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Modeling Nanoscale Imaging in Electron Microscopy presents the recent advances that have been made using mathematical methods to resolve problems in microscopy. With improvements in hardware-based aberration software significantly expanding the nanoscale imaging capabilities of scanning transmission electron microscopes (STEM), these mathematical models can replace some labor intensive procedures used to operate and maintain STEMs. This book, the first in its field since 1998, will also cover such relevant concepts as superresolution techniques, special denoising methods, application of mathematical/statistical learning theory, and compressed sensing.
Integrated circuits -- Very large scale integration -- Design and construction. --- Metal oxide semiconductors, Complementary -- Design and construction. --- Nanoelectronics. --- Scanning transmission electron microscopy. --- Chemical & Materials Engineering --- Biology --- Health & Biological Sciences --- Engineering & Applied Sciences --- Microscopy --- Materials Science --- Electron microscopy. --- Nanoscale electronics --- Nanoscale molecular electronics --- Materials science. --- Analytical chemistry. --- Chemistry, Physical and theoretical. --- Physical measurements. --- Measurement. --- Nanotechnology. --- Materials Science. --- Characterization and Evaluation of Materials. --- Analytical Chemistry. --- Theoretical and Computational Chemistry. --- Measurement Science and Instrumentation. --- Molecular technology --- Nanoscale technology --- High technology --- Measuring --- Mensuration --- Mathematics --- Technology --- Metrology --- Physical measurements --- Measurements, Physical --- Mathematical physics --- Measurement --- Chemistry, Theoretical --- Physical chemistry --- Theoretical chemistry --- Chemistry --- Analysis, Chemical --- Analytical chemistry --- Chemical analysis --- Metallurgical analysis --- Mineralogy, Determinative --- Material science --- Physical sciences --- Electronics --- Nanotechnology --- Surfaces (Physics). --- Analytical biochemistry. --- Chemistry. --- Physics --- Surface chemistry --- Surfaces (Technology) --- Analytic biochemistry --- Biochemistry --- Chemistry, Analytic --- Bioanalytic chemistry --- Bioanalytical chemistry --- Measurement . --- Analytic chemistry
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This comprehensive textbook provides a modern, self-contained treatment for upper undergraduate and graduate level students. It emphasizes the links between structure, defects, bonding, and properties throughout, and provides an integrated treatment of a wide range of materials, including crystalline, amorphous, organic and nano- materials. Boxes on synthesis methods, characterization tools, and technological applications distil specific examples and support student understanding of materials and their design. The first six chapters cover the fundamentals of extended solids, while later chapters explore a specific property or class of material, building a coherent framework for students to master core concepts with confidence, and for instructors to easily tailor the coverage to fit their own single semester course. With mathematical details given only where they strengthen understanding, 400 original figures and over 330 problems for hands-on learning, this accessible textbook is ideal for courses in chemistry and materials science.
Solid state chemistry --- Materials science --- Chemistry, Solid state --- Chemistry, Physical and theoretical --- Material science --- Physical sciences
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