Principles of Materials Characterization and Metrology

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Principles of Materials Characterization and Metrology

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  • 製本 Hardcover:ハードカバー版/ページ数 880 p.
  • 言語 ENG
  • 商品コード 9780198830252
  • DDC分類 620.112

Full Description

Characterization enables a microscopic understanding of the fundamental properties of materials (Science) to predict their macroscopic behaviour (Engineering). With this focus, Principles of Materials Characterization and Metrology presents a comprehensive discussion of the principles of materials characterization and metrology. Characterization techniques are introduced through elementary concepts of bonding, electronic structure of molecules and solids, and the arrangement of atoms in crystals. Then, the range of electrons, photons, ions, neutrons and scanning probes, used in characterization, including their generation and related beam-solid interactions that determine or limit their use, is presented. This is followed by ion-scattering methods, optics, optical diffraction, microscopy, and ellipsometry. Generalization of Fraunhofer diffraction to scattering by a three-dimensional arrangement of atoms in crystals leads to X-ray, electron, and neutron diffraction methods, both from surfaces and the bulk. Discussion of transmission and analytical electron microscopy, including recent developments, is followed by chapters on scanning electron microscopy and scanning probe microscopies. The book concludes with elaborate tables to provide a convenient and easily accessible way of summarizing the key points, features, and inter-relatedness of the different spectroscopy, diffraction, and imaging techniques presented throughout.

Principles of Materials Characterization and Metrology uniquely combines a discussion of the physical principles and practical application of these characterization techniques to explain and illustrate the fundamental properties of a wide range of materials in a tool-based approach. Based on forty years of teaching and research, this book incorporates worked examples, to test the reader's knowledge with extensive questions and exercises.

Contents

1: Introduction to materials characterization, analysis, and metrology
2: Atomic structure and spectra
3: Bonding and spectra of molecules and solids
4: Crystallography and diffraction
5: Probes: sources and their interactions with matter
6: Optics, optical methods, and microscopy
7: X-ray diffraction
8: Diffraction of electrons and neutrons
9: Transmission and analytical electron microscopy
10: Scanning electron microscopy
11: Scanning probe microscopy
12: Summary tables

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