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Synchrotron Radiation Techniques in Industrial, Chemical, and Materials Science

53,49 €*

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Produktnummer: 187adc08bfbd614cf09ad566b23c8b571b
Themengebiete: Crystallography Powder diffraction cluster crystal diffraction polymer spectroscopy
Veröffentlichungsdatum: 15.10.2012
EAN: 9781461376767
Sprache: Englisch
Seitenzahl: 259
Produktart: Kartoniert / Broschiert
Herausgeber: D'Amico, Kevin L. Shuh, David K. Terminello, Louis J.
Verlag: Springer US
Produktinformationen "Synchrotron Radiation Techniques in Industrial, Chemical, and Materials Science"
The individual papers that comprise this monograph are derived from two American Chemical Society (ACS) Fall National Meetings that focused on the current uses of synchrotron radiation (SR) research techniques. The first Symposium was held in Washington, DC, in August 1994, and the second convened in Chicago, IL, in August 1995. The intent of these symposia was to present a broad overview of several current topics in industrial, chemical, and materials-based SR research to a chemically inclined audience. The SR techniques covered were divided roughly into the three general fields of industrial, chemical, and materials science for this purpose. Included within these four categories are environmental, geologic, atomic/molecular, analytical, solid state physics, surface science, and biological applications of SR. There is little doubt that structural biology and environmental science are the largest growth areas in SR research as this monograph goes to press. The spirit of these symposia was to bring together the expert synchrotron radiation user with new and potential users of SR techniques. There are now a preponderance of particle storage rings, located throughout the world, devoted exclusively to the production of SR. There have been great improvements in the particle accelerators and storage rings from which SR emanates. These newest third generation SR sources are the result of the successful collaboration between SR users and accelerator physicists which has made a reality out of experiments never before possible.

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