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Ceramic metals. --- Transition metal carbides. --- Transition metal nitrides. --- Phase rule and equilibrium. --- Nitrides --- Transition metal compounds --- Carbides --- Cermets --- Metal ceramics --- Metallic ceramics --- Ceramic materials --- Heat resistant materials --- Powder metallurgy --- Chemistry, Physical and theoretical --- Critical phenomena (Physics) --- Equilibrium --- Chemical equilibrium --- Chemical systems --- Critical point
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The Second Volume of “Equilibrium between Phases of Matter”, when compared with the First Volume, by H.A.J. Oonk and M.T. Calvet, published in 2008, amounts to an extension of subjects, and a deepening of understanding. In the first three sections of the text an extension is given of the theory on isobaric binary systems. The fourth section gives an account of the thermodynamic analyses of four isobaric binary key systems, highlighting the power of empirical, (exo)thermodynamic correlations. The fifth section is devoted to the thermodynamic description of ternary systems. The last three sections concentrate on the properties of materials, and the phase behaviour of systems under the conditions of high temperature and high pressure – conditions that prevail in the interior of the Earth. A new equation of state is the subject of the sixth section. In the seventh section a move is made statistical thermodynamics and vibrational models; the description of the systems has changed from mathematical to physical. The last section is on the system MgO – SiO2, looked upon from a geophysical point of view. Throughout the work high priority is given to the thermodynamic assessment of experimental data; numerous end-of-section exercises and their solutions are included. Along with the First Volume, the work is useful for materials scientists and geophysicists as a reference text. Audience Volume II is a lecture book for postgraduate students in chemistry, chemical engineering, geology and metallurgy. It is highly useful as a recommended text for teachers and researchers in all fields of materials science.
Geophysics. --- Phase rule and equilibrium. --- Physics --- Chemistry --- Physical Sciences & Mathematics --- Physical & Theoretical Chemistry --- Cosmic Physics --- Geological physics --- Terrestrial physics --- Earth sciences. --- Physical chemistry. --- Geology. --- Thermodynamics. --- Materials science. --- Earth Sciences. --- Geophysics/Geodesy. --- Materials Science, general. --- Physical Chemistry. --- Earth sciences --- Chemistry, Physical and theoretical --- Critical phenomena (Physics) --- Equilibrium --- Chemical equilibrium --- Chemical systems --- Critical point --- Physical geography. --- Materials. --- Chemistry, Physical organic. --- Geognosy --- Geoscience --- Natural history --- Chemistry, Physical organic --- Chemistry, Organic --- Engineering --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- Geography --- Dynamics --- Mechanics --- Heat --- Heat-engines --- Quantum theory --- Materials --- Material science --- Physical sciences --- Chemistry, Theoretical --- Physical chemistry --- Theoretical chemistry
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This book deals with the new class of materials unconventional superconductors, cuprate compounds, borocarbides, magnesium-diboride and oxypnictides. It gives a systematical review of physical properties of novel superconductors. There is an increasing number of fundamental properties of these compounds which are relevant to future applications, opening new possibilities. The theoretical explanation is presented as generalization of Ginzburg-Landau phenomenology and microscopical Eliashberg theory for multiband and anisotropic superconductors. Various applications of this approachs and time dependent version of two-band Ginzburg-Landau theory are considered. An important topic are fluctuations in two-band and anisotropic superconductors. Significant new results on current problems are presented to stimulate further research. Numerous illustrations, diagrams and tables make this book useful as a reference for students and researchers.
Critical phenomena (Physics). --- Fluctuations (Physics). --- Phase transformations (Statistical physics). --- Renormalization group. --- Unconventional Superconductors. --- Superconductors --- Physics --- Electrical & Computer Engineering --- Physical Sciences & Mathematics --- Engineering & Applied Sciences --- Thermodynamics --- Electrical Engineering --- Electricity & Magnetism --- Superconductors. --- Anisotropy. --- Anisotropic crystals --- Superconducting materials --- Superconductive devices --- Materials. --- Low Temperature Physics. --- Condensed Matter Physics. --- Structural Materials. --- Crystallography --- Matter --- Cryoelectronics --- Electronics --- Solid state electronics --- Properties --- Materials --- Engineering --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- Low temperature physics. --- Low temperatures. --- Condensed matter. --- Structural materials. --- Architectural materials --- Architecture --- Building --- Building supplies --- Buildings --- Construction materials --- Structural materials --- Condensed materials --- Condensed media --- Condensed phase --- Materials, Condensed --- Media, Condensed --- Phase, Condensed --- Liquids --- Solids --- Cryogenics --- Low temperature physics --- Temperatures, Low --- Temperature --- Cold
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