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Modern plating technology is highly advanced, and has developed to cover a wide range of applications. In addition to the traditional use for surface finishing, plating technology can now offer novel processes to fabricate high-performance films or fine microstructural bodies in the microelectronics industry. This rapid progress reflects the potential for the electroplating plating method to become one of today's leading-edge technologies. This book will introduce a concept of a Microstructure Control Theory for plated films, describe and discuss various experimental results that support the theory, and finally, present a collection of experimental data on 53 types of plated metal/alloy systems with a special emphasis on their microstructure. The unique feature of this database is that most of the plating baths are simple and contain no additives. In addition, amorphous materials were used as substrates to avoid the effects of substrate structure, and single-crystal substrates were chosen to study the epitaxial growth phenomenon. * Contains a comprehensive database for the microstructure of plated films * The book is very logically structured with a very detailed contents which makes finding information easy * The book gives a very good overview of the research and development in this field and each chapter is fully referenced.
Mechanical properties of solids --- Materials sciences --- Nanostructured materials --- Plating
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Solid state physics --- Materials --- Solids --- Matériaux --- Solides --- Matériaux --- Electric conductivity. --- Magnetic properties. --- Mechanical properties --- Thermal property
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Optics. Quantum optics --- optica --- golven (fysica) --- Mechanical properties of solids --- Optics. --- 535 --- Optics --- Physics --- Light --- 535 Optics
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Mechanical properties of solids --- Computer. Automation --- Cristallographie --- Kristallografie --- Materials --- -Engineering --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- Effect of radiation on --- -Data processing --- -Effect of radiation on --- Engineering --- Effect of radiation on&delete& --- Data processing
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This book discusses how the physical and chemical properties of disordered systems such as liquids, glasses, alloys, amorphous semiconductors, polymer solutions and magnetic materials can be explained by theories based on a variety of mathematical models, including random assemblies of hard spheres, tetrahedrally-bonded networks and lattices of 'spins'. The text describes these models and the various mathematical theories by which the observable properties are derived. Techniques and concepts such as the mean field and coherent approximations, graphical summation, percolation, scaling and the renormalisation group are explained and applied. This book will be of value to anyone with an interest in theoretical and experimental physics.
Mechanical properties of solids --- Order-disorder models --- Modèles ordre-désordre --- 536 --- Disorder models --- Models, Order-disorder --- Matter --- Heat. Thermodynamics --- Order-disorder models. --- 536 Heat. Thermodynamics --- Modèles ordre-désordre --- Ordre et désordre (physique)
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Order-disorder models. --- Matter --- Constitution. --- Order-disorder models --- Modèles ordre-désordre --- Disorder models --- Models, Order-disorder --- -Constitution --- Modèles ordre-désordre --- Mechanical properties of solids --- Constitution of matter --- Corpuscular theory of matter --- Constitution --- Matière --- Structure --- Matter - Constitution.
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Mechanical properties of solids --- Nonmetallic materials --- Point defects --- Crystals --- Matériaux non métalliques --- Cristaux --- Defects --- Défauts --- 538.91 --- -Nonmetallic materials --- -Point defects --- Defects, Point --- Dislocations in crystals --- Impurity centers --- Materials --- Crystallography --- Powders --- Solids --- Structures, including transitions --- 538.91 Structures, including transitions --- Matériaux non métalliques --- Défauts --- Lattice defects --- Twinning (Crystallography)
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Mechanical properties of solids --- Stopping power (Nuclear physics) --- Hydrogen --- Atomic stopping power --- Average ionization potential --- Kinetic energy of particles (Nuclear physics) --- Stopping cross section --- Collisions (Nuclear physics) --- Ionization --- Matter --- Nuclear reactions --- Particles (Nuclear physics) --- Radioactivity --- Linear energy transfer --- Particle range (Nuclear physics) --- Nonmetals --- Properties --- Measurement --- Hydrogen. --- Stopping power (Nuclear physics).
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Mechanical properties of solids --- Crystallography. --- 538.91 --- 538.93 --- Crystallographies --- Structures, including transitions --- Transport processes (except in quantum liquids and solids) --- 538.93 Transport processes (except in quantum liquids and solids) --- 538.91 Structures, including transitions --- 538.9 --- 538.9 Physics of condensed matter (in liquid state and solid state) --- Physics of condensed matter (in liquid state and solid state) --- Experimental solid state physics --- Artificial intelligence. Robotics. Simulation. Graphics --- Electronics and optics of solids --- Crystallography
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