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Titlebook: High-Pressure Crystallography; From Fundamental Phe Elena Boldyreva,Przemyslaw Dera Conference proceedings 2010 Springer Science+Business M

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发表于 2025-3-21 18:20:42 | 显示全部楼层 |阅读模式
书目名称High-Pressure Crystallography
副标题From Fundamental Phe
编辑Elena Boldyreva,Przemyslaw Dera
视频video
概述Unique blend of content including experimental methods, fundamental phenomena and properties, theoretical aspects and practical applications.Unique scope spanning from biology, through chemistry, phys
丛书名称NATO Science for Peace and Security Series B: Physics and Biophysics
图书封面Titlebook: High-Pressure Crystallography; From Fundamental Phe Elena Boldyreva,Przemyslaw Dera Conference proceedings 2010 Springer Science+Business M
描述This book is devoted to the theme of crystallographic studies at high pressure, with emphasis on the phenomena characteristic to the compressed state of matter, as well as experimental and theoretical techniques used to study these phenomena. As a thermodynamic parameter, pressure is remarkable in many ways. In the visible universe its value spans over sixty orders of magnitude, from the non-equilibrium pressure of hydrogen in intergalactic space, to the kind of pressure encountered within neutron stars. In the laboratory, it provides the unique possibility to control the structure and properties of materials, to dramatically alter electronic properties, and to break existing, or form new chemical bonds. This agenda naturally encompasses elements of physics (properties, structure and transformations), chemistry (reactions, transport), materials science (new materials) and engineering (mechanical properties); in addition it has direct applications and implications for geology (minerals in deep Earth environments), planetary sciences, biology and medicine.
出版日期Conference proceedings 2010
关键词Crystallography; PAS; PES; REM; STEM; alloy; crystal; thermodynamics
版次1
doihttps://doi.org/10.1007/978-90-481-9258-8
isbn_softcover978-90-481-9260-1
isbn_ebook978-90-481-9258-8Series ISSN 1874-6500 Series E-ISSN 1874-6535
issn_series 1874-6500
copyrightSpringer Science+Business Media B.V. 2010
The information of publication is updating

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Denis P. Kozlenko Stundenumfang wird dabei mit insgesamt 4 Semesterwochenstunden Vorlesung und ebenso vielen Übungen angesetzt. Der Text, der auch ein Selbststudium erlauben soll, orientiert sich am PC und dessen Möglichkeiten. Die Einführung soll so praktisch wie möglich sein, d.h. der Leser erhält die Gelegenheit,
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All Different Flavors of Synchrotron Single Crystal X-Ray Diffraction Experiments,D) experiment utilizing synchrotron radiation for applications in high-pressure research. You will learn how such experiment can be designed and performed to best answer the scientific goals of your study and, at the same time overcome the main technical limitations imposed by the high-pressure devi
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Synchrotron High-Pressure High-Temperature Techniques,sure and high (or low) temperature. This beamline exhibits outstanding performance in terms of photon flux and focusing capabilities at high x-ray energies. The main components of this instrument are described in some details. In particular, the choices in terms of x-ray source, x-ray optics, detect
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Mineral Physics of Earth Core: Iron Alloys at Extreme Condition,vating multidisciplinary efforts to re-evaluate our understanding of the past and current states of the planet. We discuss the structures, melting temperatures, sound velocities of the dominant core-forming iron–nickel-light element alloys, as well as seismic anisotropy, thermal and chemical states
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,Synchrotron-Based Spectroscopic Techniques: Mössbauer and High-Resolution Inelastic Scattering,pectroscopy”), nuclear resonant inelastic x-ray scattering (“NRIXS”), and momentum-resolved inelastic x-ray scattering (“IXS”). The inelastic methods provide specific vibrational information, e.g., the phonon density of states, and in combination with diffraction data permits the determination of so
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High-Pressure X-Ray Absorption Spectroscopy: Application to the Local Aspects of Phase Transitions be very sensitive to phase transitions. The evolution of the local structure of ferroelectric titanates under high pressure is obtained using XAS showing that the Ti atom remains out of the center of the surrounding oxygen octahedron just above the transition to the cubic structure and goes to the
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