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Select All / None 8 Results
Year Authors Title Struct. Formula sgr Mineral
2001 Henderson, C.M.B.; Redfern, S.A.T.; Smith, R.I.; Knight, K.S.; Charnock, J.M.; Composition and temperature dependence of cation ordering in Ni-Mg olivine solid solutions: a time-of-flight neutron powder diffraction and EXAFS study (Ni0.761 Mg0.239) (Ni0.239 Mg0.761) (Si O4) PBNM Unnamed_Olivine
2001 Henderson, C.M.B.; Redfern, S.A.T.; Smith, R.I.; Knight, K.S.; Charnock, J.M.; Composition and temperature dependence of cation ordering in Ni-Mg olivine solid solutions: a time-of-flight neutron powder diffraction and EXAFS study (Ni0.75 Mg0.25) (Ni0.25 Mg0.75) (Si O4) PBNM Unnamed_Olivine
2001 Henderson, C.M.B.; Redfern, S.A.T.; Smith, R.I.; Knight, K.S.; Charnock, J.M.; Composition and temperature dependence of cation ordering in Ni-Mg olivine solid solutions: a time-of-flight neutron powder diffraction and EXAFS study (Ni0.72 Mg0.28) (Ni0.28 Mg0.72) (Si O4) PBNM Unnamed_Olivine
2001 Henderson, C.M.B.; Redfern, S.A.T.; Smith, R.I.; Knight, K.S.; Charnock, J.M.; Composition and temperature dependence of cation ordering in Ni-Mg olivine solid solutions: a time-of-flight neutron powder diffraction and EXAFS study (Ni0.336 Mg0.664) (Ni0.064 Mg0.936) (Si O4) PBNM Unnamed_Olivine
2000 Harrison, R.J.; Redfern, S.A.T.; Smith, R.I.; In-situ study of the R3- to R3-c phase transition in the ilmenite -hematite solid solution using time-of-flight neutron powder diffraction (Fe Ti O3)0.8 (Fe2 O3)0.2 R3-H Unnamed_Corundum
2000 Harrison, R.J.; Redfern, S.A.T.; Smith, R.I.; In-situ study of the R3- to R3-c phase transition in the ilmenite -hematite solid solution using time-of-flight neutron powder diffraction (Fe Ti O3)0.8 (Fe2 O3)0.2 R3-H Unnamed_Corundum
2000 Harrison, R.J.; Redfern, S.A.T.; Smith, R.I.; In-situ study of the R3- to R3-c phase transition in the ilmenite -hematite solid solution using time-of-flight neutron powder diffraction (Fe Ti O3)0.9 (Fe2 O3)0.1 R3-H Unnamed_Corundum
1996 Smith, R.I.; Skakle, J.M.S.; Mather, G.C.; Morales, M.; West, A.R.; The crystal structures of Li(+) conducting phases Li0.5-3x RE0.5+x Ti O3 : RE = Pr, Nd, x=0.05, from powder neutron diffraction data Li0.38 Pr0.54 Ti O3 PNMA
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