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Free eBook High-Temperature Levitated Materials download

by David L. Price

Free eBook High-Temperature Levitated Materials download ISBN: 0521880521
Author: David L. Price
Publisher: Cambridge University Press; 1 edition (June 14, 2010)
Language: English
Pages: 240
Category: Engineering & Transportation
Subcategory: Engineering
Size MP3: 1473 mb
Size FLAC: 1999 mb
Rating: 4.6
Format: azw mbr lrf mobi


High-Temperature Levitated Materials. Solidification and melting of high temperature materials: in situ observations by synchrotron radiation.

High-Temperature Levitated Materials. Journal of Materials Science, Vol. 47, Issue.

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High-Temperature Levitated Materials – E-book de David L. Price

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One of the major experimental difficulties in studying materials at extreme temperatures is unwanted contamination of the sample through contact with the container

One of the major experimental difficulties in studying materials at extreme temperatures is unwanted contamination of the sample through contact with the container. This can be avoided by suspending the sample through levitation.

One of the major experimental difficulties in studying materials at extreme temperatures is unwanted contamination of the sample through contact with the container. This book describes several methods of levitation, the most important being aerodynamic, electromagnetic and electrostatic.

High-Temperature Levitated Materials In book: Neutron Scattering - Applications in Biology, Chemistry, and . How we measure 'reads'. In book: Neutron Scattering - Applications in Biology, Chemistry, and Materials Science, p. 83-636. Cite this publication. X-ray and neutron diffraction on laser-heated aerodynamically levitated oxide samples for in situ observation of phase transformations in variable atmospheres, refinement of high-temperature structures and thermal expansion.

One of the major experimental difficulties in studying materials at extreme temperatures is unwanted contamination of the sample through contact with the container. This can be avoided by suspending the sample through levitation. This technique also makes metastable states of matter accessible, opening up new avenues of scientific enquiry, as well as possible new materials for technological applications. This book describes several methods of levitation, the most important being aerodynamic, electromagnetic and electrostatic. It summarizes the state-of-the-art of the measurement of structural, dynamic and physical properties with levitation techniques, the considerable progress made in this field in the past two decades, and prospects for the future. It also explores the concepts behind the experiments and associated theoretical ideas. Aimed at researchers in physics, physical chemistry and materials science, the book is also of interest to professionals working in high-temperature materials processing and the aerospace industry.