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Titlebook: High Performance Computing in Science and Engineering ‘19; Transactions of the Wolfgang E. Nagel,Dietmar H. Kröner,Michael M. Res Conferen

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Roman Gold,Luciano Rezzolla,Ludwig Jens Papenfort,Samuel Tootle,Hector Olivares,Elias Most,Ziri Youn and sensing, X-ray imaging, electrochemical sensors, data storage devices, biomedical applications, photovoltaics and IR detectors, the rationale for these uses, the future scope of their applications, and expected improvements to existing technologies. Following an introductory section, the book i
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M. Cè,A. Gérardin,G. von Hippel,B. Hörz,H. B. Meyer,D. Mohler,K. Ottnad,S. Schaefer,J. Wilhelm,H. Wig region and their ability to be readily drawn into fiber with a broadband IR transmission. Depending upon composition, the sulfide, selenide, and telluride-based fibers transmit between about 0.8 and 7 μm, 1 and 10 μm, and 2 and 12 μm, respectively. The low phonon energy of chalcogenide glasses (~3
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and sensing, X-ray imaging, electrochemical sensors, data storage devices, biomedical applications, photovoltaics and IR detectors, the rationale for these uses, the future scope of their applications, and expected improvements to existing technologies. Following an introductory section, the book i
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Julia Rybka,Alexandra Höltzel,Nicole Trebel,Ulrich Tallarek and sensing, X-ray imaging, electrochemical sensors, data storage devices, biomedical applications, photovoltaics and IR detectors, the rationale for these uses, the future scope of their applications, and expected improvements to existing technologies. Following an introductory section, the book i
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