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X-Ray Diffraction

Author: B E Warren
Publisher: Dover Publications, 2012.
Series: Dover books on physics.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
Basic diffraction theory has numerous important applications in solid-state physics and physical metallurgy, and this graduate-level text is the ideal introduction to the fundamentals of the discipline. Development is rigorous (throughout the book, the treatment is carried far enough to relate to experimentally observable quantities) and stress is placed on modern applications to nonstructural problems such as  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: B E Warren
ISBN: 1306355850 9781306355858 9780486141619 0486141616
OCLC Number: 1058196725
Notes: Description based upon print version of record.
11.5 THE FIRST-ORDER TEMPERATURE DIFFUSE SCATTERING.
Description: 1 online resource ().
Contents: DOVER BOOKS ON PHYSICS; Title Page; Copyright Page; Table of Contents; 1 --
X-RAY SCATTERING BY ATOMS; 1.1 CLASSICAL SCATTERING BY A FREE ELECTRON; 1.2 POLARIZATION BY SCATTERING; 1.3 SCATTERING FROM SEVERAL CENTERS, COMPLEX REPRESENTATION; 1.4 SCATTERING BY AN ATOM; REFERENCES; PROBLEMS; 2 --
CRYSTAL AXES AND THE RECIPROCAL LATTICE; 2.1 CRYSTAL AXES; 2.2 THE CRYSTALLOGRAPHIC PLANES hkl; 2.3 RECIPROCAL VECTORS AND THE RECIPROCAL LATTICE; 2.4 THE SPHERE OF REFLECTION; 2.5 SPACING FORMULAE; 2.6 THE 14 BRAVAIS LATTICES; 2.7 TRANSFORMING AXES AND INDICES; PROBLEMS. 3 --
DIFFRACTION BY A SMALL CRYSTAL3.1 INTENSITY FROM A SMALL CRYSTAL; 3.2 THE 3 LAUE EQUATIONS; 3.3 STRUCTURE FACTOR FOR A BRAGG REFLECTION; 3.4 EFFECT OF TEMPERATURE VIBRATION ON THE INTENSITY FROM A SMALL CRYSTAL; PROBLEMS; 4 --
THE INTEGRATED INTENSITY; 4.1 INTEGRATED INTENSITY FROM A SMALL SINGLE CRYSTAL; 4.2 THE EXTENDED FACE IMPERFECT CRYSTAL; 4.3 THE INTEGRATED INTENSITY FOR A POWDER SAMPLE; PROBLEMS; 5 --
THE POWDER METHOD; 5.1 POWDER PATTERNS BY FILM RECORDING; 5.2 DIFFRACTOMETER RECORDING OF POWDER PATTERNS; 5.3 ANALYSIS OF A CUBIC POWDER PATTERN BY DIFFRACTOMETER RECORDING. 5.4 ANALYSIS OF A HEXAGONAL POWDER PATTERN5.5 ANALYSIS OF ORTHORHOMBIC POWDER PATTERNS; 5.6 PRECISION AXIAL LENGTH MEASUREMENTS; REFERENCES; PROBLEMS; 6 --
THE LAUE METHOD; 6.1 THE TRANSMISSION LAUE PATTERN; 6.2 THE BACK REFLECTION LAUE PATTERN; REFERENCES; PROBLEMS; 7 --
THE ROTATION METHOD; 7.1 THE SIMPLE ROTATION PATTERN; 7.2 INDEXING OF ROTATION PATTERNS; 7.3 THE WEISSENBERG PATTERN; 7.4 FIBER DIAGRAMS AS ROTATION PATTERNS; REFERENCES; PROBLEMS; 8 --
THE USE OF SPACE GROUPS IN STRUCTURE DETERMINATION; 8.1 THE SPACE GROUP Cmcm; 8.2 SPACE GROUP METHODS APPLIED TO URANIUM; REFERENCES; PROBLEMS. 9 --
FOURIER SERIES METHODS IN STRUCTURE DETERMINATIONS9.1 REPRESENTATION BY FOURIER SERIES; 9.2 FOURIER SERIES REPRESENTATION OF THE ELECTRON DENSITY; 9.3 THE PATTERSON FUNCTION; REFERENCES; PROBLEMS; 10 --
SCATTERING BY NONCRYSTALLINE FORMS OF MATTER; 10.1 THE GENERAL SCATTERING EQUATION FOR A RANDOM ORIENTATION; 10.2 GAS OF POLYATOMIC MOLECULES; 10.3 APPLICATION TO A CRYSTALLINE POWDER; 10.4 LIQUID OR AMORPHOUS SOLID WITH ONE KIND OF ATOM; 10.5 APPLICATION TO A SIMPLE LIQUID; 10.6 CONVERGENCE FACTOR AND TERMINATION ERRORS; 10.7 FOURIER INVERSION WITH THE BEEVERS-LIPSON STRIPS. 10.8 APPROXIMATE METHOD FOR SAMPLE WITH MORE THAN ONE KIND OF ATOM10.9 EXACT METHOD FOR AN AMORPHOUS SAMPLE WITH MORE THAN ONE KIND OF ATOM; 10.10 AMORPHOUS SCATTERING FROM A FLAT-FACED DIFFRACTOMETER SAMPLE; 10.11 MULTIPLE SCATTERING FROM AMORPHOUS SAMPLES; REFERENCES; PROBLEMS; 11 --
THE EFFECT OF TEMPERATURE VIBRATION ON X-RAY DIFFRACTION; 11.1 INTRODUCTION; 11.2 LONG WAVELENGTH ELASTIC WAVES IN A CUBIC CRYSTAL; 11.3 RESTRICTIONS DUE TO THE LATTICE NATURE AND FINITE SIZE OF THE SAMPLE; 11.4 INTENSITY FROM A CUBIC CRYSTAL WITH ONE ATOM PER CELL.
Series Title: Dover books on physics.

Abstract:

Basic diffraction theory has numerous important applications in solid-state physics and physical metallurgy, and this graduate-level text is the ideal introduction to the fundamentals of the discipline. Development is rigorous (throughout the book, the treatment is carried far enough to relate to experimentally observable quantities) and stress is placed on modern applications to nonstructural problems such as temperature vibration effects, order-disorder phenomena, crystal imperfections, the structure of amorphous materials, and the diffraction of x-rays in perfect crystals.Carefully selected problems have been included at the end of each chapter to help the student test his grasp of the material.

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