Crystallography Open Database

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9007155 CIFFe0.91 Li0.85 Mg0.24 O6 Si2P 1 21/c 19.638; 8.709; 5.258
90; 109.83; 90
415.172Camara, F.; Iezzi, G.; Oberti, R.
HT-XRD study of synthetic ferrian magnesian spodumene: the effect of site dimension on the P2_1/c - C2/c phase transition Sample: T = 25 C
Physics and Chemistry of Minerals, 2003, 30, 20-30
9007156 CIFFe0.91 Li0.85 Mg0.24 O6 Si2P 1 21/c 19.651; 8.706; 5.27
90; 109.95; 90
416.222Camara, F.; Iezzi, G.; Oberti, R.
HT-XRD study of synthetic ferrian magnesian spodumene: the effect of site dimension on the P2_1/c - C2/c phase transition Sample: T = 75 C
Physics and Chemistry of Minerals, 2003, 30, 20-30
9007157 CIFFe0.91 Li0.85 Mg0.24 O6 Si2P 1 21/c 19.672; 8.697; 5.281
90; 110.09; 90
417.195Camara, F.; Iezzi, G.; Oberti, R.
HT-XRD study of synthetic ferrian magnesian spodumene: the effect of site dimension on the P2_1/c - C2/c phase transition Sample: T = 95 C
Physics and Chemistry of Minerals, 2003, 30, 20-30
9007158 CIFFe0.91 Li0.85 Mg0.24 O6 Si2C 1 2/c 19.694; 8.69; 5.293
90; 110.23; 90
418.381Camara, F.; Iezzi, G.; Oberti, R.
HT-XRD study of synthetic ferrian magnesian spodumene: the effect of site dimension on the P2_1/c - C2/c phase transition Sample: T = 125 C
Physics and Chemistry of Minerals, 2003, 30, 20-30
9007159 CIFFe0.91 Li0.85 Mg0.24 O6 Si2C 1 2/c 19.701; 8.69; 5.295
90; 110.26; 90
418.76Camara, F.; Iezzi, G.; Oberti, R.
HT-XRD study of synthetic ferrian magnesian spodumene: the effect of site dimension on the P2_1/c - C2/c phase transition Sample: T = 150 C
Physics and Chemistry of Minerals, 2003, 30, 20-30
9007160 CIFFe0.91 Li0.85 Mg0.24 O6 Si2C 1 2/c 19.707; 8.693; 5.298
90; 110.27; 90
419.375Camara, F.; Iezzi, G.; Oberti, R.
HT-XRD study of synthetic ferrian magnesian spodumene: the effect of site dimension on the P2_1/c - C2/c phase transition Sample: T = 200 C
Physics and Chemistry of Minerals, 2003, 30, 20-30
9007161 CIFO2 SiC 1 2/c 17.1366; 12.3723; 7.1749
90; 120.33; 90
546.808Angel, R. J.; Shaw, C. S. J.; Gibbs, G. V.
Compression mechanisms of coesite Sample: X1air, in air, P = 0.0001 GPa
Physics and Chemistry of Minerals, 2003, 30, 167-176
9007162 CIFO2 SiC 1 2/c 17.1366; 12.3723; 7.1749
90; 120.33; 90
546.808Angel, R. J.; Shaw, C. S. J.; Gibbs, G. V.
Compression mechanisms of coesite Sample: X1P0, in cell, P = 0.0001 GPa
Physics and Chemistry of Minerals, 2003, 30, 167-176
9007163 CIFO2 SiC 1 2/c 17.0666; 12.3049; 7.1462
90; 120.54; 90
535.187Angel, R. J.; Shaw, C. S. J.; Gibbs, G. V.
Compression mechanisms of coesite Sample: X1P8, P = 2.248 GPa
Physics and Chemistry of Minerals, 2003, 30, 167-176
9007164 CIFO2 SiC 1 2/c 17.05; 12.2907; 7.1386
90; 120.587; 90
532.488Angel, R. J.; Shaw, C. S. J.; Gibbs, G. V.
Compression mechanisms of coesite Sample: X4P4, P = 2.84 GPa
Physics and Chemistry of Minerals, 2003, 30, 167-176
9007165 CIFO2 SiC 1 2/c 17.0203; 12.2615; 7.126
90; 120.67; 90
527.599Angel, R. J.; Shaw, C. S. J.; Gibbs, G. V.
Compression mechanisms of coesite Sample: X1P3, P = 3.763 GPa
Physics and Chemistry of Minerals, 2003, 30, 167-176
9007166 CIFO2 SiC 1 2/c 17.0035; 12.2462; 7.1178
90; 120.708; 90
524.868Angel, R. J.; Shaw, C. S. J.; Gibbs, G. V.
Compression mechanisms of coesite Sample: X4P2, P = 4.45 GPa
Physics and Chemistry of Minerals, 2003, 30, 167-176
9007167 CIFO2 SiC 1 2/c 16.9862; 12.2311; 7.1101
90; 120.746; 90
522.154Angel, R. J.; Shaw, C. S. J.; Gibbs, G. V.
Compression mechanisms of coesite Sample: X4P3, P = 5.01 GPa
Physics and Chemistry of Minerals, 2003, 30, 167-176
9007168 CIFO2 SiC 1 2/c 16.952; 12.1986; 7.0942
90; 120.82; 90
516.661Angel, R. J.; Shaw, C. S. J.; Gibbs, G. V.
Compression mechanisms of coesite Sample: X1P12, P = 6.16 GPa
Physics and Chemistry of Minerals, 2003, 30, 167-176
9007169 CIFO2 SiC 1 2/c 16.945; 12.1909; 7.0912
90; 120.85; 90
515.436Angel, R. J.; Shaw, C. S. J.; Gibbs, G. V.
Compression mechanisms of coesite Sample: X1P5, P = 6.509 GPa
Physics and Chemistry of Minerals, 2003, 30, 167-176
9007170 CIFO2 SiC 1 2/c 16.9126; 12.161; 7.0746
90; 120.91; 90
510.255Angel, R. J.; Shaw, C. S. J.; Gibbs, G. V.
Compression mechanisms of coesite Sample: X1P7, P = 7.814 GPa
Physics and Chemistry of Minerals, 2003, 30, 167-176
9007171 CIFO2 SiC 1 2/c 16.8886; 12.1377; 7.0625
90; 120.962; 90
506.366Angel, R. J.; Shaw, C. S. J.; Gibbs, G. V.
Compression mechanisms of coesite Sample: X4P1, P = 8.68 GPa
Physics and Chemistry of Minerals, 2003, 30, 167-176
9007172 CIFFe4.07 H2 O12 Rb0.99 Si2.96C 1 2/m 15.476; 9.493; 10.514
90; 99.95; 90
538.335Comodi, P.; Drabek, M.; Montagnoli, M.; Rieder, M.; Weiss, Z.; Zanazzi, P. F.
Pressure-induced phase transition in synthetic trioctahedral Rb-mica Sample: P = .0001 GPa, data collected in air
Physics and Chemistry of Minerals, 2003, 30, 198-205
9007173 CIFFe4.07 H2 O12 Rb0.99 Si2.96C 1 2/m 15.478; 9.489; 10.521
90; 99.95; 90
538.664Comodi, P.; Drabek, M.; Montagnoli, M.; Rieder, M.; Weiss, Z.; Zanazzi, P. F.
Pressure-induced phase transition in synthetic trioctahedral Rb-mica Sample: P = .0001 GPa, data collected at room conditions in the DAC
Physics and Chemistry of Minerals, 2003, 30, 198-205
9007174 CIFFe4.07 H2 O12 Rb0.99 Si2.96C 1 2/m 15.442; 9.435; 10.185
90; 100.3; 90
514.524Comodi, P.; Drabek, M.; Montagnoli, M.; Rieder, M.; Weiss, Z.; Zanazzi, P. F.
Pressure-induced phase transition in synthetic trioctahedral Rb-mica Sample: P = 1.76 GPa
Physics and Chemistry of Minerals, 2003, 30, 198-205
9007175 CIFFe4.07 H2 O12 Rb0.99 Si2.96C 1 2/m 15.412; 9.392; 10.12
90; 100.2; 90
506.265Comodi, P.; Drabek, M.; Montagnoli, M.; Rieder, M.; Weiss, Z.; Zanazzi, P. F.
Pressure-induced phase transition in synthetic trioctahedral Rb-mica Sample: P = 2.81 GPa
Physics and Chemistry of Minerals, 2003, 30, 198-205
9007176 CIFFe4.07 H2 O12 Rb0.99 Si2.96C 1 2/m 15.42; 9.383; 9.846
90; 100.8; 90
491.858Comodi, P.; Drabek, M.; Montagnoli, M.; Rieder, M.; Weiss, Z.; Zanazzi, P. F.
Pressure-induced phase transition in synthetic trioctahedral Rb-mica Sample: P = 4.75 GPa
Physics and Chemistry of Minerals, 2003, 30, 198-205
9007177 CIFFe4.07 H2 O12 Rb0.99 Si2.96C 1 2/m 15.41; 9.325; 9.645
90; 100.7; 90
478.113Comodi, P.; Drabek, M.; Montagnoli, M.; Rieder, M.; Weiss, Z.; Zanazzi, P. F.
Pressure-induced phase transition in synthetic trioctahedral Rb-mica Sample: P = 7.2 GPa
Physics and Chemistry of Minerals, 2003, 30, 198-205
9007178 CIFC H30 Ca3 O25 S SiP 6311.022; 11.022; 10.374
90; 90; 120
1091.44Jacobsen, S. D.; Smyth, J. R.; Swope, R. J.
Thermal expansion of hydrated six-coordinated silicon in thaumasite, Ca3Si(OH)6(CO3)(SO4).12H2O Sample: T = 130 K
Physics and Chemistry of Minerals, 2003, 30, 321-329
9007179 CIFC H30 Ca3 O25 S SiP 6311.0538; 11.0538; 10.4111
90; 90; 120
1101.67Jacobsen, S. D.; Smyth, J. R.; Swope, R. J.
Thermal expansion of hydrated six-coordinated silicon in thaumasite, Ca3Si(OH)6(CO3)(SO4).12H2O Sample: T = 298 K
Physics and Chemistry of Minerals, 2003, 30, 321-329
9007180 CIFAl1.928 Cr0.066 Mg1.003 Mn0.001 O4 Zn0.002F d -3 m :28.0914; 8.0914; 8.0914
90; 90; 90
529.75Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Cr, 1st run, T = 25 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007181 CIFAl1.928 Cr0.066 Mg1.003 Mn0.001 O4 Zn0.002F d -3 m :28.1018; 8.1018; 8.1018
90; 90; 90
531.795Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Cr, 1st run, T = 200 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007182 CIFAl1.928 Cr0.066 Mg1.003 Mn0.001 O4 Zn0.002F d -3 m :28.1169; 8.1169; 8.1169
90; 90; 90
534.774Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Cr, 1st run, T = 400 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007183 CIFAl1.928 Cr0.066 Mg1.003 Mn0.001 O4 Zn0.002F d -3 m :28.1207; 8.1207; 8.1207
90; 90; 90
535.526Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Cr, 1st run, T = 450 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007184 CIFAl1.928 Cr0.066 Mg1.003 Mn0.001 O4 Zn0.002F d -3 m :28.1168; 8.1168; 8.1168
90; 90; 90
534.755Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Cr, 1st run, T = 400 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007185 CIFAl1.928 Cr0.066 Mg1.003 Mn0.001 O4 Zn0.002F d -3 m :28.0917; 8.0917; 8.0917
90; 90; 90
529.809Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Cr, 1st run, T = 25 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007186 CIFAl1.928 Cr0.066 Mg1.003 Mn0.001 O4 Zn0.002F d -3 m :28.1256; 8.1256; 8.1256
90; 90; 90
536.496Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Cr, 2nd run, T = 500 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007187 CIFAl1.928 Cr0.066 Mg1.003 Mn0.001 O4 Zn0.002F d -3 m :28.1217; 8.1217; 8.1217
90; 90; 90
535.724Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Cr, 2nd run, T = 450 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007188 CIFAl1.928 Cr0.066 Mg1.003 Mn0.001 O4 Zn0.002F d -3 m :28.1298; 8.1298; 8.1298
90; 90; 90
537.328Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Cr, 3rd run, T = 550 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007189 CIFAl1.928 Cr0.066 Mg1.003 Mn0.001 O4 Zn0.002F d -3 m :28.1335; 8.1335; 8.1335
90; 90; 90
538.062Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Cr, 3rd run, T = 600 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007190 CIFAl1.928 Cr0.066 Mg1.003 Mn0.001 O4 Zn0.002F d -3 m :28.1381; 8.1381; 8.1381
90; 90; 90
538.976Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Cr, 3rd run, T = 650 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007191 CIFAl1.928 Cr0.066 Mg1.003 Mn0.001 O4 Zn0.002F d -3 m :28.1423; 8.1423; 8.1423
90; 90; 90
539.81Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Cr, 3rd run, T = 700 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007192 CIFAl1.928 Cr0.066 Mg1.003 Mn0.001 O4 Zn0.002F d -3 m :28.1503; 8.1503; 8.1503
90; 90; 90
541.403Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Cr, 3rd run, T = 800 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007193 CIFAl1.928 Cr0.066 Mg1.003 Mn0.001 O4 Zn0.002F d -3 m :28.1577; 8.1577; 8.1577
90; 90; 90
542.879Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Cr, 3rd run, T = 900 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007194 CIFAl1.928 Cr0.066 Mg1.003 Mn0.001 O4 Zn0.002F d -3 m :28.1667; 8.1667; 8.1667
90; 90; 90
544.678Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Cr, 3rd run, T = 1000 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007195 CIFAl1.868 Cr0.123 Mg0.999 Mn0.002 O4 Zn0.007F d -3 m :28.1019; 8.1019; 8.1019
90; 90; 90
531.815Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: M-Cr, 1st run, T = 28 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007196 CIFAl1.868 Cr0.123 Mg0.999 Mn0.002 O4 Zn0.007F d -3 m :28.1116; 8.1116; 8.1116
90; 90; 90
533.727Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: M-Cr, 1st run, T = 200 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007197 CIFAl1.868 Cr0.123 Mg0.999 Mn0.002 O4 Zn0.007F d -3 m :28.1263; 8.1263; 8.1263
90; 90; 90
536.634Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: M-Cr, 1st run, T = 400 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007198 CIFAl1.868 Cr0.123 Mg0.999 Mn0.002 O4 Zn0.007F d -3 m :28.1305; 8.1305; 8.1305
90; 90; 90
537.467Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: M-Cr, 1st run, T = 450 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007199 CIFAl1.868 Cr0.123 Mg0.999 Mn0.002 O4 Zn0.007F d -3 m :28.1265; 8.1265; 8.1265
90; 90; 90
536.674Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: M-Cr, 1st run, T = 400 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007200 CIFAl1.868 Cr0.123 Mg0.999 Mn0.002 O4 Zn0.007F d -3 m :28.1018; 8.1018; 8.1018
90; 90; 90
531.795Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: M-Cr, 1st run, T = 28 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007201 CIFAl1.868 Cr0.123 Mg0.999 Mn0.002 O4 Zn0.007F d -3 m :28.1338; 8.1338; 8.1338
90; 90; 90
538.122Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: M-Cr, 2nd run, T = 500 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007202 CIFAl1.868 Cr0.123 Mg0.999 Mn0.002 O4 Zn0.007F d -3 m :28.1302; 8.1302; 8.1302
90; 90; 90
537.407Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: M-Cr, 2nd run, T = 450 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007203 CIFAl1.868 Cr0.123 Mg0.999 Mn0.002 O4 Zn0.007F d -3 m :28.1379; 8.1379; 8.1379
90; 90; 90
538.936Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: M-Cr, 3rd run, T = 550 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007204 CIFAl1.868 Cr0.123 Mg0.999 Mn0.002 O4 Zn0.007F d -3 m :28.1419; 8.1419; 8.1419
90; 90; 90
539.731Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: M-Cr, 3rd run, T = 600 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007205 CIFAl1.868 Cr0.123 Mg0.999 Mn0.002 O4 Zn0.007F d -3 m :28.1461; 8.1461; 8.1461
90; 90; 90
540.567Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: M-Cr, 3rd run, T = 650 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007206 CIFAl1.868 Cr0.123 Mg0.999 Mn0.002 O4 Zn0.007F d -3 m :28.1502; 8.1502; 8.1502
90; 90; 90
541.383Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: M-Cr, 3rd run, T = 700 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007207 CIFAl1.868 Cr0.123 Mg0.999 Mn0.002 O4 Zn0.007F d -3 m :28.1577; 8.1577; 8.1577
90; 90; 90
542.879Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: M-Cr, 3rd run, T = 800 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007208 CIFAl1.868 Cr0.123 Mg0.999 Mn0.002 O4 Zn0.007F d -3 m :28.1658; 8.1658; 8.1658
90; 90; 90
544.498Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: M-Cr, 3rd run, T = 900 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007209 CIFAl1.868 Cr0.123 Mg0.999 Mn0.002 O4 Zn0.007F d -3 m :28.1733; 8.1733; 8.1733
90; 90; 90
546Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: M-Cr, 3rd run, T = 1000 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007210 CIFAl1.834 Cr0.162 Mg0.995 Mn0.002 O4 Zn0.007F d -3 m :28.108; 8.108; 8.108
90; 90; 90
533.017Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: H-Cr, 1st run, T = 25 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007211 CIFAl1.834 Cr0.162 Mg0.995 Mn0.002 O4 Zn0.007F d -3 m :28.118; 8.118; 8.118
90; 90; 90
534.992Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: H-Cr, 1st run, T = 200 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007212 CIFAl1.834 Cr0.162 Mg0.995 Mn0.002 O4 Zn0.007F d -3 m :28.1316; 8.1316; 8.1316
90; 90; 90
537.685Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: H-Cr, 1st run, T = 400 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007213 CIFAl1.834 Cr0.162 Mg0.995 Mn0.002 O4 Zn0.007F d -3 m :28.1354; 8.1354; 8.1354
90; 90; 90
538.439Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: H-Cr, 1st run, T = 450 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007214 CIFAl1.834 Cr0.162 Mg0.995 Mn0.002 O4 Zn0.007F d -3 m :28.1315; 8.1315; 8.1315
90; 90; 90
537.665Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: H-Cr, 1st run, T = 400 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007215 CIFAl1.834 Cr0.162 Mg0.995 Mn0.002 O4 Zn0.007F d -3 m :28.1085; 8.1085; 8.1085
90; 90; 90
533.116Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: H-Cr, 1st run, T = 25 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007216 CIFAl1.834 Cr0.162 Mg0.995 Mn0.002 O4 Zn0.007F d -3 m :28.14; 8.14; 8.14
90; 90; 90
539.353Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: H-Cr, 2nd run, T = 500 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007217 CIFAl1.834 Cr0.162 Mg0.995 Mn0.002 O4 Zn0.007F d -3 m :28.1358; 8.1358; 8.1358
90; 90; 90
538.519Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: H-Cr, 2nd run, T = 450 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007218 CIFAl1.834 Cr0.162 Mg0.995 Mn0.002 O4 Zn0.007F d -3 m :28.1445; 8.1445; 8.1445
90; 90; 90
540.248Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: H-Cr, 3rd run, T = 550 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007219 CIFAl1.834 Cr0.162 Mg0.995 Mn0.002 O4 Zn0.007F d -3 m :28.1482; 8.1482; 8.1482
90; 90; 90
540.985Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: H-Cr, 3rd run, T = 600 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007220 CIFAl1.834 Cr0.162 Mg0.995 Mn0.002 O4 Zn0.007F d -3 m :28.1525; 8.1525; 8.1525
90; 90; 90
541.842Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: H-Cr, 3rd run, T = 650 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007221 CIFAl1.834 Cr0.162 Mg0.995 Mn0.002 O4 Zn0.007F d -3 m :28.1569; 8.1569; 8.1569
90; 90; 90
542.719Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: H-Cr, 3rd run, T = 700 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007222 CIFAl1.834 Cr0.162 Mg0.995 Mn0.002 O4 Zn0.007F d -3 m :28.1655; 8.1655; 8.1655
90; 90; 90
544.438Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: H-Cr, 3rd run, T = 800 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007223 CIFAl1.834 Cr0.162 Mg0.995 Mn0.002 O4 Zn0.007F d -3 m :28.1726; 8.1726; 8.1726
90; 90; 90
545.859Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: H-Cr, 3rd run, T = 900 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007224 CIFAl1.834 Cr0.162 Mg0.995 Mn0.002 O4 Zn0.007F d -3 m :28.1791; 8.1791; 8.1791
90; 90; 90
547.163Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: H-Cr, 3rd run, T = 1000 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007225 CIFAl1.914 Fe0.082 Mg0.99 O4F d -3 m :28.0989; 8.0989; 8.0989
90; 90; 90
531.225Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Fe, 1st run, T = 25 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007226 CIFAl1.917 Fe0.081 Mg0.988 O4F d -3 m :28.1092; 8.1092; 8.1092
90; 90; 90
533.254Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Fe, 1st run, T = 200 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007227 CIFAl1.915 Fe0.082 Mg0.989 O4F d -3 m :28.1239; 8.1239; 8.1239
90; 90; 90
536.159Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Fe, 1st run, T = 400 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007228 CIFAl2.635 Fe0.08 Mg0.274 O4F d -3 m :28.1281; 8.1281; 8.1281
90; 90; 90
536.991Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Fe, 1st run, T = 450 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007229 CIFAl1.919 Fe0.079 Mg0.993 O4F d -3 m :28.1243; 8.1243; 8.1243
90; 90; 90
536.238Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Fe, 1st run, T = 400 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007230 CIFAl1.917 Fe0.08 Mg0.991 O4F d -3 m :28.0987; 8.0987; 8.0987
90; 90; 90
531.185Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Fe, 1st run, T = 25 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007231 CIFAl1.918 Fe0.08 Mg0.991 O4F d -3 m :28.1318; 8.1318; 8.1318
90; 90; 90
537.725Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Fe, 2nd run, T = 500 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007232 CIFAl1.916 Fe0.081 Mg0.99 O4F d -3 m :28.128; 8.128; 8.128
90; 90; 90
536.971Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Fe, 2nd run, T = 450 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007233 CIFAl1.917 Fe0.08 Mg0.991 O4F d -3 m :28.1359; 8.1359; 8.1359
90; 90; 90
538.539Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Fe, 3rd run, T = 550 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007234 CIFAl1.917 Fe0.08 Mg0.993 O4F d -3 m :28.1403; 8.1403; 8.1403
90; 90; 90
539.413Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Fe, 3rd run, T = 600 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007235 CIFAl1.915 Fe0.08 Mg0.995 O4F d -3 m :28.144; 8.144; 8.144
90; 90; 90
540.149Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Fe, 3rd run, T = 650 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007236 CIFAl1.914 Fe0.08 Mg0.996 O4F d -3 m :28.1469; 8.1469; 8.1469
90; 90; 90
540.726Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Fe, 3rd run, T = 700 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007237 CIFAl1.914 Fe0.08 Mg0.996 O4F d -3 m :28.1547; 8.1547; 8.1547
90; 90; 90
542.28Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Fe, 3rd run, T = 800 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007238 CIFAl1.912 Fe0.082 Mg0.995 O4F d -3 m :28.1627; 8.1627; 8.1627
90; 90; 90
543.878Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Fe, 3rd run, T = 900 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007239 CIFAl1.911 Fe0.082 Mg0.997 O4F d -3 m :28.1701; 8.1701; 8.1701
90; 90; 90
545.359Martignago, F.; Dal Negro, A.; Carbonin, S.
How Cr3+ and Fe3+ affect Mg-Al order-disorder transformation at high temperature in natural spinels Sample: L-Fe, 3rd run, T = 1000 C
Physics and Chemistry of Minerals, 2003, 30, 401-408
9007240 CIFS3 Sb2P n m a11.299; 3.8313; 11.227
90; 90; 90
486.015Lundegaard, L. F.; Miletich, R.; Balic-Zunic T; Makovicky, E.
Equation of state and crystal structure of Sb2S3 between 0 and 10 GPa Sample: Romania, P = 0.0001 GPa
Physics and Chemistry of Minerals, 2003, 30, 463-468
9007241 CIFS3 Sb2P n m a11.098; 3.8232; 11.091
90; 90; 90
470.59Lundegaard, L. F.; Miletich, R.; Balic-Zunic T; Makovicky, E.
Equation of state and crystal structure of Sb2S3 between 0 and 10 GPa Sample: Romania, P = 1.115 GPa
Physics and Chemistry of Minerals, 2003, 30, 463-468
9007242 CIFS3 Sb2P n m a11.044; 3.8124; 11.043
90; 90; 90
464.956Lundegaard, L. F.; Miletich, R.; Balic-Zunic T; Makovicky, E.
Equation of state and crystal structure of Sb2S3 between 0 and 10 GPa Sample: Romania, P = 1.591 GPa
Physics and Chemistry of Minerals, 2003, 30, 463-468
9007243 CIFS3 Sb2P n m a10.959; 3.806; 10.983
90; 90; 90
458.1Lundegaard, L. F.; Miletich, R.; Balic-Zunic T; Makovicky, E.
Equation of state and crystal structure of Sb2S3 between 0 and 10 GPa Sample: Romania, P = 2.118 GPa
Physics and Chemistry of Minerals, 2003, 30, 463-468
9007244 CIFS3 Sb2P n m a10.836; 3.7919; 10.884
90; 90; 90
447.213Lundegaard, L. F.; Miletich, R.; Balic-Zunic T; Makovicky, E.
Equation of state and crystal structure of Sb2S3 between 0 and 10 GPa Sample: Romania, P = 3.235 GPa
Physics and Chemistry of Minerals, 2003, 30, 463-468
9007245 CIFS3 Sb2P n m a10.529; 3.7458; 10.604
90; 90; 90
418.217Lundegaard, L. F.; Miletich, R.; Balic-Zunic T; Makovicky, E.
Equation of state and crystal structure of Sb2S3 between 0 and 10 GPa Sample: Romania, P = 7.406 GPa
Physics and Chemistry of Minerals, 2003, 30, 463-468
9007246 CIFS3 Sb2P n m a10.508; 3.7409; 10.579
90; 90; 90
415.854Lundegaard, L. F.; Miletich, R.; Balic-Zunic T; Makovicky, E.
Equation of state and crystal structure of Sb2S3 between 0 and 10 GPa Sample: Romania, P = 7.832 GPa
Physics and Chemistry of Minerals, 2003, 30, 463-468
9007247 CIFH2 Mg6.19 Na1.62 O24 Si8P 1 21/m 19.685; 17.92; 5.268
90; 102.44; 90
892.823Camara, F.; Oberti, R.; Iezzi, G.; Della Ventura, G.
The P2_1/m - C2/m phase transition in synthetic amphibole Na NaMg Mg5 Si8 O22 (OH)2: thermodynamic and crystal-chemical evaluation Sample: T = ambient
Physics and Chemistry of Minerals, 2003, 30, 570-581
9007248 CIFH2 Mg6.19 Na1.62 O24 Si8P 1 21/m 19.706; 17.986; 5.286
90; 102.37; 90
901.365Camara, F.; Oberti, R.; Iezzi, G.; Della Ventura, G.
The P2_1/m - C2/m phase transition in synthetic amphibole Na NaMg Mg5 Si8 O22 (OH)2: thermodynamic and crystal-chemical evaluation Sample: T = 140 C
Physics and Chemistry of Minerals, 2003, 30, 570-581
9007249 CIFH2 Mg6.19 Na1.62 O24 Si8C 1 2/m 19.723; 18.027; 5.301
90; 102.26; 90
907.951Camara, F.; Oberti, R.; Iezzi, G.; Della Ventura, G.
The P2_1/m - C2/m phase transition in synthetic amphibole Na NaMg Mg5 Si8 O22 (OH)2: thermodynamic and crystal-chemical evaluation Sample: T = 270 C
Physics and Chemistry of Minerals, 2003, 30, 570-581
9007250 CIFH2 Mg6.19 Na1.62 O24 Si8C 1 2/m 19.737; 18.049; 5.303
90; 102.22; 90
910.849Camara, F.; Oberti, R.; Iezzi, G.; Della Ventura, G.
The P2_1/m - C2/m phase transition in synthetic amphibole Na NaMg Mg5 Si8 O22 (OH)2: thermodynamic and crystal-chemical evaluation Sample: T = 370 C
Physics and Chemistry of Minerals, 2003, 30, 570-581
9007251 CIFCa0.001 Fe0.747 Mn0.215 Nb1.894 O6 Sc0.003 Sn0.001 Ta0.094 Ti0.027 W0.003P b c n14.288; 5.7364; 5.0562
90; 90; 90
414.415Tarantino S C; Zema M; Pistorino M; Domeneghetti M C
High-temperature X-ray investigation of natural columbites Note: sample BRA3 at T = 20 C Locality: San Jose de Safira, Minas Gerais, Brazil
Physics and Chemistry of Minerals, 2003, 30, 590-598
9007252 CIFCa0.001 Fe0.747 Mn0.215 Nb1.894 O6 Sc0.003 Sn0.001 Ta0.094 Ti0.027 W0.003P b c n14.3191; 5.7482; 5.0713
90; 90; 90
417.414Tarantino S C; Zema M; Pistorino M; Domeneghetti M C
High-temperature X-ray investigation of natural columbites Note: sample BRA3 at T = 300 C Locality: San Jose de Safira, Minas Gerais, Brazil
Physics and Chemistry of Minerals, 2003, 30, 590-598
9007253 CIFCa0.001 Fe0.747 Mn0.215 Nb1.894 O6 Sc0.003 Sn0.001 Ta0.094 Ti0.027 W0.003P b c n14.3515; 5.761; 5.0833
90; 90; 90
420.282Tarantino S C; Zema M; Pistorino M; Domeneghetti M C
High-temperature X-ray investigation of natural columbites Note: sample BRA3 at T = 600 C Locality: San Jose de Safira, Minas Gerais, Brazil
Physics and Chemistry of Minerals, 2003, 30, 590-598
9007254 CIFCa0.009 Fe0.138 Mn0.792 Nb1.794 O6 Sc0.002 Sn0.003 Ta0.166 Ti0.077 W0.001P b c n14.386; 5.7478; 5.0797
90; 90; 90
420.029Tarantino S C; Zema M; Pistorino M; Domeneghetti M C
High-temperature X-ray investigation of natural columbites Note: sample KRA5 at T = 20 C Locality: Kragero, Norway
Physics and Chemistry of Minerals, 2003, 30, 590-598
9007255 CIFCa0.009 Fe0.138 Mn0.792 Nb1.794 O6 Sc0.002 Sn0.003 Ta0.166 Ti0.077 W0.001P b c n14.4159; 5.7593; 5.0905
90; 90; 90
422.641Tarantino S C; Zema M; Pistorino M; Domeneghetti M C
High-temperature X-ray investigation of natural columbites Note: sample KRA5 at T = 300 C Locality: Kragero, Norway
Physics and Chemistry of Minerals, 2003, 30, 590-598
9007256 CIFCa0.009 Fe0.138 Mn0.792 Nb1.794 O6 Sc0.002 Sn0.003 Ta0.166 Ti0.077 W0.001P b c n14.4508; 5.7741; 5.1025
90; 90; 90
425.754Tarantino S C; Zema M; Pistorino M; Domeneghetti M C
High-temperature X-ray investigation of natural columbites Note: sample KRA5 at T = 600 C Sample: Kragero, Norway
Physics and Chemistry of Minerals, 2003, 30, 590-598
9007257 CIFAl0.054 Cr1.804 Fe0.005 Mg0.99 O4 V0.142 Zn0.007F d -3 m :28.3367; 8.3367; 8.3367
90; 90; 90
579.405Lavina, B.; Reznitskii, L. Z.; Bosi, F.
Crystal chemistry of some Mg, Cr, V normal spinels from Sludyanka (Lake Baikal, Russia): the influence of V3+ on structural stability Sample: VRL2a
Physics and Chemistry of Minerals, 2003, 30, 599-605
9007258 CIFAl0.078 Cr1.708 Fe0.003 Mg Mn0.002 O4 V0.15 Zn0.008F d -3 m :28.3431; 8.3431; 8.3431
90; 90; 90
580.741Lavina, B.; Reznitskii, L. Z.; Bosi, F.
Crystal chemistry of some Mg, Cr, V normal spinels from Sludyanka (Lake Baikal, Russia): the influence of V3+ on structural stability Sample: VRL2d
Physics and Chemistry of Minerals, 2003, 30, 599-605
9007259 CIFAl0.064 Cr1.75 Fe0.002 Mg0.99 O4 V0.19 Zn0.006F d -3 m :28.3334; 8.3334; 8.3334
90; 90; 90
578.718Lavina, B.; Reznitskii, L. Z.; Bosi, F.
Crystal chemistry of some Mg, Cr, V normal spinels from Sludyanka (Lake Baikal, Russia): the influence of V3+ on structural stability Sample: VRL2c
Physics and Chemistry of Minerals, 2003, 30, 599-605
9007260 CIFAl0.078 Cr1.67 Fe0.003 Mg0.97 Mn0.002 O4 V0.26 Zn0.005F d -3 m :28.3369; 8.3369; 8.3369
90; 90; 90
579.447Lavina, B.; Reznitskii, L. Z.; Bosi, F.
Crystal chemistry of some Mg, Cr, V normal spinels from Sludyanka (Lake Baikal, Russia): the influence of V3+ on structural stability Sample: VRL2b
Physics and Chemistry of Minerals, 2003, 30, 599-605
9007261 CIFAl0.028 Cr1.46 Fe0.009 Mg0.99 Mn0.003 O4 V0.512 Zn0.005F d -3 m :28.3584; 8.3584; 8.3584
90; 90; 90
583.942Lavina, B.; Reznitskii, L. Z.; Bosi, F.
Crystal chemistry of some Mg, Cr, V normal spinels from Sludyanka (Lake Baikal, Russia): the influence of V3+ on structural stability Sample: VRL1r
Physics and Chemistry of Minerals, 2003, 30, 599-605
9007262 CIFAl0.09 Cr1.38 Fe0.018 Mg0.979 Mn0.004 O4 V0.524 Zn0.005F d -3 m :28.3479; 8.3479; 8.3479
90; 90; 90
581.744Lavina, B.; Reznitskii, L. Z.; Bosi, F.
Crystal chemistry of some Mg, Cr, V normal spinels from Sludyanka (Lake Baikal, Russia): the influence of V3+ on structural stability Sample: VRL1p
Physics and Chemistry of Minerals, 2003, 30, 599-605
9007263 CIFAl0.086 Cr1.36 Fe0.01 Mg0.99 Mn0.003 O4 V0.55 Zn0.005F d -3 m :28.3613; 8.3613; 8.3613
90; 90; 90
584.55Lavina, B.; Reznitskii, L. Z.; Bosi, F.
Crystal chemistry of some Mg, Cr, V normal spinels from Sludyanka (Lake Baikal, Russia): the influence of V3+ on structural stability Sample: VRL1a
Physics and Chemistry of Minerals, 2003, 30, 599-605
9007264 CIFAl0.09 Cr1.36 Fe0.01 Mg0.987 Mn0.003 O4 V0.552 Zn0.005F d -3 m :28.3511; 8.3511; 8.3511
90; 90; 90
582.413Lavina, B.; Reznitskii, L. Z.; Bosi, F.
Crystal chemistry of some Mg, Cr, V normal spinels from Sludyanka (Lake Baikal, Russia): the influence of V3+ on structural stability Sample: VRL1b
Physics and Chemistry of Minerals, 2003, 30, 599-605
9007265 CIFAl0.02 Cr1.4 Fe0.005 Mg0.99 Mn0.002 O4 V0.58 Zn0.008F d -3 m :28.3664; 8.3664; 8.3664
90; 90; 90
585.62Lavina, B.; Reznitskii, L. Z.; Bosi, F.
Crystal chemistry of some Mg, Cr, V normal spinels from Sludyanka (Lake Baikal, Russia): the influence of V3+ on structural stability Sample: VRL3a
Physics and Chemistry of Minerals, 2003, 30, 599-605
9007266 CIFAl0.024 Cr1.36 Fe0.004 Mg0.99 Mn0.003 O4 V0.64F d -3 m :28.3604; 8.3604; 8.3604
90; 90; 90
584.361Lavina, B.; Reznitskii, L. Z.; Bosi, F.
Crystal chemistry of some Mg, Cr, V normal spinels from Sludyanka (Lake Baikal, Russia): the influence of V3+ on structural stability Sample: VRL1d
Physics and Chemistry of Minerals, 2003, 30, 599-605
9007267 CIFAl0.02 Cr1.3 Fe0.01 Mg0.99 Mn0.003 O4 V0.68F d -3 m :28.3629; 8.3629; 8.3629
90; 90; 90
584.885Lavina, B.; Reznitskii, L. Z.; Bosi, F.
Crystal chemistry of some Mg, Cr, V normal spinels from Sludyanka (Lake Baikal, Russia): the influence of V3+ on structural stability Sample: VRL1e
Physics and Chemistry of Minerals, 2003, 30, 599-605
9007268 CIFAl0.024 Cr1.24 Fe0.009 Mg0.99 O4 V0.74 Zn0.008F d -3 m :28.3686; 8.3686; 8.3686
90; 90; 90
586.082Lavina, B.; Reznitskii, L. Z.; Bosi, F.
Crystal chemistry of some Mg, Cr, V normal spinels from Sludyanka (Lake Baikal, Russia): the influence of V3+ on structural stability Sample: VRL3b
Physics and Chemistry of Minerals, 2003, 30, 599-605
9007269 CIFAl0.02 Cr1.02 Fe0.002 Mg O4 V0.96 Zn0.015F d -3 m :28.38; 8.38; 8.38
90; 90; 90
588.48Lavina, B.; Reznitskii, L. Z.; Bosi, F.
Crystal chemistry of some Mg, Cr, V normal spinels from Sludyanka (Lake Baikal, Russia): the influence of V3+ on structural stability Sample: VRL3c
Physics and Chemistry of Minerals, 2003, 30, 599-605
9007270 CIFAl0.79 Fe1.21 Mg O4F d -3 m :28.2796; 8.2796; 8.2796
90; 90; 90
567.581Nakatsuka, A.; Ueno, H.; Nakayama, N.; Mizota, T.; Maekawa, H.
Single-crystal X-ray diffraction study of cation distribution in MgAl2O4-MgFe2O4 spinel solid solution Sample: T = 23 C, x = 1.21
Physics and Chemistry of Minerals, 2004, 31, 278-287
9007271 CIFAl0.47 Fe1.52 Mg O4F d -3 m :28.3252; 8.3252; 8.3252
90; 90; 90
577.011Nakatsuka, A.; Ueno, H.; Nakayama, N.; Mizota, T.; Maekawa, H.
Single-crystal X-ray diffraction study of cation distribution in MgAl2O4-MgFe2O4 spinel solid solution Sample: T = 23 C, x = 1.53
Physics and Chemistry of Minerals, 2004, 31, 278-287
9007272 CIFAl0.22 Fe1.77 Mg1.01 O4F d -3 m :28.3422; 8.3422; 8.3422
90; 90; 90
580.553Nakatsuka, A.; Ueno, H.; Nakayama, N.; Mizota, T.; Maekawa, H.
Single-crystal X-ray diffraction study of cation distribution in MgAl2O4-MgFe2O4 spinel solid solution Sample: T = 23 C, x = 1.77
Physics and Chemistry of Minerals, 2004, 31, 278-287
9007273 CIFFe2 Mg O4F d -3 m :28.36; 8.36; 8.36
90; 90; 90
584.277Nakatsuka, A.; Ueno, H.; Nakayama, N.; Mizota, T.; Maekawa, H.
Single-crystal X-ray diffraction study of cation distribution in MgAl2O4-MgFe2O4 spinel solid solution Sample: T = 23 C, x = 2.00
Physics and Chemistry of Minerals, 2004, 31, 278-287
9007274 CIFAl0.84 H Mg0.07 O2 Si0.09P n n 24.6975; 4.206; 2.8327
90; 90; 90
55.968Kudoh, Y.; Kuribayashi, T.; Suzuki, A.; Ohtani, E.; Kamada, T.
Space group and hydrogen sites of delta-AlOOH and implications for a hypothetical high-pressure form of Mg(OH)2
Physics and Chemistry of Minerals, 2004, 31, 360-364
9007275 CIFFe2.09 H2 Li1.46 Mg3.65 O24 Si8C 1 2/m 19.466; 17.97; 5.288
90; 101.84; 90
880.372Iezzi, G.; Camara, F.; Della Ventura, G.; Oberti, R.; Pedrazzi, G.; Robert, J.-L.
Synthesis, crystal structure and crystal chemistry of ferri-clinoholmquistite, _Li2Mg3Fe3+2Si8O22(OH)2 Sample: 152
Physics and Chemistry of Minerals, 2004, 31, 375-385
9007276 CIFAl2 Ca H10 O15.02 Si4C 1 2/m 114.7514; 13.0827; 7.5648
90; 111.997; 90
1353.64Lee, Y.; Hriljac, J. A.; Vogt, T.
Pressure-induced migration of zeolitic water in laumontite Sample: Pleasant Valley, Connecticut, NMNH R4159; P = ambient
Physics and Chemistry of Minerals, 2004, 31, 421-428
9007277 CIFAl4 Ca2 H22 O33 Si8C 1 2/m 114.8831; 13.182; 7.5387
90; 110.181; 90
1388.21Lee, Y.; Hriljac, J. A.; Vogt, T.
Pressure-induced migration of zeolitic water in laumontite Sample: Pleasant Valley, Connecticut, NMNH R4159; P = 0.2 GPa
Physics and Chemistry of Minerals, 2004, 31, 421-428
9007278 CIFAl4 Ca2 H22 O33 Si8C 1 2/m 114.8913; 13.1661; 7.5284
90; 110.008; 90
1386.94Lee, Y.; Hriljac, J. A.; Vogt, T.
Pressure-induced migration of zeolitic water in laumontite Sample: Pleasant Valley, Connecticut, NMNH R4159; P = 0.3 GPa
Physics and Chemistry of Minerals, 2004, 31, 421-428
9007279 CIFAl4 Ca2 H18 O33 Si8C 1 2/m 114.8795; 13.1442; 7.5078
90; 109.92; 90
1380.52Lee, Y.; Hriljac, J. A.; Vogt, T.
Pressure-induced migration of zeolitic water in laumontite Sample: Pleasant Valley, Connecticut, NMNH R4159; P = 0.6 GPa
Physics and Chemistry of Minerals, 2004, 31, 421-428
9007280 CIFAl4 Ca2 H18 O33 Si8C 1 2/m 114.8486; 13.1211; 7.4774
90; 110.001; 90
1368.96Lee, Y.; Hriljac, J. A.; Vogt, T.
Pressure-induced migration of zeolitic water in laumontite Sample: Pleasant Valley, Connecticut, NMNH R4159; P = 1.1 GPa
Physics and Chemistry of Minerals, 2004, 31, 421-428
9007281 CIFAl4 Ca2 H18 O33 Si8C 1 2/m 114.7934; 13.0979; 7.442
90; 110.166; 90
1353.58Lee, Y.; Hriljac, J. A.; Vogt, T.
Pressure-induced migration of zeolitic water in laumontite Sample: Pleasant Valley, Connecticut, NMNH R4159; P = 1.7 GPa
Physics and Chemistry of Minerals, 2004, 31, 421-428
9007282 CIFAl2 Ca H12 O16.5 Si4C 1 2/m 114.7204; 13.1084; 7.408
90; 110.512; 90
1338.82Lee, Y.; Hriljac, J. A.; Vogt, T.
Pressure-induced migration of zeolitic water in laumontite Sample: Pleasant Valley, Connecticut, NMNH R4159; P = 2.4 GPa
Physics and Chemistry of Minerals, 2004, 31, 421-428
9007283 CIFFe Mn1.911 Na1.896 O12 P3C 1 2/c 112.048; 12.623; 6.511
90; 114.58; 90
900.474Hatert, F.; Long, G. J.; Hautot, D.; Fransolet, A.-M.; Delwiche, J.; Hubin-Franskin M J; Grandjean, F.
A structural, magnetic, and Mossbauer spectral study of several Na-Mn-Fe-bearing alluaudites Sample: #1, synthetic
Physics and Chemistry of Minerals, 2004, 31, 487-506
9007284 CIFFe2.919 H6 O14.905 S2R -3 m :H7.3559; 7.3559; 17.0186
90; 90; 120
797.491Majzlan J; Stevens R; Boerio-Goates J; Woodfield B F; Navrotsky A; Burns P C; Crawford M K; Amos T G
Thermodynamic properties, low-temperature heat-capacity anomalies, and single-crystal X-ray refinement of hydronium jarosite, (H3O)Fe3(SO4)2(OH)6 Note: Single-crystal X-ray diffraction refinement
Physics and Chemistry of Minerals, 2004, 31, 518-531
9007285 CIFFe3 H9 O15 S2R -3 m :H7.3499; 7.3499; 17.0104
90; 90; 120
795.807Majzlan J; Stevens R; Boerio-Goates J; Woodfield B F; Navrotsky A; Burns P C; Crawford M K; Amos T G
Thermodynamic properties, low-temperature heat-capacity anomalies, and single-crystal X-ray refinement of hydronium jarosite, (H3O)Fe3(SO4)2(OH)6 Note: Rietveld refinement of synchrotron X-ray diffraction pattern
Physics and Chemistry of Minerals, 2004, 31, 518-531
9007286 CIFC Ca O3R -3 c :H5.0492; 5.0492; 17.343
90; 90; 120
382.913Prencipe, M.; Pascale, F.; Zicovich-Wilson C M; Saunders, V. R.; Orlando, R.; Dovesi, R.
The vibrational spectrum of calcite (CaCO3): an ab initio quantum-mechanical calculation Note: Theoretically derived structure
Physics and Chemistry of Minerals, 2004, 31, 559-564
9007287 CIFCa D5 O6 PI 1 a 15.79903; 15.1254; 6.18398
90; 116.429; 90
485.724Schofield, P. F.; Knight, K. S.; van der Houwen, J. A. M.; Valsami-Jones E
The role of hydrogen bonding in the thermal expansion and dehydration of brushite, di-calcium phosphate dihydrate Sample: T = 4.2 K
Physics and Chemistry of Minerals, 2004, 31, 606-624
9007288 CIFCa D5 O6 PI 1 a 15.799; 15.1255; 6.1839
90; 116.428; 90
485.722Schofield, P. F.; Knight, K. S.; van der Houwen, J. A. M.; Valsami-Jones E
The role of hydrogen bonding in the thermal expansion and dehydration of brushite, di-calcium phosphate dihydrate Sample: T = 10 K
Physics and Chemistry of Minerals, 2004, 31, 606-624
9007289 CIFCa D5 O6 PI 1 a 15.7991; 15.1251; 6.184
90; 116.429; 90
485.722Schofield, P. F.; Knight, K. S.; van der Houwen, J. A. M.; Valsami-Jones E
The role of hydrogen bonding in the thermal expansion and dehydration of brushite, di-calcium phosphate dihydrate Note: Obvious typo in the x-coordinate of D2 corrected Sample: T = 20 K
Physics and Chemistry of Minerals, 2004, 31, 606-624
9007290 CIFCa D5 O6 PI 1 a 15.799; 15.1255; 6.1839
90; 116.427; 90
485.727Schofield, P. F.; Knight, K. S.; van der Houwen, J. A. M.; Valsami-Jones E
The role of hydrogen bonding in the thermal expansion and dehydration of brushite, di-calcium phosphate dihydrate Sample: T = 30 K
Physics and Chemistry of Minerals, 2004, 31, 606-624
9007291 CIFCa D5 O6 PI 1 a 15.7991; 15.1253; 6.1842
90; 116.428; 90
485.748Schofield, P. F.; Knight, K. S.; van der Houwen, J. A. M.; Valsami-Jones E
The role of hydrogen bonding in the thermal expansion and dehydration of brushite, di-calcium phosphate dihydrate Sample: T = 40 K
Physics and Chemistry of Minerals, 2004, 31, 606-624
9007292 CIFCa D5 O6 PI 1 a 15.7992; 15.1256; 6.1844
90; 116.426; 90
485.79Schofield, P. F.; Knight, K. S.; van der Houwen, J. A. M.; Valsami-Jones E
The role of hydrogen bonding in the thermal expansion and dehydration of brushite, di-calcium phosphate dihydrate Sample: T = 50 K
Physics and Chemistry of Minerals, 2004, 31, 606-624
9007293 CIFCa D5 O6 PI 1 a 15.7994; 15.125; 6.185
90; 116.426; 90
485.835Schofield, P. F.; Knight, K. S.; van der Houwen, J. A. M.; Valsami-Jones E
The role of hydrogen bonding in the thermal expansion and dehydration of brushite, di-calcium phosphate dihydrate Sample: T = 60 K
Physics and Chemistry of Minerals, 2004, 31, 606-624
9007294 CIFCa D5 O6 PI 1 a 15.7997; 15.1257; 6.1857
90; 116.425; 90
485.942Schofield, P. F.; Knight, K. S.; van der Houwen, J. A. M.; Valsami-Jones E
The role of hydrogen bonding in the thermal expansion and dehydration of brushite, di-calcium phosphate dihydrate Sample: T = 70 K
Physics and Chemistry of Minerals, 2004, 31, 606-624
9007295 CIFCa D5 O6 PI 1 a 15.8; 15.1256; 6.1866
90; 116.422; 90
486.047Schofield, P. F.; Knight, K. S.; van der Houwen, J. A. M.; Valsami-Jones E
The role of hydrogen bonding in the thermal expansion and dehydration of brushite, di-calcium phosphate dihydrate Sample: T = 80 K
Physics and Chemistry of Minerals, 2004, 31, 606-624
9007296 CIFCa D5 O6 PI 1 a 15.8003; 15.1259; 6.1873
90; 116.422; 90
486.137Schofield, P. F.; Knight, K. S.; van der Houwen, J. A. M.; Valsami-Jones E
The role of hydrogen bonding in the thermal expansion and dehydration of brushite, di-calcium phosphate dihydrate Sample: T = 90 K
Physics and Chemistry of Minerals, 2004, 31, 606-624
9007297 CIFCa D5 O6 PI 1 a 15.8007; 15.1267; 6.1887
90; 116.419; 90
486.318Schofield, P. F.; Knight, K. S.; van der Houwen, J. A. M.; Valsami-Jones E
The role of hydrogen bonding in the thermal expansion and dehydration of brushite, di-calcium phosphate dihydrate Sample: T = 100 K
Physics and Chemistry of Minerals, 2004, 31, 606-624
9007298 CIFCa D5 O6 PI 1 a 15.8016; 15.1284; 6.1916
90; 116.418; 90
486.681Schofield, P. F.; Knight, K. S.; van der Houwen, J. A. M.; Valsami-Jones E
The role of hydrogen bonding in the thermal expansion and dehydration of brushite, di-calcium phosphate dihydrate Sample: T = 125 K
Physics and Chemistry of Minerals, 2004, 31, 606-624
9007299 CIFCa D5 O6 PI 1 a 15.8026; 15.1314; 6.1956
90; 116.416; 90
487.184Schofield, P. F.; Knight, K. S.; van der Houwen, J. A. M.; Valsami-Jones E
The role of hydrogen bonding in the thermal expansion and dehydration of brushite, di-calcium phosphate dihydrate Sample: T = 150 K
Physics and Chemistry of Minerals, 2004, 31, 606-624
9007300 CIFCa D5 O6 PI 1 a 15.804; 15.1361; 6.2006
90; 116.414; 90
487.855Schofield, P. F.; Knight, K. S.; van der Houwen, J. A. M.; Valsami-Jones E
The role of hydrogen bonding in the thermal expansion and dehydration of brushite, di-calcium phosphate dihydrate Sample: T = 175 K
Physics and Chemistry of Minerals, 2004, 31, 606-624
9007301 CIFCa D5 O6 PI 1 a 15.8053; 15.142; 6.206
90; 116.413; 90
488.584Schofield, P. F.; Knight, K. S.; van der Houwen, J. A. M.; Valsami-Jones E
The role of hydrogen bonding in the thermal expansion and dehydration of brushite, di-calcium phosphate dihydrate Sample: T = 200 K
Physics and Chemistry of Minerals, 2004, 31, 606-624
9007302 CIFCa D5 O6 PI 1 a 15.8062; 15.1482; 6.2118
90; 116.41; 90
489.329Schofield, P. F.; Knight, K. S.; van der Houwen, J. A. M.; Valsami-Jones E
The role of hydrogen bonding in the thermal expansion and dehydration of brushite, di-calcium phosphate dihydrate Sample: T = 225 K
Physics and Chemistry of Minerals, 2004, 31, 606-624
9007303 CIFCa D5 O6 PI 1 a 15.8077; 15.1563; 6.2186
90; 116.408; 90
490.262Schofield, P. F.; Knight, K. S.; van der Houwen, J. A. M.; Valsami-Jones E
The role of hydrogen bonding in the thermal expansion and dehydration of brushite, di-calcium phosphate dihydrate Sample: T = 250 K
Physics and Chemistry of Minerals, 2004, 31, 606-624
9007304 CIFCa D5 O6 PI 1 a 15.8091; 15.1656; 6.2259
90; 116.407; 90
491.261Schofield, P. F.; Knight, K. S.; van der Houwen, J. A. M.; Valsami-Jones E
The role of hydrogen bonding in the thermal expansion and dehydration of brushite, di-calcium phosphate dihydrate Sample: T = 275 K
Physics and Chemistry of Minerals, 2004, 31, 606-624
9007305 CIFCa D5 O6 PI 1 a 15.8105; 15.1758; 6.2337
90; 116.405; 90
492.335Schofield, P. F.; Knight, K. S.; van der Houwen, J. A. M.; Valsami-Jones E
The role of hydrogen bonding in the thermal expansion and dehydration of brushite, di-calcium phosphate dihydrate Sample: T = 300 K
Physics and Chemistry of Minerals, 2004, 31, 606-624
9007306 CIFCa D5 O6 PI 1 a 15.8119; 15.1867; 6.2416
90; 116.405; 90
493.432Schofield, P. F.; Knight, K. S.; van der Houwen, J. A. M.; Valsami-Jones E
The role of hydrogen bonding in the thermal expansion and dehydration of brushite, di-calcium phosphate dihydrate Sample: T = 325 K
Physics and Chemistry of Minerals, 2004, 31, 606-624
9007307 CIFCa D5 O6 PI 1 a 15.8132; 15.1973; 6.2497
90; 116.406; 90
494.523Schofield, P. F.; Knight, K. S.; van der Houwen, J. A. M.; Valsami-Jones E
The role of hydrogen bonding in the thermal expansion and dehydration of brushite, di-calcium phosphate dihydrate Sample: T = 350 K
Physics and Chemistry of Minerals, 2004, 31, 606-624
9007308 CIFCa D5 O6 PI 1 a 15.8145; 15.2086; 6.258
90; 116.408; 90
495.65Schofield, P. F.; Knight, K. S.; van der Houwen, J. A. M.; Valsami-Jones E
The role of hydrogen bonding in the thermal expansion and dehydration of brushite, di-calcium phosphate dihydrate Sample: T = 375 K
Physics and Chemistry of Minerals, 2004, 31, 606-624
9007309 CIFCa D5 O6 PI 1 a 15.8151; 15.2179; 6.2664
90; 116.413; 90
496.649Schofield, P. F.; Knight, K. S.; van der Houwen, J. A. M.; Valsami-Jones E
The role of hydrogen bonding in the thermal expansion and dehydration of brushite, di-calcium phosphate dihydrate Sample: T = 400 K
Physics and Chemistry of Minerals, 2004, 31, 606-624
9007310 CIFCr2 Mg O4F d -3 m :28.3329; 8.3329; 8.3329
90; 90; 90
578.613Lenaz, D.; Skogby, H.; Princivalle, F.; Halenius, U.
Structural changes and valence states in the MgCr2O4-FeCr2O4 solid solution series Sample: MgCr5
Physics and Chemistry of Minerals, 2004, 31, 633-642
9007311 CIFCr2 Mg O4F d -3 m :28.3328; 8.3328; 8.3328
90; 90; 90
578.593Lenaz, D.; Skogby, H.; Princivalle, F.; Halenius, U.
Structural changes and valence states in the MgCr2O4-FeCr2O4 solid solution series Sample: MgCr9A
Physics and Chemistry of Minerals, 2004, 31, 633-642
9007312 CIFCr1.992 Fe0.024 Mg0.984 O4F d -3 m :28.334; 8.334; 8.334
90; 90; 90
578.843Lenaz, D.; Skogby, H.; Princivalle, F.; Halenius, U.
Structural changes and valence states in the MgCr2O4-FeCr2O4 solid solution series Sample: Fe2-20
Physics and Chemistry of Minerals, 2004, 31, 633-642
9007313 CIFCr1.996 Fe0.072 Mg0.932 O4F d -3 m :28.3352; 8.3352; 8.3352
90; 90; 90
579.093Lenaz, D.; Skogby, H.; Princivalle, F.; Halenius, U.
Structural changes and valence states in the MgCr2O4-FeCr2O4 solid solution series Sample: Fe2-10
Physics and Chemistry of Minerals, 2004, 31, 633-642
9007314 CIFCr2 Fe0.13 Mg0.87 O4F d -3 m :28.3379; 8.3379; 8.3379
90; 90; 90
579.656Lenaz, D.; Skogby, H.; Princivalle, F.; Halenius, U.
Structural changes and valence states in the MgCr2O4-FeCr2O4 solid solution series Sample: Fe2-10B
Physics and Chemistry of Minerals, 2004, 31, 633-642
9007315 CIFCr2 Fe0.2 Mg0.8 O4F d -3 m :28.3415; 8.3415; 8.3415
90; 90; 90
580.407Lenaz, D.; Skogby, H.; Princivalle, F.; Halenius, U.
Structural changes and valence states in the MgCr2O4-FeCr2O4 solid solution series Sample: Fe2-30
Physics and Chemistry of Minerals, 2004, 31, 633-642
9007316 CIFCr2 Fe0.32 Mg0.68 O4F d -3 m :28.3462; 8.3462; 8.3462
90; 90; 90
581.388Lenaz, D.; Skogby, H.; Princivalle, F.; Halenius, U.
Structural changes and valence states in the MgCr2O4-FeCr2O4 solid solution series Sample: Fe2-50
Physics and Chemistry of Minerals, 2004, 31, 633-642
9007317 CIFCr2 Fe0.33 Mg0.67 O4F d -3 m :28.349; 8.349; 8.349
90; 90; 90
581.974Lenaz, D.; Skogby, H.; Princivalle, F.; Halenius, U.
Structural changes and valence states in the MgCr2O4-FeCr2O4 solid solution series Sample: Fe2-40
Physics and Chemistry of Minerals, 2004, 31, 633-642
9007318 CIFCr2 Fe0.37 Mg0.63 O4F d -3 m :28.3465; 8.3465; 8.3465
90; 90; 90
581.451Lenaz, D.; Skogby, H.; Princivalle, F.; Halenius, U.
Structural changes and valence states in the MgCr2O4-FeCr2O4 solid solution series Sample: Fe2-20B
Physics and Chemistry of Minerals, 2004, 31, 633-642
9007319 CIFCr2 Fe0.6 Mg0.4 O4F d -3 m :28.3577; 8.3577; 8.3577
90; 90; 90
583.795Lenaz, D.; Skogby, H.; Princivalle, F.; Halenius, U.
Structural changes and valence states in the MgCr2O4-FeCr2O4 solid solution series Sample: Fe2-45
Physics and Chemistry of Minerals, 2004, 31, 633-642
9007320 CIFCr2 Fe0.65 Mg0.35 O4F d -3 m :28.362; 8.362; 8.362
90; 90; 90
584.696Lenaz, D.; Skogby, H.; Princivalle, F.; Halenius, U.
Structural changes and valence states in the MgCr2O4-FeCr2O4 solid solution series Sample: Fe2-60
Physics and Chemistry of Minerals, 2004, 31, 633-642
9007321 CIFCr2 Fe0.67 Mg0.33 O4F d -3 m :28.3613; 8.3613; 8.3613
90; 90; 90
584.55Lenaz, D.; Skogby, H.; Princivalle, F.; Halenius, U.
Structural changes and valence states in the MgCr2O4-FeCr2O4 solid solution series Sample: Fe2-55
Physics and Chemistry of Minerals, 2004, 31, 633-642
9007322 CIFCr2 Fe0.76 Mg0.24 O4F d -3 m :28.3672; 8.3672; 8.3672
90; 90; 90
585.788Lenaz, D.; Skogby, H.; Princivalle, F.; Halenius, U.
Structural changes and valence states in the MgCr2O4-FeCr2O4 solid solution series Sample: Fe2-70
Physics and Chemistry of Minerals, 2004, 31, 633-642
9007323 CIFCr2 Fe0.87 Mg0.13 O4F d -3 m :28.371; 8.371; 8.371
90; 90; 90
586.586Lenaz, D.; Skogby, H.; Princivalle, F.; Halenius, U.
Structural changes and valence states in the MgCr2O4-FeCr2O4 solid solution series Sample: Fe2-80
Physics and Chemistry of Minerals, 2004, 31, 633-642
9007324 CIFCr2 Fe0.91 Mg0.09 O4F d -3 m :28.3739; 8.3739; 8.3739
90; 90; 90
587.196Lenaz, D.; Skogby, H.; Princivalle, F.; Halenius, U.
Structural changes and valence states in the MgCr2O4-FeCr2O4 solid solution series Sample: Fe2-90
Physics and Chemistry of Minerals, 2004, 31, 633-642
9007325 CIFCr2 Fe O4F d -3 m :28.3765; 8.3765; 8.3765
90; 90; 90
587.743Lenaz, D.; Skogby, H.; Princivalle, F.; Halenius, U.
Structural changes and valence states in the MgCr2O4-FeCr2O4 solid solution series Sample: Fe2-
Physics and Chemistry of Minerals, 2004, 31, 633-642
9007326 CIFAl D4 N O8 Si3C 1 2/m 18.79182; 13.11084; 7.20473
90; 116.097; 90
745.809Mookherjee, M.; Redfern, S. A. T.; Swainson, I.; Harlov, D. E.
Low-temperature behaviour of ammonium ion in buddingtonite [N(D/H)4AlSi3O8] from neutron powder diffraction Sample: T = 11 K
Physics and Chemistry of Minerals, 2004, 31, 643-649
9007327 CIFAl D4 N O8 Si3C 1 2/m 18.81611; 13.09609; 7.20155
90; 116.121; 90
746.546Mookherjee, M.; Redfern, S. A. T.; Swainson, I.; Harlov, D. E.
Low-temperature behaviour of ammonium ion in buddingtonite [N(D/H)4AlSi3O8] from neutron powder diffraction Sample: T = 210 K
Physics and Chemistry of Minerals, 2004, 31, 643-649
9007328 CIFAl D4 N O8 Si3C 1 2/m 18.83157; 13.08541; 7.20024
90; 116.147; 90
746.943Mookherjee, M.; Redfern, S. A. T.; Swainson, I.; Harlov, D. E.
Low-temperature behaviour of ammonium ion in buddingtonite [N(D/H)4AlSi3O8] from neutron powder diffraction Sample: T = 280 K
Physics and Chemistry of Minerals, 2004, 31, 643-649
9007329 CIFFe0.08 Mg9.636 O14 Si2.173I m m a5.6884; 28.9238; 8.2382
90; 90; 90
1355.43Smyth, J. R.; Holl, C. M.; Langenhorst, F.; Laustsen, H. M. S.; Rossman, G. R.; Kleppe, A.; McCammon, C. A.; Kawamoto, T.; van Aken, P. A.
Crystal chemistry of wadsleyite II and water in the Earth's interior Sample: 1 Reported formula: Mg1.71 Fe.18 Al.01 H.33 Si.96 O4
Physics and Chemistry of Minerals, 2005, 31, 691-705
9007330 CIFFe0.338 Mg9.292 O14 Si2.134I m m a5.6896; 29.104; 8.243
90; 90; 90
1364.96Smyth, J. R.; Holl, C. M.; Langenhorst, F.; Laustsen, H. M. S.; Rossman, G. R.; Kleppe, A.; McCammon, C. A.; Kawamoto, T.; van Aken, P. A.
Crystal chemistry of wadsleyite II and water in the Earth's interior Sample: 2 Reported formula: Mg1.60 Fe.22 Al.01 H.44 Si.97 O4
Physics and Chemistry of Minerals, 2005, 31, 691-705
9007331 CIFFe2.26 Ni0.74 PI -49.068; 9.068; 4.461
90; 90; 90
366.822Skala, R.; Cisarova, I.
Crystal structure of meteoritic schreibersites: determination of absolute structure Sample: Acuna
Physics and Chemistry of Minerals, 2005, 31, 721-732
9007332 CIFFe2.07 Ni0.93 PI -49.0575; 9.0575; 4.4622
90; 90; 90
366.071Skala, R.; Cisarova, I.
Crystal structure of meteoritic schreibersites: determination of absolute structure Sample: Carlton
Physics and Chemistry of Minerals, 2005, 31, 721-732
9007333 CIFFe1.88 Ni1.12 PI -49.047; 9.047; 4.46
90; 90; 90
365.043Skala, R.; Cisarova, I.
Crystal structure of meteoritic schreibersites: determination of absolute structure Sample: Hex River Mts cl#1
Physics and Chemistry of Minerals, 2005, 31, 721-732
9007334 CIFFe1.98 Ni1.02 PI -49.051; 9.051; 4.462
90; 90; 90
365.53Skala, R.; Cisarova, I.
Crystal structure of meteoritic schreibersites: determination of absolute structure Sample: Hex River Mts cl#2
Physics and Chemistry of Minerals, 2005, 31, 721-732
9007335 CIFFe1.79 Ni1.21 PI -49.04; 9.04; 4.462
90; 90; 90
364.642Skala, R.; Cisarova, I.
Crystal structure of meteoritic schreibersites: determination of absolute structure Sample: Hex River Mts cl#3
Physics and Chemistry of Minerals, 2005, 31, 721-732
9007336 CIFFe2.1 Ni0.9 PI -49.06; 9.06; 4.4598
90; 90; 90
366.076Skala, R.; Cisarova, I.
Crystal structure of meteoritic schreibersites: determination of absolute structure Sample: Odessa cl#1
Physics and Chemistry of Minerals, 2005, 31, 721-732
9007337 CIFFe1.75 Ni1.25 PI -49.0375; 9.0375; 4.4601
90; 90; 90
364.285Skala, R.; Cisarova, I.
Crystal structure of meteoritic schreibersites: determination of absolute structure Sample: Odessa cl#2
Physics and Chemistry of Minerals, 2005, 31, 721-732
9007338 CIFFe2.43 Ni0.57 PI -49.075; 9.075; 4.464
90; 90; 90
367.636Skala, R.; Cisarova, I.
Crystal structure of meteoritic schreibersites: determination of absolute structure Sample: Sikhote-Alin
Physics and Chemistry of Minerals, 2005, 31, 721-732
9007339 CIFCa O5 Si TiP 1 21/a 17.0599; 8.7156; 6.5597
90; 113.797; 90
369.311Liferovich, R. P.; Mitchell, R. H.
Crystal chemistry of titanite-structured compounds: the CaTi1-xZrxOSiO4 (x <= 0.5) series Sample: x=0
Physics and Chemistry of Minerals, 2005, 32, 40-51
9007340 CIFCa O5 Si Ti0.9 Zr0.1A 1 2/a 17.0788; 8.7378; 6.5754
90; 113.709; 90
372.383Liferovich, R. P.; Mitchell, R. H.
Crystal chemistry of titanite-structured compounds: the CaTi1-xZrxOSiO4 (x <= 0.5) series Sample: x=0.1
Physics and Chemistry of Minerals, 2005, 32, 40-51
9007341 CIFCa O5 Si Ti0.81 Zr0.19A 1 2/a 17.0992; 8.758; 6.5894
90; 113.635; 90
375.329Liferovich, R. P.; Mitchell, R. H.
Crystal chemistry of titanite-structured compounds: the CaTi1-xZrxOSiO4 (x <= 0.5) series Sample: x=0.2
Physics and Chemistry of Minerals, 2005, 32, 40-51
9007342 CIFCa O5 Si Ti0.71 Zr0.29A 1 2/a 17.1252; 8.7826; 6.6057
90; 113.553; 90
378.933Liferovich, R. P.; Mitchell, R. H.
Crystal chemistry of titanite-structured compounds: the CaTi1-xZrxOSiO4 (x <= 0.5) series Sample: x=0.3
Physics and Chemistry of Minerals, 2005, 32, 40-51
9007343 CIFCa O5 Si Ti0.62 Zr0.38A 1 2/a 17.1481; 8.8011; 6.6171
90; 113.477; 90
381.829Liferovich, R. P.; Mitchell, R. H.
Crystal chemistry of titanite-structured compounds: the CaTi1-xZrxOSiO4 (x <= 0.5) series Sample: x=0.4
Physics and Chemistry of Minerals, 2005, 32, 40-51
9007344 CIFCa O5 Si Ti0.51 Zr0.49A 1 2/a 17.1824; 8.8281; 6.6337
90; 113.369; 90
386.119Liferovich, R. P.; Mitchell, R. H.
Crystal chemistry of titanite-structured compounds: the CaTi1-xZrxOSiO4 (x <= 0.5) series Sample: x=0.5
Physics and Chemistry of Minerals, 2005, 32, 40-51
9007345 CIFAl1.94 Fe0.76 Mg0.3 O4F d -3 m :28.1396; 8.1396; 8.1396
90; 90; 90
539.274Lavina, B.; Princivalle, F.; Della Giusta, A.
Controlled time-temperature oxidation reaction in a synthetic Mg-hercynite Spinel structure Sample: Unannealed
Physics and Chemistry of Minerals, 2005, 32, 83-88
9007346 CIFAl1.94 Fe0.77 Mg0.29 O4F d -3 m :28.1388; 8.1388; 8.1388
90; 90; 90
539.115Lavina, B.; Princivalle, F.; Della Giusta, A.
Controlled time-temperature oxidation reaction in a synthetic Mg-hercynite Spinel structure Sample: Annealing temperature and time T = 500 C, t = 24 h
Physics and Chemistry of Minerals, 2005, 32, 83-88
9007347 CIFAl1.94 Fe0.76 Mg0.29 O4F d -3 m :28.1384; 8.1384; 8.1384
90; 90; 90
539.035Lavina, B.; Princivalle, F.; Della Giusta, A.
Controlled time-temperature oxidation reaction in a synthetic Mg-hercynite Spinel structure Sample: Annealing temperature and time T = 500 C, t = 72 h
Physics and Chemistry of Minerals, 2005, 32, 83-88
9007348 CIFAl1.94 Fe0.76 Mg0.3 O4F d -3 m :28.138; 8.138; 8.138
90; 90; 90
538.956Lavina, B.; Princivalle, F.; Della Giusta, A.
Controlled time-temperature oxidation reaction in a synthetic Mg-hercynite Spinel structure Sample: Annealing temperature and time T = 500 C, t = 116 h
Physics and Chemistry of Minerals, 2005, 32, 83-88
9007349 CIFAl1.95 Fe0.76 Mg0.29 O4F d -3 m :28.138; 8.138; 8.138
90; 90; 90
538.956Lavina, B.; Princivalle, F.; Della Giusta, A.
Controlled time-temperature oxidation reaction in a synthetic Mg-hercynite Spinel structure Sample: Annealing temperature and time T = 500 C, t = 212 h
Physics and Chemistry of Minerals, 2005, 32, 83-88
9007350 CIFAl1.93 Fe0.77 Mg0.29 O4F d -3 m :28.1366; 8.1366; 8.1366
90; 90; 90
538.678Lavina, B.; Princivalle, F.; Della Giusta, A.
Controlled time-temperature oxidation reaction in a synthetic Mg-hercynite Spinel structure Sample: Annealing temperature and time T = 600 C, t = 236 h
Physics and Chemistry of Minerals, 2005, 32, 83-88
9007351 CIFAl1.92 Fe0.76 Mg0.3 O4F d -3 m :28.1347; 8.1347; 8.1347
90; 90; 90
538.3Lavina, B.; Princivalle, F.; Della Giusta, A.
Controlled time-temperature oxidation reaction in a synthetic Mg-hercynite Spinel structure Sample: Annealing temperature and time T = 600 C, t = 242 h
Physics and Chemistry of Minerals, 2005, 32, 83-88
9007352 CIFAl1.91 Fe0.77 Mg0.29 O4F d -3 m :28.1329; 8.1329; 8.1329
90; 90; 90
537.943Lavina, B.; Princivalle, F.; Della Giusta, A.
Controlled time-temperature oxidation reaction in a synthetic Mg-hercynite Spinel structure Sample: Annealing temperature and time T = 600 C, t = 260 h
Physics and Chemistry of Minerals, 2005, 32, 83-88
9007353 CIFAl1.92 Fe0.75 Mg0.29 O4F d -3 m :28.1291; 8.1291; 8.1291
90; 90; 90
537.189Lavina, B.; Princivalle, F.; Della Giusta, A.
Controlled time-temperature oxidation reaction in a synthetic Mg-hercynite Spinel structure Sample: Annealing temperature and time T = 600 C, t = 308 h
Physics and Chemistry of Minerals, 2005, 32, 83-88
9007354 CIFAl1.88 Fe0.75 Mg0.29 O4F d -3 m :28.1198; 8.1198; 8.1198
90; 90; 90
535.348Lavina, B.; Princivalle, F.; Della Giusta, A.
Controlled time-temperature oxidation reaction in a synthetic Mg-hercynite Spinel structure Sample: Annealing temperature and time T = 600 C, t = 356 h
Physics and Chemistry of Minerals, 2005, 32, 83-88

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