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Materials Chemistry at High Temperatures: Volume 2: Processing and Performance: Materials Chemistry at High Temperatures, cartea 2

Autor John W. Hastie
en Limba Engleză Hardback – 6 noi 1990
The role of chemistry in materials processing and performance, at high temperatures, is a key area in today's technology. High temperature chemistry-the combination of inorganic chemistry with high temperatures-has undergone dramatic growth within the past 50 years.

The papers in Materials Chemistry at High Temperatures highlight, in two outstanding volumes, the latest information and techniques in this fast-paced field.

Essential reading for anyone involved in this innovative technology!
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Specificații

ISBN-13: 9780896031876
ISBN-10: 089603187X
Pagini: 522
Ilustrații: XVII, 522 p.
Dimensiuni: 178 x 254 x 30 mm
Greutate: 1.17 kg
Ediția:1991
Editura: Humana Press Inc.
Colecția Humana
Seria Materials Chemistry at High Temperatures

Locul publicării:Totowa, NJ, United States

Public țintă

Research

Cuprins

One: Advances In Measurement Techniques.- Spectroscopic Probes.- Optical Second Hannonic Generation as a Probe of Properties and Processes at Surfaces and Interfaces.- Investigations of Materials at High Temperatures Using Raman Spectroscopy.- Raman Characterization of High Temperature Materials Using an Imaging Detector.- Spontaneous Raman Spectroscopy in Flames Containing High Concentrations of Silica Particles.- Composition Determination at High Temperatures by Laser Produced Plasma Analysis.- EXAFS, Matrix Isolation, and High Temperature Chemistry.- Diffractometry.- High Temperature X-Ray Diffraction and Landau Theory Investigations of Thermal Symmetry-Breaking Transitions: The W Point of Fm3m and the Structure of NbN1?x.- High Temperature X-Ray Diffractometry of Ti-Al Alloys.- High Temperature Neutron Diffraction Studies of YBa2?xSrxCU3O7??.- Atom Probe Field-Ion Microscopy Applications.- Physicochemical Methods.- Emissivities and Optical Constants of Electromagnetically Levitated Liquid Metals as Functions of Temperature and Wavelength.- Ion Equilibria: A New Technique for Measurement of Low O2 and Alkali Partial Pressures.- Thermal Desorption Kinetics of Water from Glass Powders Studied by Knudsen Effusion Mass Spectroscopy.- Twin-Chamber Knudsen Effusion Cell Mass Spectrometer for Alloy Thermodynamic Studies: II.- Two: Thermochemistry and Models.- Databases and Phase Equilibria Models.- Reference Books and Data Banks on the Thermodynamic Properties of Inorganic Substances—Plenary.- Thermodynamic Properties of the Alkaline Earth Hydroxides: A JANAF Case History.- Thermodynamic Modeling of Solution Phases and Phase Diagram Calculations—Plenary.- F*A*C*T Thermochemical Database for Calculations in Materials Chemistry at High Temperatures.- Application ofMTDATA to the Modeling of Multicomponent Equilibria.- Thermochemical Applications of Thermo-Calc.- Thermodynamic Modeling of High Temperature Melts and Phase Diagram Calculations.- A Stimulation Model to Predict Slag Composition in a Coal-Fired Boiler.- A Predictive Thermodynamic Model for Complex High Temperature Solution Phases XI.- Structural and Thermodynamic Evidence for the Survival of Zintl Ions Through the Melting Process: The Alkali-Lead Alloys.- Thermodynamic Properties of NiAs-Type Co1±xSb and Ni1±xSb.- The High Temperature Vaporization and Thermodynamics of the Titanium Oxides (XVIII): Temperature Coefficients and Oxygen Potentials over Ti10O19.- Phase Equilibria—Experimental and Applications.- Thermodynamics, Kinetics, and Interface Morphology of Reactions Between Metals and GaAs.- Recent Studies on Thermochemistry and Phase Equilibria in Alkali Metal Systems.- Basic Data Determinations.- Knudsen Effusion Mass Spectrometric Determination of Metal Hydroxide Stabilities.- High Temperature Mass Spectrometric Studies of the Thermodynamic Properties of Glass-Forming Systems.- Comparison of Thermodynamic Data Obtained by Knudsen Vaporization Magnetic and Quadrupole Mass Spectrometric Techniques.- Mechanistic Aspects of Metal Sulfate Decomposition Processes.- Author Index.