
Electron backscatter diffraction is a very powerful and relatively new materials characterization technique aimed at the determination of crystallographic texture, grain boundary character distributions, lattice strain, phase identification, and much more. The purpose of this book is to provide the fundamental basis for electron backscatter diffraction in materials science, the current state of both hardware and software, and illustrative examples of the applications of electron backscatter diffraction to a wide-range of materials including undeformed and deformed metals and alloys, ceramics, and superconductors. The text has been substantially revised from the first edition, and the authors have kept the format as close as possible to the first edition text. The new developments covered in this book include a more comphrensive coverage of the fundamentals not covered in the first edition or other books in the field, the advances in hardware and software since the first edition was published, and current examples of application of electron backscatter diffraction to solve challenging problems in materials science and condensed-matter physics.
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Vg condition, almost new!
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This new edition of Volume 2 of Leo Mandelkern's self-contained work is an up-to-date, authoritative account of the kinetics and mechanisms of polymer crystallization. Progressing from the equilibrium concepts presented in volume 1, it provides a comprehensive treatment of the surrounding theories and experimental results from simple to complex polymer systems. The volume will be an invaluable reference work for all chemists, physicists and materials scientists working in the area of polymer crystallization.
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Structure and Dynamics covers the wide range of general principles that govern the behavior of atoms in solids and applies them to the full range of material types known to man. It focuses on the structure of materials at an atomic level and how the atoms vibrate inside solids, bringing these topics together to explore how the atomic principles determine the behavior and properties of materials. Topics discussed include the factors and reciprocal space, the types of atomic bonding, the formalism of atomic vibrations and the theories of phase transitions. The tools of diffraction and spectroscopy in both laboratory and large scale facilities are also covered.
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Introduction to Dislocations was first published in 1965 in a series aimed at undergraduate and postgraduate students in metallurgy and materials science and related disciplines. At the time, the subject was maturing and it was expected that 'dislocation concepts' would remain a core discipline for a very long time. As expected, the book has been, and remains, an important undergraduate text all over the world. A wider range of materials has emerged since 1965, most notably in the field of electronics and micro-engineering. The principles of dislocation theory still apply but some of the detail requires further treatment.This fourth edition provides an essential basis for an understanding of many of the physical and mechanical properties of crystalline solids. This new edition has been extensively revised and updated to reflect developments in the understanding of the subject, whilst retaining the clarity and comprehensibility of the previous editions.
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.Hardback,Ex-Library,with usual stamps markings, ,in good all-round condition, ,160pages.
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An exploration of new and emerging techniques, processes and applications in the behaviour, crystallization, and polymorphic transformations of fats and oils. It presents research and information on advanced analytical tools, computer modelling, molecular structures, mixing behaviour, and interactions with seeding materials and surfactants. The contributors spotlight developments in the food, cosmetic and pharmaceutical industries, highlighting modern discoveries in polymorphic forms, self-assembled structures, and speciality fats and oils, emphasizing health, balanced nutrition, and functionality.
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This book represents a detailed and systematic account of the basic principles, developments and applications of the theory of nucleation.The formation of new phases begins with the process of nucleation and is, therefore, a widely spread phenomenon in both nature and technology. Condensation and evaporation, crystal growth, electrodeposition, melt crystallization, growth of thin films for microelectronics, volcano eruption and formation of particulate matter in space are only a few of the processes in which nucleation plays a prominent role. The book has four parts, which are devoted to the thermodynamics of nucleation, the kinetics of nucleation, the effect of various factors on nucleation and the application of the theory to other processes, which involve nucleation. The first two parts describe in detail the two basic approaches in nucleation theory - the thermodynamic and the kinetic ones. They contain derivations of the basic and most important formulae of the theory and discuss their limitations and possibilities for improvement. The third part deals with some of the factors that can affect nucleation and is a natural continuation of the first two chapters. The last part is devoted to the application of the theory to processes of practical importance such as melt crystallization and polymorphic transformation, crystal growth and growth of thin solid films, size distribution of droplets and crystallites in condensation and crystallization. The book is not just an account of the status quo in nucleation theory - throughout the book there are a number of new results as well as extensions and generalisations of existing ones.
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