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Titlebook: Analytical Applications of FT-IR to Molecular and Biological Systems; Proceedings of the N James R. Durig Conference proceedings 1980 D. Re

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期刊全稱Analytical Applications of FT-IR to Molecular and Biological Systems
期刊簡(jiǎn)稱Proceedings of the N
影響因子2023James R. Durig
視頻videohttp://file.papertrans.cn/157/156567/156567.mp4
學(xué)科分類Nato Science Series C:
圖書封面Titlebook: Analytical Applications of FT-IR to Molecular and Biological Systems; Proceedings of the N James R. Durig Conference proceedings 1980 D. Re
影響因子In the past few years it has become apparent that Fourier Trans- form infrared spectroscopy is developing into an excellent technique for solving some of the very difficult problems encountered in analytical chemistry. The applications of FT-IR include the detec- tion and identification of chemical components separated by gas chromatography techniques, determination of low concentration com- ponents in a mixture, and problems which have energy limitations such as water samples, opaque samples and biological systems. The lectures presented in this volume will be utilized at the NATO Advanced Study Institute in Florence, Italy from August 31 to September 12, 1980. These lectures are divided into three main sections: Instrumentation and Theory, Techniques, and Applications. The first section includes a basic introduction to interferometry and the operating parameters. The Techniques section consists of several lectures on accessories used in FT-IR, software and data systems, and special handling techniqucs. The third section con- tains an abundance of information on the applications of the FT-IR technique to inorganic and organic molecules, polymers, biological systems, solids and to
Pindex Conference proceedings 1980
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Apodization and Phase Correctionath-difference between the two arms of the interferometer is x is given by . (1) k is the wavenumber of the radiation in the gas, or vacuum, which fills the dashed box in Fig. 1; I.(k) is the intensity of radiation emitted by the source at wavenumber k; S(k) is the transmittance of the sample at wav
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Energy-Limited Systemso yield an acceptable signal-to-noise ratio with the slits set to yield the diffraction-limited resolution. This is the case for most, if not all, infrared grating spectrometers, and traditionally the solution has been to open the slits to allow more energy to fall on the detector, so that an accept
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The Use of Fourier Transform Methods for the Measurement of Infrared Emission Spectrabed from the environment to be equal to the amount emitted to the environment. This must be so in all directions and at all wavenumbers or wavelengths. This consideration is the basis of Kirchoff’s Law [1] which states that at a given temperature the absorptance, a, of a sample is equal to its emiss
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Chromatography and FT-IR Spectrometryt species. By far the most important application of this rapid-scanning property is the on-line identification of peaks eluting from a gas chromatograph (GC/FT-IR). GC/FT-IR measurements using low resolution (20 cm.) interferometers were described as early as 1967 [1], but only recently have GC/FT-I
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