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POLYMERS --- SURFACES (TECHNOLOGY) --- SURFACES --- ANALYSIS
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Lasers --- Surfaces (Technology) --- Materials --- Laser photochemistry
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Tribologie (technologie) --- Tribology. --- Surfaces (technologie) --- Surfaces (Technology)
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This book concisely and uniquely encompasses the principles of corrosion and wear as manifested in industrial failures and the solutions offered by surface engineering.
Corrosion and anti-corrosives. --- Materials --- Surfaces (Technology) --- Deterioration.
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Interfaces (Physical sciences) --- Surface chemistry --- Surfaces (Technology) --- Analysis
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In this book the theories, techniques and applications of reflection electron microscopy (REM), reflection high-energy electron diffraction (RHEED) and reflection electron energy-loss spectroscopy (REELS) are comprehensively reviewed for the first time. The book is divided into three parts: diffraction, imaging and spectroscopy. The text is written to combine basic techniques with special applications, theories with experiments, and the basic physics with materials science, so that a full picture of RHEED and REM emerges. An entirely self-contained study, the book contains much invaluable reference material, including FORTRAN source codes for calculating crystal structures data and electron energy loss spectra in different scattering geometries. This and many other features make the book an important and timely addition to the materials science literature.
Materials --- Surfaces (Technology) --- Reflection electron microscopy. --- Microscopy. --- Analysis.
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Experimental solid state physics --- Surfaces (Technology) --- Atomic force microscopy --- Scanning tunneling microscopy --- Analysis --- #WSCH:MODS --- Surfaces (Technology) - Analysis --- Surface analysis
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Heat transfer between two bodies in thermal contact is of fundamental importance in a wide variety of applications ranging from industrial and domestic processes to fundamental biology and chemistry. This book covers both the theoretical and practical aspects of thermal contact conductance. The theoretical discussion covers heat transfer through spots, joints, and surfaces, as well as the role of interstitial materials (both planned and inadvertent). The practical discussion includes formulae and data for use in designing heat-transfer equipment for a variety of joints, including special geometries and configurations.
Heat --- Surfaces (Technology) --- Materials --- Surface phenomena --- Friction --- Surfaces (Physics) --- Tribology --- Conduction of heat --- Conduction --- Surfaces --- Conduction.
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Thin films. --- Thin films --- Computer simulation --- Solid state electronics --- Solids --- Surfaces (Technology) --- Coatings --- Thick films --- Films, Thin --- Solid film
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