroxenes Sample: P = .83 GPa
Physics and Chemistry of Minerals, 1997, 24, 301-310
9006424 CIFFe O3 SiP b c a18.37; 9.006; 5.2084
90; 90; 90
861.679Hugh-Jones D A; Chopelas, A.; Angel, R. J.
Tetrahedral compression in (Mg,Fe)SiO3 orthopyroxenes Sample: P = 1.71 GPa
Physics and Chemistry of Minerals, 1997, 24, 301-310
9006425 CIFFe O3 SiP b c a18.341; 8.966; 5.1925
90; 90; 90
853.883Hugh-Jones D A; Chopelas, A.; Angel, R. J.
Tetrahedral compression in (Mg,Fe)SiO3 orthopyroxenes Sample: P = 2.84 GPa
Physics and Chemistry of Minerals, 1997, 24, 301-310
9006426 CIFFe O3 SiP b c a18.311; 8.939; 5.181
90; 90; 90
848.037Hugh-Jones D A; Chopelas, A.; Angel, R. J.
Tetrahedral compression in (Mg,Fe)SiO3 orthopyroxenes Sample: P = 3.65 GPa
Physics and Chemistry of Minerals, 1997, 24, 301-310
9006427 CIFFe0.41 Mg0.59 O3 SiP b c a18.2974; 8.904; 5.2092
90; 90; 90
848.683Hugh-Jones D A; Chopelas, A.; Angel, R. J.
Tetrahedral compression in (Mg,Fe)SiO3 orthopyroxenes Sample: P = 0.00 GPa, synthetic En60 orthopyroxene
Physics and Chemistry of Minerals, 1997, 24, 301-310
9006428 CIFFe0.41 Mg0.59 O3 SiP b c a18.2351; 8.8492; 5.1839
90; 90; 90
836.505Hugh-Jones D A; Chopelas, A.; Angel, R. J.
Tetrahedral compression in (Mg,Fe)SiO3 orthopyroxenes Sample: P = 1.54 GPa, synthetic En60 orthopyroxene
Physics and Chemistry of Minerals, 1997, 24, 301-310
9006429 CIFFe0.41 Mg0.59 O3 SiP b c a18.197; 8.82; 5.171
90; 90; 90
829.933Hugh-Jones D A; Chopelas, A.; Angel, R. J.
Tetrahedral compression in (Mg,Fe)SiO3 orthopyroxenes Sample: P = 2.50 GPa, synthetic En60 orthopyroxene
Physics and Chemistry of Minerals, 1997, 24, 301-310
9006430 CIFFe0.41 Mg0.59 O3 SiP b c a18.174; 8.7953; 5.1608
90; 90; 90
824.932Hugh-Jones D A; Chopelas, A.; Angel, R. J.
Tetrahedral compression in (Mg,Fe)SiO3 orthopyroxenes Sample: P = 3.17 GPa, synthetic En60 orthopyroxene
Physics and Chemistry of Minerals, 1997, 24, 301-310
9006431 CIFFe0.41 Mg0.59 O3 SiP b c a18.1418; 8.7682; 5.1495
90; 90; 90
819.136Hugh-Jones D A; Chopelas, A.; Angel, R. J.
Tetrahedral compression in (Mg,Fe)SiO3 orthopyroxenes Sample: P = 4.14 GPa, synthetic En60 orthopyroxene
Physics and Chemistry of Minerals, 1997, 24, 301-310
9006432 CIFFe0.41 Mg0.59 O3 SiP b c a18.124; 8.754; 5.144
90; 90; 90
816.134Hugh-Jones D A; Chopelas, A.; Angel, R. J.
Tetrahedral compression in (Mg,Fe)SiO3 orthopyroxenes Sample: P = 4.76 GPa, synthetic En60 orthopyroxene
Physics and Chemistry of Minerals, 1997, 24, 301-310
9006433 CIFFe0.41 Mg0.59 O3 SiP b c a18.0912; 8.724; 5.1315
90; 90; 90
809.892Hugh-Jones D A; Chopelas, A.; Angel, R. J.
Tetrahedral compression in (Mg,Fe)SiO3 orthopyroxenes Sample: P = 5.77 GPa, synthetic En60 orthopyroxene
Physics and Chemistry of Minerals, 1997, 24, 301-310
9006434 CIFFe0.41 Mg0.59 O3 SiP b c a18.0665; 8.706; 5.1236
90; 90; 90
805.875Hugh-Jones D A; Chopelas, A.; Angel, R. J.
Tetrahedral compression in (Mg,Fe)SiO3 orthopyroxenes Sample: P = 6.59 GPa, synthetic En60 orthopyroxene
Physics and Chemistry of Minerals, 1997, 24, 301-310
9006435 CIFFe0.41 Mg0.59 O3 SiP b c a18.035; 8.682; 5.1138
90; 90; 90
800.718Hugh-Jones D A; Chopelas, A.; Angel, R. J.
Tetrahedral compression in (Mg,Fe)SiO3 orthopyroxenes Sample: P = 7.50 GPa, synthetic En60 orthopyroxene
Physics and Chemistry of Minerals, 1997, 24, 301-310
9006436 CIFAl0.14 Ca0.012 Fe0.24 Mg1.66 O6 Si1.94P b c a18.231; 8.8095; 5.1873
90; 90; 90
833.111Hugh-Jones D A; Chopelas, A.; Angel, R. J.
Tetrahedral compression in (Mg,Fe)SiO3 orthopyroxenes Sample: P = 0.00 GPa, natural orthopyroxene
Physics and Chemistry of Minerals, 1997, 24, 301-310
9006437 CIFAl0.14 Ca0.012 Fe0.24 Mg1.66 O6 Si1.94P b c a18.189; 8.7765; 5.1723
90; 90; 90
825.684Hugh-Jones D A; Chopelas, A.; Angel, R. J.
Tetrahedral compression in (Mg,Fe)SiO3 orthopyroxenes Sample: P = 1.04 GPa, natural orthopyroxene
Physics and Chemistry of Minerals, 1997, 24, 301-310
9006438 CIFAl0.14 Ca0.012 Fe0.24 Mg1.66 O6 Si1.94P b c a18.16; 8.7503; 5.1606
90; 90; 90
820.047Hugh-Jones D A; Chopelas, A.; Angel, R. J.
Tetrahedral compression in (Mg,Fe)SiO3 orthopyroxenes Sample: P = 1.90 GPa, natural orthopyroxene
Physics and Chemistry of Minerals, 1997, 24, 301-310
9006439 CIFAl0.14 Ca0.012 Fe0.24 Mg1.66 O6 Si1.94P b c a18.115; 8.7184; 5.1472
90; 90; 90
812.917Hugh-Jones D A; Chopelas, A.; Angel, R. J.
Tetrahedral compression in (Mg,Fe)SiO3 orthopyroxenes Sample: P = 3.00 GPa, natural orthopyroxene
Physics and Chemistry of Minerals, 1997, 24, 301-310
9006440 CIFAl0.14 Ca0.012 Fe0.24 Mg1.66 O6 Si1.94P b c a18.077; 8.6907; 5.1349
90; 90; 90
806.702Hugh-Jones D A; Chopelas, A.; Angel, R. J.
Tetrahedral compression in (Mg,Fe)SiO3 orthopyroxenes Sample: P = 4.03 GPa, natural orthopyroxene
Physics and Chemistry of Minerals, 1997, 24, 301-310
9006441 CIFAl0.14 Ca0.012 Fe0.24 Mg1.66 O6 Si1.94P b c a18.051; 8.6683; 5.1244
90; 90; 90
801.822Hugh-Jones D A; Chopelas, A.; Angel, R. J.
Tetrahedral compression in (Mg,Fe)SiO3 orthopyroxenes Sample: P = 4.93 GPa, natural orthopyroxene
Physics and Chemistry of Minerals, 1997, 24, 301-310
9006442 CIFAl0.14 Ca0.012 Fe0.24 Mg1.66 O6 Si1.94P b c a18; 8.642; 5.115
90; 90; 90
795.669Hugh-Jones D A; Chopelas, A.; Angel, R. J.
Tetrahedral compression in (Mg,Fe)SiO3 orthopyroxenes Sample: P = 6.01 GPa, natural orthopyroxene
Physics and Chemistry of Minerals, 1997, 24, 301-310
9006443 CIFAl2 Ca H6 O13 Si3F 1 d 118.502; 18.974; 6.525
90; 90.615; 90
2290.51Stuckenschmidt, E.; Joswig, W.; Baur, W. H.; Hofmeister, W.
Scolecite, Part I: Refinement of high-order data, separation of internal and external vibrational amplitudes from displacement parameters
Physics and Chemistry of Minerals, 1997, 24, 403-410
9006444 CIFAs3 Bi Cu6 H60 O21P 63/m13.633; 13.633; 5.913
90; 90; 120
951.747Miletich, R.; Zemann, J.; Nowak, M.
Reversible hydration in synthetic mixite, BiCu6(OH)6(AsO4)3.nH2O(n<=3): hydration kinetics and crystal chemistry Sample: H20
Physics and Chemistry of Minerals, 1997, 24, 411-422
9006445 CIFAs3 Bi Cu6 H36 O19P 63/m13.631; 13.631; 5.905
90; 90; 120
950.18Miletich, R.; Zemann, J.; Nowak, M.
Reversible hydration in synthetic mixite, BiCu6(OH)6(AsO4)3.nH2O(n<=3): hydration kinetics and crystal chemistry Sample: N2
Physics and Chemistry of Minerals, 1997, 24, 411-422
9006446 CIFAl H2 K O9 Si3P 6/m m m5.3348; 5.3348; 7.7057
90; 90; 120
189.924Fasshauer, D. W.; Chatterjee, N. D.; Marler, B.
Synthesis, structure, thermodynamic properties, and stability relations of K-cymrite, K[AlSi3O8].H2O
Physics and Chemistry of Minerals, 1997, 24, 455-462
9006447 CIFCu0.564 Mg1.436 O6 Si2P b c a18.221; 8.89; 5.226
90; 90; 90
846.532Tachi, T.; Horiuchi, H.; Nagasawa, H.
Structure of Cu-bearing orthopyroxene, Mg(Cu.56,Mg.44)Si2O6, and behavior of Cu2+ in the orthopyroxene structure
Physics and Chemistry of Minerals, 1997, 24, 463-476
9006448 CIFCa2 Mg O7 Si2P -4 21 m7.8338; 7.8338; 5.0082
90; 90; 90
307.345Yang, H.; Hazen, R. M.; Downs, R. T.; Finger, L. W.
Structural change associated with the incommensurate-normal phase transition in akermanite, Ca2MgSi2O7, at high pressure Sample: P = 0.0 GPa
Physics and Chemistry of Minerals, 1997, 24, 510-519
9006449 CIFCa2 Mg O7 Si2P -4 21 m7.8154; 7.8154; 4.9919
90; 90; 90
304.908Yang, H.; Hazen, R. M.; Downs, R. T.; Finger, L. W.
Structural change associated with the incommensurate-normal phase transition in akermanite, Ca2MgSi2O7, at high pressure Sample: P = 0.80 GPa
Physics and Chemistry of Minerals, 1997, 24, 510-519
9006450 CIFCa2 Mg O7 Si2P -4 21 m7.8071; 7.8071; 4.9821
90; 90; 90
303.663Yang, H.; Hazen, R. M.; Downs, R. T.; Finger, L. W.
Structural change associated with the incommensurate-normal phase transition in akermanite, Ca2MgSi2O7, at high pressure Sample: P = 1.25 GPa
Physics and Chemistry of Minerals, 1997, 24, 510-519
9006451 CIFCa2 Mg O7 Si2P -4 21 m7.8046; 7.8046; 4.9772
90; 90; 90
303.17Yang, H.; Hazen, R. M.; Downs, R. T.; Finger, L. W.
Structural change associated with the incommensurate-normal phase transition in akermanite, Ca2MgSi2O7, at high pressure Sample: P = 1.37 GPa
Physics and Chemistry of Minerals, 1997, 24, 510-519
9006452 CIFCa2 Mg O7 Si2P -4 21 m7.7937; 7.7937; 4.9696
90; 90; 90
301.862Yang, H.; Hazen, R. M.; Downs, R. T.; Finger, L. W.
Structural change associated with the incommensurate-normal phase transition in akermanite, Ca2MgSi2O7, at high pressure Sample: P = 1.80 GPa
Physics and Chemistry of Minerals, 1997, 24, 510-519
9006453 CIFCa2 Mg O7 Si2P -4 21 m7.7677; 7.7677; 4.9495
90; 90; 90
298.639Yang, H.; Hazen, R. M.; Downs, R. T.; Finger, L. W.
Structural change associated with the incommensurate-normal phase transition in akermanite, Ca2MgSi2O7, at high pressure Sample: P = 2.78 GPa Note: O2-z changed to match reported bond lengths
Physics and Chemistry of Minerals, 1997, 24, 510-519
9006454 CIFCa2 Mg O7 Si2P -4 21 m7.7494; 7.7494; 4.9328
90; 90; 90
296.23Yang, H.; Hazen, R. M.; Downs, R. T.; Finger, L. W.
Structural change associated with the incommensurate-normal phase transition in akermanite, Ca2MgSi2O7, at high pressure Sample: P = 3.79 GPa
Physics and Chemistry of Minerals, 1997, 24, 510-519
9006455 CIFCa2 O6 Si TiF m -3 m7.41; 7.41; 7.41
90; 90; 90
406.869Leinenweber, K.; Grzechnik, A.; Voorhees, M.; Navrotsky, A.; Yao, A.; McMillan, P. F.
Structural variations in Ca(TixSi1-x)O3 perovskites (1>x>0.65) and the ordered phase Ca2TiSiO6
Physics and Chemistry of Minerals, 1997, 24, 528-534
9006456 CIFMg OF m -3 m4.211; 4.211; 4.211
90; 90; 90
74.672Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 298 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006457 CIFMg OF m -3 m4.2181; 4.2181; 4.2181
90; 90; 90
75.05Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 455 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006458 CIFMg OF m -3 m4.2318; 4.2318; 4.2318
90; 90; 90
75.784Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 710 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006459 CIFMg OF m -3 m4.2483; 4.2483; 4.2483
90; 90; 90
76.674Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 905 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006460 CIFMg OF m -3 m4.2576; 4.2576; 4.2576
90; 90; 90
77.178Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 1096 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006461 CIFMg OF m -3 m4.2665; 4.2665; 4.2665
90; 90; 90
77.663Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 1205 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006462 CIFMg OF m -3 m4.2703; 4.2703; 4.2703
90; 90; 90
77.871Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 1305 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006463 CIFMg OF m -3 m4.2736; 4.2736; 4.2736
90; 90; 90
78.052Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 1365 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006464 CIFMg OF m -3 m4.282; 4.282; 4.282
90; 90; 90
78.513Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 1527 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006465 CIFMg OF m -3 m4.2924; 4.2924; 4.2924
90; 90; 90
79.086Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 1598 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006466 CIFMg OF m -3 m4.2993; 4.2993; 4.2993
90; 90; 90
79.468Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 1685 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006467 CIFMg OF m -3 m4.3089; 4.3089; 4.3089
90; 90; 90
80.002Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 1870 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006468 CIFMg OF m -3 m4.3141; 4.3141; 4.3141
90; 90; 90
80.292Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 1915 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006469 CIFMg OF m -3 m4.3272; 4.3272; 4.3272
90; 90; 90
81.025Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2055 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006470 CIFMg OF m -3 m4.3305; 4.3305; 4.3305
90; 90; 90
81.211Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2106 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006471 CIFMg OF m -3 m4.3425; 4.3425; 4.3425
90; 90; 90
81.888Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2245 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006472 CIFMg OF m -3 m4.3481; 4.3481; 4.3481
90; 90; 90
82.205Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2297 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006473 CIFMg OF m -3 m4.3554; 4.3554; 4.3554
90; 90; 90
82.62Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2395 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006474 CIFMg OF m -3 m4.3564; 4.3564; 4.3564
90; 90; 90
82.677Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2408 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006475 CIFMg OF m -3 m4.3741; 4.3741; 4.3741
90; 90; 90
83.689Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2592 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006476 CIFMg OF m -3 m4.3842; 4.3842; 4.3842
90; 90; 90
84.27Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2703 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006477 CIFMg OF m -3 m4.3915; 4.3915; 4.3915
90; 90; 90
84.691Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2785 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006478 CIFMg OF m -3 m4.3971; 4.3971; 4.3971
90; 90; 90
85.016Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2848 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006479 CIFMg OF m -3 m4.4041; 4.4041; 4.4041
90; 90; 90
85.422Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2912 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006480 CIFMg OF m -3 m4.4112; 4.4112; 4.4112
90; 90; 90
85.836Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2986 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006481 CIFMg OF m -3 m4.4195; 4.4195; 4.4195
90; 90; 90
86.322Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 3031 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006482 CIFMg OF m -3 m4.4424; 4.4424; 4.4424
90; 90; 90
87.67Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 3065 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006483 CIFMg OF m -3 m4.4453; 4.4453; 4.4453
90; 90; 90
87.842Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 3086 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006484 CIFMg OF m -3 m4.4403; 4.4403; 4.4403
90; 90; 90
87.546Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 3040 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006485 CIFMg OF m -3 m4.4166; 4.4166; 4.4166
90; 90; 90
86.152Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 3015 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006486 CIFWI m -3 m3.1648; 3.1648; 3.1648
90; 90; 90
31.699Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 298 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006487 CIFWI m -3 m3.1672; 3.1672; 3.1672
90; 90; 90
31.771Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 455 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006488 CIFWI m -3 m3.1731; 3.1731; 3.1731
90; 90; 90
31.949Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 905 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006489 CIFWI m -3 m3.1738; 3.1738; 3.1738
90; 90; 90
31.97Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 918 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006490 CIFWI m -3 m3.1775; 3.1775; 3.1775
90; 90; 90
32.082Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 1205 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006491 CIFWI m -3 m3.1804; 3.1804; 3.1804
90; 90; 90
32.17Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 1363 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006492 CIFWI m -3 m3.1822; 3.1822; 3.1822
90; 90; 90
32.224Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 1410 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006493 CIFWI m -3 m3.1837; 3.1837; 3.1837
90; 90; 90
32.27Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 1527 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006494 CIFWI m -3 m3.1824; 3.1824; 3.1824
90; 90; 90
32.23Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 1537 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006495 CIFWI m -3 m3.1866; 3.1866; 3.1866
90; 90; 90
32.358Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 1685 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006496 CIFWI m -3 m3.1913; 3.1913; 3.1913
90; 90; 90
32.501Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 1846 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006497 CIFWI m -3 m3.1908; 3.1908; 3.1908
90; 90; 90
32.486Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 1870 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006498 CIFWI m -3 m3.1926; 3.1926; 3.1926
90; 90; 90
32.541Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2032 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006499 CIFWI m -3 m3.1946; 3.1946; 3.1946
90; 90; 90
32.602Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2171 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006500 CIFWI m -3 m3.1979; 3.1979; 3.1979
90; 90; 90
32.704Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2310 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006501 CIFWI m -3 m3.2026; 3.2026; 3.2026
90; 90; 90
32.848Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2450 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006502 CIFWI m -3 m3.2079; 3.2079; 3.2079
90; 90; 90
33.011Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2620 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006503 CIFWI m -3 m3.2094; 3.2094; 3.2094
90; 90; 90
33.058Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2720 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006504 CIFWI m -3 m3.2116; 3.2116; 3.2116
90; 90; 90
33.126Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2774 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006505 CIFWI m -3 m3.2134; 3.2134; 3.2134
90; 90; 90
33.181Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2830 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006506 CIFWI m -3 m3.2165; 3.2165; 3.2165
90; 90; 90
33.277Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2929 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006507 CIFWI m -3 m3.2219; 3.2219; 3.2219
90; 90; 90
33.445Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 3130 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006508 CIFWI m -3 m3.2238; 3.2238; 3.2238
90; 90; 90
33.505Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 3190 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006509 CIFWI m -3 m3.2275; 3.2275; 3.2275
90; 90; 90
33.62Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 3316 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006510 CIFWI m -3 m3.2332; 3.2332; 3.2332
90; 90; 90
33.799Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 3470 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006511 CIFWI m -3 m3.2358; 3.2358; 3.2358
90; 90; 90
33.88Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 3548 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006512 CIFWI m -3 m3.23; 3.23; 3.23
90; 90; 90
33.698Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 3430 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006513 CIFWI m -3 m3.2248; 3.2248; 3.2248
90; 90; 90
33.536Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 3220 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006514 CIFWI m -3 m3.2166; 3.2166; 3.2166
90; 90; 90
33.281Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2986 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006515 CIFWI m -3 m3.2131; 3.2131; 3.2131
90; 90; 90
33.172Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2785 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006516 CIFWI m -3 m3.2099; 3.2099; 3.2099
90; 90; 90
33.073Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2650 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006517 CIFWI m -3 m3.2087; 3.2087; 3.2087
90; 90; 90
33.036Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2592 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006518 CIFWI m -3 m3.2015; 3.2015; 3.2015
90; 90; 90
32.814Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2395 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006519 CIFWI m -3 m3.1979; 3.1979; 3.1979
90; 90; 90
32.704Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2245 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006520 CIFWI m -3 m3.1946; 3.1946; 3.1946
90; 90; 90
32.602Dubrovinsky, L. S.; Saxena, S. K.
Thermal expansion of periclase (MgO) and tungsten (W) to melting temperatures Sample: T = 2055 K
Physics and Chemistry of Minerals, 1997, 24, 547-550
9006521 CIFCr2 S4 ZnF d -3 m :29.9736; 9.9736; 9.9736
90; 90; 90
992.101Wittlinger, J.; Werner, S.; Schulz, H.
On the amorphisation of ZnCr2S4 spinel under high pressure: x-ray diffraction studies Sample: P = 0 GPa
Physics and Chemistry of Minerals, 1997, 24, 597-600
9006522 CIFCr2 S4 ZnF d -3 m :29.9306; 9.9306; 9.9306
90; 90; 90
979.324Wittlinger, J.; Werner, S.; Schulz, H.
On the amorphisation of ZnCr2S4 spinel under high pressure: x-ray diffraction studies Sample: P = 1.06 GPa
Physics and Chemistry of Minerals, 1997, 24, 597-600
9006523 CIFCr2 S4 ZnF d -3 m :29.8415; 9.8415; 9.8415
90; 90; 90
953.2Wittlinger, J.; Werner, S.; Schulz, H.
On the amorphisation of ZnCr2S4 spinel under high pressure: x-ray diffraction studies Sample: P = 4.2 GPa
Physics and Chemistry of Minerals, 1997, 24, 597-600
9006524 CIFCr2 S4 ZnF d -3 m :29.7738; 9.7738; 9.7738
90; 90; 90
933.663Wittlinger, J.; Werner, S.; Schulz, H.
On the amorphisation of ZnCr2S4 spinel under high pressure: x-ray diffraction studies Sample: P = 7.19 GPa
Physics and Chemistry of Minerals, 1997, 24, 597-600
9006525 CIFAl2 O5 SiP b n m7.4857; 7.675; 5.7751
90; 90; 90
331.795Yang, H.; Hazen, R. M.; Finger, L. W.; Prewitt, C. T.; Downs, R. T.
Compressibility and crystal structure of sillimanite, Al2SiO5, at high pressure Sample: P = 0.00 GPa
Physics and Chemistry of Minerals, 1997, 25, 39-47
9006526 CIFAl2 O5 SiP b n m7.4732; 7.652; 5.7631
90; 90; 90
329.562Yang, H.; Hazen, R. M.; Finger, L. W.; Prewitt, C. T.; Downs, R. T.
Compressibility and crystal structure of sillimanite, Al2SiO5, at high pressure Sample: P = 1.23 GPa
Physics and Chemistry of Minerals, 1997, 25, 39-47
9006527 CIFAl2 O5 SiP b n m7.4537; 7.6238; 5.756
90; 90; 90
327.088Yang, H.; Hazen, R. M.; Finger, L. W.; Prewitt, C. T.; Downs, R. T.
Compressibility and crystal structure of sillimanite, Al2SiO5, at high pressure Sample: P = 2.54 GPa
Physics and Chemistry of Minerals, 1997, 25, 39-47
9006528 CIFAl2 O5 SiP b n m7.4345; 7.5989; 5.7507
90; 90; 90
324.88Yang, H.; Hazen, R. M.; Finger, L. W.; Prewitt, C. T.; Downs, R. T.
Compressibility and crystal structure of sillimanite, Al2SiO5, at high pressure Sample: P = 3.72 GPa
Physics and Chemistry of Minerals, 1997, 25, 39-47
9006529 CIFAl2 O5 SiP b n m7.4146; 7.5739; 5.745
90; 90; 90
322.624Yang, H.; Hazen, R. M.; Finger, L. W.; Prewitt, C. T.; Downs, R. T.
Compressibility and crystal structure of sillimanite, Al2SiO5, at high pressure Sample: P = 5.29 GPa
Physics and Chemistry of Minerals, 1997, 25, 39-47
9006530 CIFD2 Mn O2P -3 m 13.318; 3.318; 4.717
90; 90; 120
44.973Parise, J. B.; Theroux, B.; Li, R.; Loveday, J. S.; Marshall, W. G.; Klotz, S.
Pressure dependence of hydrogen bonding in metal deuteroxides: a neutron powder diffraction study of Mn(OD)2 and beta-Co(OD)2. Sample: P = 0.0 GPa
Physics and Chemistry of Minerals, 1998, 25, 130-137
9006531 CIFD2 Mn O2P -3 m 13.305; 3.305; 4.675
90; 90; 120
44.224Parise, J. B.; Theroux, B.; Li, R.; Loveday, J. S.; Marshall, W. G.; Klotz, S.
Pressure dependence of hydrogen bonding in metal deuteroxides: a neutron powder diffraction study of Mn(OD)2 and beta-Co(OD)2. Sample: P = 0.7 GPa
Physics and Chemistry of Minerals, 1998, 25, 130-137
9006532 CIFD2 Mn O2P -3 m 13.281; 3.281; 4.579
90; 90; 120
42.689Parise, J. B.; Theroux, B.; Li, R.; Loveday, J. S.; Marshall, W. G.; Klotz, S.
Pressure dependence of hydrogen bonding in metal deuteroxides: a neutron powder diffraction study of Mn(OD)2 and beta-Co(OD)2. Sample: P = 2.4 GPa
Physics and Chemistry of Minerals, 1998, 25, 130-137
9006533 CIFD2 Mn O2P -3 m 13.25; 3.25; 4.497
90; 90; 120
41.136Parise, J. B.; Theroux, B.; Li, R.; Loveday, J. S.; Marshall, W. G.; Klotz, S.
Pressure dependence of hydrogen bonding in metal deuteroxides: a neutron powder diffraction study of Mn(OD)2 and beta-Co(OD)2. Sample: P = 4.6 GPa
Physics and Chemistry of Minerals, 1998, 25, 130-137
9006534 CIFD2 Mn O2P -3 m 13.208; 3.208; 4.416
90; 90; 120
39.358Parise, J. B.; Theroux, B.; Li, R.; Loveday, J. S.; Marshall, W. G.; Klotz, S.
Pressure dependence of hydrogen bonding in metal deuteroxides: a neutron powder diffraction study of Mn(OD)2 and beta-Co(OD)2. Sample: P = 7.8 GPa
Physics and Chemistry of Minerals, 1998, 25, 130-137
9006535 CIFCo D2 O2P -3 m 13.1834; 3.1834; 4.6445
90; 90; 120
40.762Parise, J. B.; Theroux, B.; Li, R.; Loveday, J. S.; Marshall, W. G.; Klotz, S.
Pressure dependence of hydrogen bonding in metal deuteroxides: a neutron powder diffraction study of Mn(OD)2 and beta-Co(OD)2. Sample: P = 0.0 GPa
Physics and Chemistry of Minerals, 1998, 25, 130-137
9006536 CIFCo D2 O2P -3 m 13.167; 3.167; 4.6
90; 90; 120
39.956Parise, J. B.; Theroux, B.; Li, R.; Loveday, J. S.; Marshall, W. G.; Klotz, S.
Pressure dependence of hydrogen bonding in metal deuteroxides: a neutron powder diffraction study of Mn(OD)2 and beta-Co(OD)2. Sample: P = 0.5 GPa
Physics and Chemistry of Minerals, 1998, 25, 130-137
9006537 CIFCo D2 O2P -3 m 13.139; 3.139; 4.483
90; 90; 120
38.254Parise, J. B.; Theroux, B.; Li, R.; Loveday, J. S.; Marshall, W. G.; Klotz, S.
Pressure dependence of hydrogen bonding in metal deuteroxides: a neutron powder diffraction study of Mn(OD)2 and beta-Co(OD)2. Sample: P = 3.3 GPa
Physics and Chemistry of Minerals, 1998, 25, 130-137
9006538 CIFCo D2 O2P -3 m 13.109; 3.109; 4.414
90; 90; 120
36.949Parise, J. B.; Theroux, B.; Li, R.; Loveday, J. S.; Marshall, W. G.; Klotz, S.
Pressure dependence of hydrogen bonding in metal deuteroxides: a neutron powder diffraction study of Mn(OD)2 and beta-Co(OD)2. Sample: P = 5.6 GPa
Physics and Chemistry of Minerals, 1998, 25, 130-137
9006539 CIFCo D2 O2P -3 m 13.084; 3.084; 4.363
90; 90; 120
35.937Parise, J. B.; Theroux, B.; Li, R.; Loveday, J. S.; Marshall, W. G.; Klotz, S.
Pressure dependence of hydrogen bonding in metal deuteroxides: a neutron powder diffraction study of Mn(OD)2 and beta-Co(OD)2. Sample: P = 7.5 GPa
Physics and Chemistry of Minerals, 1998, 25, 130-137
9006540 CIFCo D2 O2P -3 m 13.059; 3.059; 4.283
90; 90; 120
34.709Parise, J. B.; Theroux, B.; Li, R.; Loveday, J. S.; Marshall, W. G.; Klotz, S.
Pressure dependence of hydrogen bonding in metal deuteroxides: a neutron powder diffraction study of Mn(OD)2 and beta-Co(OD)2. Sample: P = 9.5 GPa
Physics and Chemistry of Minerals, 1998, 25, 130-137
9006541 CIFMn7 O12 SiI 41/a c d :29.4264; 9.4264; 18.6962
90; 90; 90
1661.29Miletich, R.; Allan, D. R.; Angel, R. J.
Structural control of polyhedral compression in synthetic braunite, Mn2+Mn3+6O8SiO4 Sample in air: P = 0.0001 GPa
Physics and Chemistry of Minerals, 1998, 25, 183-192
9006542 CIFMn7 O12 SiI 41/a c d :29.4266; 9.4266; 18.6952
90; 90; 90
1661.27Miletich, R.; Allan, D. R.; Angel, R. J.
Structural control of polyhedral compression in synthetic braunite, Mn2+Mn3+6O8SiO4 Sample in Diamond Anvil Cell without pressure medium: P = 0.0001 GPa
Physics and Chemistry of Minerals, 1998, 25, 183-192
9006543 CIFMn7 O12 SiI 41/a c d :29.4007; 9.4007; 18.6574
90; 90; 90
1648.81Miletich, R.; Allan, D. R.; Angel, R. J.
Structural control of polyhedral compression in synthetic braunite, Mn2+Mn3+6O8SiO4 Sample: P = 1.38 GPa
Physics and Chemistry of Minerals, 1998, 25, 183-192
9006544 CIFMn7 O12 SiI 41/a c d :29.3786; 9.3786; 18.6234
90; 90; 90
1638.08Miletich, R.; Allan, D. R.; Angel, R. J.
Structural control of polyhedral compression in synthetic braunite, Mn2+Mn3+6O8SiO4 Sample: P = 2.66 GPa
Physics and Chemistry of Minerals, 1998, 25, 183-192
9006545 CIFMn7 O12 SiI 41/a c d :29.348; 9.348; 18.5739
90; 90; 90
1623.08Miletich, R.; Allan, D. R.; Angel, R. J.
Structural control of polyhedral compression in synthetic braunite, Mn2+Mn3+6O8SiO4 Sample: P = 4.51 GPa
Physics and Chemistry of Minerals, 1998, 25, 183-192

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