Structural and Magnetic Phase Transitions in MineralsThis volume in Advances in Physical Geochemistry presents the latest synthesis of theory and experimental data pertaining to structural and magnetic phase transitions in a variety of geochemically important minerals. The book is the first to cover the impact of this rapidly progressing area of solid state physics in earth sciences and reflects its growing significance for mineralogy and petrology. |
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Page vi
Motivations for embarking on a study of silicate magnetism are principally to
document physical properties of an important group of earth materials, and then
to build up knowledge of their magnetic properties at low i_~é -' I _ Preface vii ...
Motivations for embarking on a study of silicate magnetism are principally to
document physical properties of an important group of earth materials, and then
to build up knowledge of their magnetic properties at low i_~é -' I _ Preface vii ...
Page 34
Most physical properties of the inc phase of quartz appear to be explained , at
least qualitatively , by this model ... the high quality of quartz crystals allows
accurate measurements of the large variations of most physical properties in this
phase .
Most physical properties of the inc phase of quartz appear to be explained , at
least qualitatively , by this model ... the high quality of quartz crystals allows
accurate measurements of the large variations of most physical properties in this
phase .
Page 243
... 162-181, 185-205 metamagnetic and spin flip, 164 ordering, 164 spin freezing,
164 spin reorientation, 164 polytypic, 218 structural, in feldspar, 2 Physical
properties of feldspar, 1, 3-14 of inc phase, 29-32 of quartz, 21-23 Pippard's
relation, ...
... 162-181, 185-205 metamagnetic and spin flip, 164 ordering, 164 spin freezing,
164 spin reorientation, 164 polytypic, 218 structural, in feldspar, 2 Physical
properties of feldspar, 1, 3-14 of inc phase, 29-32 of quartz, 21-23 Pippard's
relation, ...
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Contents
Incommensurate Phase Transitions in Quartz and Berlinite | 17 |
Phase Separation in Quadrilateral Pyroxenes and Olivines | 39 |
Multicritical Phase Relations in Minerals | 60 |
Copyright | |
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Other editions - View all
Structural and Magnetic Phase Transitions in Minerals S. Ghose,J.M.D. Coey,E. Salje Limited preview - 2012 |
Structural and Magnetic Phase Transitions in Minerals S. Ghose,J.M.D. Coey,E. Salje Snippet view - 1988 |
Common terms and phrases
antiferromagnetic appears applied approximation atoms axis Ballet behavior bond calculated cation Chem chemical cluster Coey components composition constant corresponding coupling critical crystal decreases density dependence described determined diffraction direction disordered Dolino effect electron energy equilibrium estimated et al exchange experimental experiments Fe2+ Fe3+ ferromagnetic field function Ghose give given heat ilvaite inc phase increases indicate interactions ions iron lattice layers lower mantle magnetic magnetic order magnetic structure materials measurements Mineral mode Mössbauer natural neutron observed obtained occur octahedral olivines order parameter pairs perovskite phase diagrams phase transition Phys physical pigeonite polytypes positions possible potential predicted pressure properties pyroxenes quartz range respectively Salje sample shown shows silicates solid solution space group spin stability structure symmetry Table temperature theory thermodynamic tion transformation unit variation