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X-Ray Scattering from Semiconductors and Other Materials

This third edition has been extended considerably to incorporate more information on instrument influences on the interpretation of X-ray;

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X-Ray Scattering

of an X-ray beam hitting a sample as a function of incident and scattered angle, polarization, and wavelength or energy. In this book, the;

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X-ray Scattering From Semiconductors (2nd Edition)

volume of information, since X-ray scattering can assess the deviation from perfection.The description is intentionally conceptual so that the;

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Diffraction from Materials

physical properties of x-rays, electrons, and neurons. This book explores the crystalline nature of metals, semiconductors, and insulators.

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Basic Concepts of X-Ray Diffraction

make X-ray diffraction an unsurpassed method for studying the structure of materials. Both dynamical and kinematic X-ray diffraction;

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X-Ray Diffraction

High-resolution x-ray diffraction and scattering is a key tool for structure analysis not only in bulk materials but also at surfaces and;

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Small-Angle Scattering - Theory, Instrumentation, Data and Applications

other researchers using X-ray and neutron scattering to investigate soft materials, other nanostructured materials and biomolecules such as;

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An Introduction to X-Ray Physics, Optics, and Applications

In this book, Carolyn A. MacDonald provides a comprehensive introduction to the physics of a wide range of x-ray applications, optics, and;

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X-Ray Diffraction

results to various atomic structures including amorphous bodies, crystals, and imperfect crystals, whereby the elementary laws of x-ray;

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Semiconductor X-Ray Detectors

detectors. It describes many of the facets of x-ray detection and measurement using semiconductors, from manufacture to implementation. The initial;

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Semiconductor X-Ray Detectors

detectors. It describes many of the facets of x-ray detection and measurement using semiconductors, from manufacture to implementation. The initial;

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X-Rays in Nanoscience: Spectroscopy, Spectromicroscopy, and Scattering Techniques

An up-to-date overview of the different x-ray based methods in the hot fields of nanoscience and nanotechnology, including methods for;

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X-Rays and Materials

study of the interaction of X-rays and materials to a particular scientific field, or specific methodological approaches. The overall aim of the;

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Theory of Inelastic Scattering and Absorption of X-rays

amount of information available from X-ray spectra. Key topics such as the interaction between X-rays and matter, the basic theory;

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Materials Science and Engineering of Carbon

to carbon materials, including X-ray diffraction, X-ray small-angle scattering, transmission electron microscopy, Raman spectroscopy;

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Chemistry & Physics of Carbon

, and chemical and crystal structure; explains the use of x-ray and neutron scattering for the structural evaluation of carbonaceous materials;

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Diffuse Scattering And The Fundamental Properties Of Materials

Diffuse Scattering-the use of off-specular X-Rays and neutrons from surfaces and interfaces-has grown rapidly as a tool for characterizing;

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Diffraction Optics of Complex-Structured Periodic Media

in x-ray optics; magnetic x-ray scattering; and Mößbauer filtration of synchrotron radiation.;

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X-Ray Diffraction for Materials Research

X-ray diffraction is a useful and powerful analysis technique for characterizing crystalline materials commonly employed in MSE, physics;

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X-Ray Diffraction for Materials Research

in other books. This book helps to fill that gap, providing information to convey the concept of X-ray diffraction and how it can be applied to the;

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Small-Angle Scattering from Confined and Interfacial Fluids

scattering (SANS) and small angle x-ray scattering (SAXS). Starting with a brief summary of the basic assumptions and results of the theory of small;

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X-ray Absorption Fine Structure For Catalysts And Surfaces

X-ray absorption fine structure (XAFS) is a powerful technique in characterization of structures and electronic states of materials in many;

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Compound Semiconductor Radiation Detectors

, their modest stopping powers, and radiation intolerance. Compound semiconductors, on the other hand, encompass such a wide range of physical and;

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Compound Semiconductor Radiation Detectors

, their modest stopping powers, and radiation intolerance. Compound semiconductors, on the other hand, encompass such a wide range of physical and;

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In-Situ Characterization of Heterogeneous Catalysts

techniques, including the characterization of the electronic and structural properties of catalysts using XAFS (X-ray Absorption Fine Structure;

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