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Underneath the Bragg Peaks [electronic resource]: Structural Analysis of Complex Materials

Egami, Takeshi; Billinge, Simon J L; Referex Mechanical Engineering and Materials
Format
EBook; Book; Online
Published
Pergamon [Imprint] Oct. 2003 San Diego : Elsevier Science & Technology Books
Language
English
Series
Pergamon Materials Ser
ISBN
9780080426983, 0080426980 (Trade Cloth)
Target Audience
Scholarly & Professional
Summary
Annotation
Description
Mode of access: World wide Web.
Series Statement
Pergamon Materials Ser. Vol. 7
Copyright Not EvaluatedCopyright Not Evaluated
Technical Details
  • Access in Virgo Classic
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    a| 0080426980 (Trade Cloth) c| USD 187.00 Retail Price (Publisher) 9| Out of Stock Indefinitely
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    a| Underneath the Bragg Peaks h| [electronic resource]: b| Structural Analysis of Complex Materials
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    b| Pergamon [Imprint] c| Oct. 2003 a| San Diego : b| Elsevier Science & Technology Books
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    a| Pergamon Materials Ser. v| Vol. 7
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    a| Annotation b| * Introducing a unique method to study the atomic structure of nano-materials<br />* Award winning research. Takeshi Egami received the 2003 Eugene Bertram Warren Diffraction Physics Award for the work described in the book.<br /><br />This book focuses on the structural determination of crystalline solids with extensive disorder. Well-established methods exist for characterizing the structure of fully crystalline solids or fully disordered materials such as liquids and glasses, but there is a dearth of techniques for the cases in-between, crystalline solids with internal atomic and nanometer scale disorder. Egami and Billinge discuss how to fill the gap using modern tools of structural characterization. While this subject might sound rather narrow, the fact is that today this problem is encountered in the structural characterization of a surprisingly wide range of complex materials of interest to modern technology and is becoming increasingly important.
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    a| Scholarly & Professional b| Elsevier Science & Technology Books
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    a| Science x| Physics x| Crystallography
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    a| Technology & Engineering x| Nanotechnology & Mems
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    a| Technology & Engineering x| Material Science
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    a| Billinge, Simon J. L. e| Author
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    a| Referex Mechanical Engineering and Materials
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