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Modern Diffraction Methods

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Modern Diffraction Methods Cover

 

Synopses & Reviews

Publisher Comments:

The role of diffraction methods for the solid-state sciences has been pivotal to determining the (micro)structure of a material. Particularly, the expanding activities in materials science have led to the development of new methods for analysis by diffraction.
This book offers an authoritative overview of the new developments in the field of analysis of matter by (in particular X-ray, electron and neutron) diffraction. It is composed of chapters written by leading experts on "modern diffraction methods". The focus in the various chapters of this book is on the current forefront of research on and applications for diffraction methods. This unique book provides descriptions of the "state of the art" and, at the same time, identifies avenues for future research.
The book assumes only a basic knowledge of solid-state physics and allows the application of the described methods by the readers of the book (either graduate students or mature scientists).

Prof. Mittemeijer and Dr. Welzel, who has been a Ph.D. student of Prof. Mittemeijer and a member of his department until shortly, are renowned scientists in the field of analysis of materials by diffraction methods. They have contributed considerably to this scientific discipline, as is shown, for example, by their many widely cited publications. This book presents a comprehensive overview based on their insights into the field, as well as those of the selection of key authors who contributed to this project.

Synopsis:

The first comprehensive overview of the potential and virtues of modern diffraction methods, this book covers various applications in which these versatile and very important techniques play a major role. These range from nanoscience to materials science, surface technologies to single crystal structure determination, and the analysis of phases and phase transformations to the microstructure of materials.

Of major interest to biochemists, material scientists, material engineers and also those working in industry.

About the Author

Professor Mittemeijer has led the department 'Phase Transformations in Solids' at the Max Planck Institute for Metals Research since 1998. He has published more than 400 papers in international scientific journals and is a member of the editorial board of various journals, among them "International Materials Reviews", "Journal of Alloys and Compounds", "Zeitschrift für Metallkunde" and "Zeitschrift für Kristallographie". He is editor/publisher of the journal "HTM Zeitschrift für Werkstoffe Wärmebehandlung Fertigung" and co-editor of the journal "Current Opinion in Solid State & Materials Science". He acts as referee of numerous journals.

Dr Welzel obtained his PhD in 2002 under the supervision of Professor Mittemeijer and serves now as a research scientist and the head of a service laboratory for X-ray diffraction investigations at the Max Planck Institute for Metals Research. His research activities are dedicated to the diffraction analysis of the microstructure of materials and have a strong methodological interest. He has been an editor of the Proceedings of the European Powder Diffraction Conference since 2002, a special issue of the journal "Zeitschrift für Kristallographie" dedicated to 'The State of the Art of Powder Diffration' and acts as referee of numerous journals.

Table of Contents

STRUCTURE DETERMINATION

Single Crystals

Powder Specimens

Nanocrystals

QUANTITATIVE ANALYSIS OF PHASES AND PHASE TRANSFORMATIONS

DIFFRACTION ANALYSIS OF THE MICROSTRUCTURE OF MATERIALS

Line Profile Analysis

Stress Analysis

Crystallographic Texture Analysis

THIN FILMS AND SURFACE DIFFRACTION

INSTRUMENTAL ASPECTS

Neutron Diffraction: Capabilities, Instrumentation and Examples

Synchrotron Diffraction: Capabilities, Instrumentation and Examples

Laboratory X.-Ray Diffaction: Capabilities, Instrumentation and Examples

Electron Diffraction: Capabilities, Instrumentation and Examples

Reference Materials

Product Details

ISBN:
9783527322794
Author:
Mittemeijer, Eric J.
Publisher:
Wiley-VCH Verlag GmbH
Author:
Welzel, U.
Author:
Mittemeijer, E.J.
Subject:
nanoscience, nanotechnology, surface technology, single crystal structure determination, phase composition, microstructure of materials, analytical chemistry, atomic arrangement, materials science, biochemistry, surface chemistry, crystallography
Subject:
Chemistry - Analytic
Subject:
analytical chemistry
Subject:
nanoscience, nanotechnology, surface technology, single crystal structure determination, phase composition, microstructure of materials, analytical chemistry, atomic arrangement, materials science, biochemistry, surface chemistry, crystallography
Subject:
nanoscience, nanotechnology, surface technology, single crystal structure determination, phase composition, microstructure of materials, analytical chemistry, atomic arrangement, materials science, biochemistry, surface chemistry, crystallography
Subject:
nanoscience, nanotechnology, surface technology, single crystal structure determination, phase composition, microstructure of materials, analytical chemistry, atomic arrangement, materials science, biochemistry, surface chemistry, crystallography
Subject:
nanoscience, nanotechnology, surface technology, single crystal structure determination, phase composition, microstructure of materials, analytical chemistry, atomic arrangement, materials science, biochemistry, surface chemistry, crystallography
Subject:
nanoscience, nanotechnology, surface technology, single crystal structure determination, phase composition, microstructure of materials, analytical chemistry, atomic arrangement, materials science, biochemistry, surface chemistry, crystallography
Subject:
nanoscience, nanotechnology, surface technology, single crystal structure determination, phase composition, microstructure of materials, analytical chemistry, atomic arrangement, materials science, biochemistry, surface chemistry, crystallography
Subject:
nanoscience, nanotechnology, surface technology, single crystal structure determination, phase composition, microstructure of materials, analytical chemistry, atomic arrangement, materials science, biochemistry, surface chemistry, crystallography
Subject:
nanoscience, nanotechnology, surface technology, single crystal structure determination, phase composition, microstructure of materials, analytical chemistry, atomic arrangement, materials science, biochemistry, surface chemistry, crystallography
Subject:
nanoscience, nanotechnology, surface technology, single crystal structure determination, phase composition, microstructure of materials, analytical chemistry, atomic arrangement, materials science, biochemistry, surface chemistry, crystallography
Subject:
nanoscience, nanotechnology, surface technology, single crystal structure determination, phase composition, microstructure of materials, analytical chemistry, atomic arrangement, materials science, biochemistry, surface chemistry, crystallography
Subject:
nanoscience, nanotechnology, surface technology, single crystal structure determination, phase composition, microstructure of materials, analytical chemistry, atomic arrangement, materials science, biochemistry, surface chemistry, crystallography
Subject:
nanoscience, nanotechnology, surface technology, single crystal structure determination, phase composition, microstructure of materials, analytical chemistry, atomic arrangement, materials science, biochemistry, surface chemistry, crystallography
Subject:
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Subject:
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nanoscience, nanotechnology, surface technology, single crystal structure determination, phase composition, microstructure of materials, analytical chemistry, atomic arrangement, materials science, biochemistry, surface chemistry, crystallography
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nanoscience, nanotechnology, surface technology, single crystal structure determination, phase composition, microstructure of materials, analytical chemistry, atomic arrangement, materials science, biochemistry, surface chemistry, crystallography
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nanoscience, nanotechnology, surface technology, single crystal structure determination, phase composition, microstructure of materials, analytical chemistry, atomic arrangement, materials science, biochemistry, surface chemistry, crystallography
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nanoscience, nanotechnology, surface technology, single crystal structure determination, phase composition, microstructure of materials, analytical chemistry, atomic arrangement, materials science, biochemistry, surface chemistry, crystallography
Subject:
nanoscience, nanotechnology, surface technology, single crystal structure determination, phase composition, microstructure of materials, analytical chemistry, atomic arrangement, materials science, biochemistry, surface chemistry, crystallography
Subject:
nanoscience, nanotechnology, surface technology, single crystal structure determination, phase composition, microstructure of materials, analytical chemistry, atomic arrangement, materials science, biochemistry, surface chemistry, crystallography
Subject:
nanoscience, nanotechnology, surface technology, single crystal structure determination, phase composition, microstructure of materials, analytical chemistry, atomic arrangement, materials science, biochemistry, surface chemistry, crystallography
Subject:
nanoscience, nanotechnology, surface technology, single crystal structure determination, phase composition, microstructure of materials, analytical chemistry, atomic arrangement, materials science, biochemistry, surface chemistry, crystallography
Subject:
nanoscience, nanotechnology, surface technology, single crystal structure determination, phase composition, microstructure of materials, analytical chemistry, atomic arrangement, materials science, biochemistry, surface chemistry, crystallography
Subject:
nanoscience, nanotechnology, surface technology, single crystal structure determination, phase composition, microstructure of materials, analytical chemistry, atomic arrangement, materials science, biochemistry, surface chemistry, crystallography
Subject:
nanoscience, nanotechnology, surface technology, single crystal structure determination, phase composition, microstructure of materials, analytical chemistry, atomic arrangement, materials science, biochemistry, surface chemistry, crystallography
Copyright:
Edition Description:
WOL online Book (not BRO)
Publication Date:
20121106
Binding:
HARDCOVER
Language:
English
Pages:
554
Dimensions:
250 x 1 x 150 mm 24 oz

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Modern Diffraction Methods New Hardcover
0 stars - 0 reviews
$201.95 Backorder
Product details 554 pages Wiley-VCH Verlag GmbH - English 9783527322794 Reviews:
"Synopsis" by , The first comprehensive overview of the potential and virtues of modern diffraction methods, this book covers various applications in which these versatile and very important techniques play a major role. These range from nanoscience to materials science, surface technologies to single crystal structure determination, and the analysis of phases and phase transformations to the microstructure of materials.

Of major interest to biochemists, material scientists, material engineers and also those working in industry.

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