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Diffuse Scattering and the Fundamental Properties of Materials

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Release : 2009
Genre : Science
Kind : eBook
Book Rating : 007/5 ( reviews)

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Book Synopsis Diffuse Scattering and the Fundamental Properties of Materials by : Rozaliya I. Barabash

Download or read book Diffuse Scattering and the Fundamental Properties of Materials written by Rozaliya I. Barabash. This book was released on 2009. Available in PDF, EPUB and Kindle. Book excerpt: Annotation Beginning with a concise review of the physics and chemistry of polymers and their structure and morphology, this book goes on to describe and explain the common methods of characterizing polymers, including optical microscopy, scanning electron microscopy and transmission electron microscopy, among others. Also covered are the characterization and modification of such surface properties as adhesion, wetting, tribology, and surface thermodynamics.

Diffuse Scattering and Defect Structure Simulations

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Release : 2008-11-20
Genre : Computers
Kind : eBook
Book Rating : 691/5 ( reviews)

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Book Synopsis Diffuse Scattering and Defect Structure Simulations by : Reinhard B. Neder

Download or read book Diffuse Scattering and Defect Structure Simulations written by Reinhard B. Neder. This book was released on 2008-11-20. Available in PDF, EPUB and Kindle. Book excerpt: Understanding the atomic structure of complex and time disordered materials relies upon computer simulations of these structures. This cook book provides a unique mixture of simulation know-how and hands on examples. All related files and the program DISCUS are included on a CDROM with the book.

Physical Metallurgy

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Release : 2014-07-24
Genre : Technology & Engineering
Kind : eBook
Book Rating : 716/5 ( reviews)

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Book Synopsis Physical Metallurgy by : David E. Laughlin

Download or read book Physical Metallurgy written by David E. Laughlin. This book was released on 2014-07-24. Available in PDF, EPUB and Kindle. Book excerpt: This fifth edition of the highly regarded family of titles that first published in 1965 is now a three-volume set and over 3,000 pages. All chapters have been revised and expanded, either by the fourth edition authors alone or jointly with new co-authors. Chapters have been added on the physical metallurgy of light alloys, the physical metallurgy of titanium alloys, atom probe field ion microscopy, computational metallurgy, and orientational imaging microscopy. The books incorporate the latest experimental research results and theoretical insights. Several thousand citations to the research and review literature are included. Exhaustively synthesizes the pertinent, contemporary developments within physical metallurgy so scientists have authoritative information at their fingertips Replaces existing articles and monographs with a single, complete solution Enables metallurgists to predict changes and create novel alloys and processes

Ultrafast Electron Diffuse Scattering and Its Application to 2D Materials

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Release : 2019
Genre :
Kind : eBook
Book Rating : /5 ( reviews)

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Book Synopsis Ultrafast Electron Diffuse Scattering and Its Application to 2D Materials by : Mark Stern

Download or read book Ultrafast Electron Diffuse Scattering and Its Application to 2D Materials written by Mark Stern. This book was released on 2019. Available in PDF, EPUB and Kindle. Book excerpt: "The nature of the couplings within and between lattice and charge degrees of freedom is central to condensed matter and materials physics. Despite their fundamental role, detailed momentum-dependent information on the strength of electron-phonon and phonon-phonon couplings across all momenta has proved elusive. Ultrafast electron diffuse scattering provides the answer by measuring momentum-dependent phonon population dynamics similar to how time and angle resolved photoemission spectroscopy views the momentum-dependent occupation dynamics of electronic states. This method proves particularly effective in the study of 2D materials. A sophisticated analysis applied to ultrafast electron scattering measurements of graphite, follows the cascade of electron-phonon and phonon-phonon couplings after pulsed laser excitation in this well studied benchmark system. In a similar experiment on titanium diselenide, electronphonon coupling is measured by observing the effect of photoexcitation on the renormalized phonon frequencies with the characteristic momentum of titanium diselenide's charge density wave transition. Through its sensitivity to transient phonon occupancies and frequencies, ultrafast electron diffuse scattering is a novel and powerful method to unravel the physics of complex phases and properties determined through interplay between the electron and lattice systems." --

Basic Concepts of X-Ray Diffraction

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Release : 2014-02-10
Genre : Science
Kind : eBook
Book Rating : 183/5 ( reviews)

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Book Synopsis Basic Concepts of X-Ray Diffraction by : Emil Zolotoyabko

Download or read book Basic Concepts of X-Ray Diffraction written by Emil Zolotoyabko. This book was released on 2014-02-10. Available in PDF, EPUB and Kindle. Book excerpt: Authored by a university professor deeply involved in X-ray diffraction-related research, this textbook is based on his lectures given to graduate students for more than 20 years. It adopts a well-balanced approach, describing basic concepts and experimental techniques, which make X-ray diffraction an unsurpassed method for studying the structure of materials. Both dynamical and kinematic X-ray diffraction is considered from a unified viewpoint, in which the dynamical diffraction in single-scattering approximation serves as a bridge between these two parts. The text emphasizes the fundamental laws that govern the interaction of X-rays with matter, but also covers in detail classical and modern applications, e.g., line broadening, texture and strain/stress analyses, X-ray mapping in reciprocal space, high-resolution X-ray diffraction in the spatial and wave vector domains, X-ray focusing, inelastic and time-resolved X-ray scattering. This unique scope, in combination with otherwise hard-to-find information on analytic expressions for simulating X-ray diffraction profiles in thin-film heterostructures, X-ray interaction with phonons, coherent scattering of Mossbauer radiation, and energy-variable X-ray diffraction, makes the book indispensable for any serious user of X-ray diffraction techniques. Compact and self-contained, this textbook is suitable for students taking X-ray diffraction courses towards specialization in materials science, physics, chemistry, or biology. Numerous clear-cut illustrations, an easy-to-read style of writing, as well as rather short, easily digestible chapters all facilitate comprehension.

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