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Spectroscopy / Optical fiber / Attenuated total reflectance / Infrared / Fluoride glass / Transparency and translucency / Attenuation / Zinc selenide / Vibrational analysis with scanning probe microscopy / Chemistry / Electromagnetic radiation / Physics


Fiber-optic Probes for Mid-infrared Spectrometry Peter J. Melling and Mary Thomson
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Document Date: 2009-12-01 17:23:23


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City

Washington / /

Company

John Wiley & Sons Ltd / ACS / J. Goenaga-Polo S.P. / Ge / Specac Ltd / Amorphous Materials Inc. / Mary Thomson Remspec Corporation / Remspec Corporation / Thermo SpectraTech Inc. / /

Country

Switzerland / Jordan / United States / United Kingdom / /

Facility

University of Puerto Rico15 / Brown University / University of North Carolina / /

IndustryTerm

chemical synthesis / spectroscopic software makes / capable systems / mid-infrared fiber-optic devices / mm diameter stainless steel shaft / chemical sensing systems / heavy metal fluoride glasses / manufacturing facility13 / fermentation products / chemical reaction / oil / aqueous solution / much more capable systems / energy / plastics / supercritical fluid technology / chemical signature / Aggressive chemical environments / metal carbonyls / peanut oil / electronics / sensor systems / mid-infrared probes using bundle technology / biotechnology processes / pharmaceutical residues / established experimental equipment / light-pipe systems / Chemical sensing / /

Organization

Brown University / University of North Carolina / University of Puerto Rico15 / American Chemical Society / /

Person

Crystal Optical Conduits / Peter R. Griffiths / Peter J. Melling / M. Chalmers / /

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Position

transmission head / probe head / system designer / zinc selenide ATR head / Low temperature transmission head / /

ProvinceOrState

Washington / North Carolina / /

Technology

supercritical fluid technology / radiation / S/N / biotechnology / disk drive / polymerization / Heat transfer / optical fiber / mid-infrared probes using bundle technology / Spectroscopy / /

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