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Atomic-fluorescence and atomic-absorption spectrometry for chemical analysis

The Analyst, 1974
Atomic-absorption spectroscopy, which was first described in the literature in 1955, has now become widely accepted as a trace technique for the analysis of most metals. However, atomic fluorescence, which was first described in 1964, has not yet found widespread use.
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Atomic Spectrometry Update—Atomic Mass Spectrometry and X-Ray Fluorescence Spectrometry

J. Anal. At. Spectrom., 1992
Bacon, J.R.   +4 more
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Resonance monochromator in atomic-absorption and atomic-fluorescence spectrometry

Journal of Applied Spectroscopy, 1986
The purpose of this study was to find a means of realizing the potential possibilities of a resonance monitor in atomic-flourescence and atomic absorption spectrometry by eliminating intrinsic radiation. The atomic beam was obtained by using a furnace situated in a volume evacuated to 1.3.10/sup -3/ Pa.
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Atomic fluorescence spectrometry

2004
L. H. J. Lajunen, P. Perämäki
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Studies in atomic fluorescence spectrometry

Analytica Chimica Acta, 1975
L. Ebdon, D.P. Hubbard, R.G. Michel
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Atomic Spectrometry Update Advances in Atomic Absorption and Fluorescence Spectrometry and Related Techniques

Journal of Analytical Atomic Spectrometry, 1997
Hill, SJ   +5 more
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Vapour Generation and Atomic Fluorescence Spectrometry

This chapter covers both vapour generation and atomic fluorescence because they are often coupled together as a means of sample introduction and detection. The advantages and disadvantages of vapour generation as a means of sample introduction are presented indicating where serious errors can be obtained if an unwary analyst makes too many assumptions.
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