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CHF311.20
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The book contains a carefully selected works of fourteen internationally recognized scientists involving the advances of the physics and chemistry of the glassy and amorphous states.
Provides a summary of non-equilibrium glassy and amorphous structures and their macro- and microscopic thermal properties.
The book contains a carefully selected works of fourteen internationally recognized scientists involving the advances of the physics and chemistry of the glassy and amorphous states.
Treats different aspects of thermal properties of glassy and amorphous structures in a complex and comprehensive way A collection of works written by a range of internationally recognized scientists A monograph written both for students and researchers Includes supplementary material: sn.pub/extras
Auteur
Prof. Jaroslav esták, MEng., PhD., DSc.
Institute of Physics, Academy of Sciences of the Czech Republic - specialised in thermodynamics (kinetics) and material science and engineering (particularly applied to variety of inorganic glasses), 287 papers in impact journals, over 2500 SCI citation responses, 15 books and book chapters, received honorary degree of Doctor Honoris Causa of the University of Pardubice (January 2010).
Dr. Jiri J. Mares, PhD Institute of Physics, Academy of Sciences, specialised in thermal physics and non-equilibrium phenomena, 123 papers in impact journals, over 230 citation responses, 3 books and book chapters. Dr. Pavel Hubik, PhD Senior Scietist in Solid State Physics Institute of Physics of Academy of Sciences of CR.
Texte du rabat
Glassy, Amorphous and Nano-crystalline Material: Thermal Physics, Analysis, Structure and Properties includes twenty-one chapter contributions from an international array of distinguished academics based in Asia, Australia, Eastern and Western Europe, Russia, and the USA. The book provides a coherent and authoritative overview of cutting-edge themes involving the thermal analysis, applied solid-state physics and the micro-crystallinity of selected materials and their macro- and microscopic thermal properties.
Selected chapters featured in the book include: Essential attributes of glassiness regarding the nature of non-crystalline solids; Aspects of vitrification, amorphization, disordering and the extent of nano-crystallinity; The basic role of thermal analysis in polymer physics; Classical and quantum diffusion and their application to the self-organized oscillatory reactions; Specificity of low temperature measurements applied to nano-crystalline diamante; Thermophysical properties of natural glasses at the extremes of the thermal history profile; Phenomenological meaning of temperature as background for the history and development of thermal analysis and calorimetry.
Advanced undergraduates, postgraduates and researchers working in the field of thermal analysis and calorimetry will find this contributed volume invaluable.
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