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Non-Destructive Material Characterization Methods provides readers with a trove of theoretical and practical insight into how to implement different non-destructive testing methods for effective material characterization. The book starts with an introduction to the field before moving right into a discussion of a wide range of techniques that can be immediately implemented. Various imaging and microscopy techniques are first covered, with step-by-step insights on characterization using a polarized microscope, an atomic force microscope, computed tomography, ultrasonography, magnetic resonance imaging, infrared tomography, and more. Each chapter includes case studies, applications, and recent developments. From there, elemental assay and mapping techniques are discussed, including Raman spectroscopy, UV spectroscopy, atomic absorption spectroscopy, neutron activation analysis, and various others. The book concludes with sections covering displacement measurement techniques, large-scale facility techniques, and methods involving multiscale analysis and advanced analysis.
This book summarizes the progress made to functional immobilize G protein-coupled receptors (GPCRs) through site-specific or orientated recognition in both non-covalent and covalent manners. The last decade is the dawn of the ¿post-structural biology¿ era for G protein-coupled receptor research. As an emerging approach for state-of-the-art immobilization, this book discusses efforts to explore the elegance of naturally-occurring biochemical reactions by using their high specificity and robust reactivity in the complex system, such as site-specific conjugation by covalent recognition between enzymes and their substrates. With the perspective of protein-drug interactions, this book also reviews the applications of protein immobilization, with an emphasis on G protein-coupled receptors, in drug discovery and protein-ligand interaction analysis. In addition, the merits, opportunities and disadvantages are analyzed for different immobilization methods, and a perspective for future directions is presented. Given its scope, this book appeals to a broad readership, particularly researchers engaged in the field of analytical chemistry, bioconjugate chemistry, and chemical biology, and other related field, as well as teachers of relevant majors in colleges and universities.
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