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During the last thirty years profound developments in expe-
rimental techniques to measure high temperature and pressu- res and
thermodynamic properties of minerals have occurred. This technical
development has been matched by an increased sophistication in
applying theoretical methods to obtain new data or improve the
quality of existing data. Using these newtechniques, Assessed
Thermodynamic Data on Oxides and Silicates represents the
successful attempt of the authors to develop an internally
systematized data base which satis- fies the constraints of
calorimetric measurements, phase equilibrium data, measured
thermophysical properties of a phase, and heat capacities and
entropies estimated from lat- tice vibrational models.
High pressure mineral physics is a field that has shaped our
understanding of deep planetary interiors and revealed new material
phenomena occurring at extreme conditions. Comprised of sixteen
chapters written by well-established experts, this book covers
recent advances in static and dynamic compression techniques and
enhanced diagnostic capabilities, including synchrotron X-ray and
neutron diffraction, spectroscopic measurements, in situ X-ray
diffraction under dynamic loading, and multigrain crystallography
at megabar pressures. Applications range from measuring equations
of state, elasticity, and deformation of materials at high
pressure, to high pressure synthesis, thermochemistry of high
pressure phases, and new molecular compounds and superconductivity
under extreme conditions. This book also introduces experimental
geochemistry in the laser-heated diamond-anvil cell enabled by the
focused ion beam technique for sample recovery and quantitative
chemical analysis at submicron scale. Each chapter ends with an
insightful perspective of future directions, making it an
invaluable source for graduate students and researchers.
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