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1
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Automatisierte mikromethode der flammen-atomabsorptionsspektrometrie für die bestimmung von 8 elementen in humanserum
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Berndt H., Jackwerth E. Bestimmung von Li, Na, K, Mg und Ca mit einer mechanisierten mikromethode der flammen-Spektrometrie (mechanisierte mikromethode ('injektionsmethode') der flammen-spektrometrie (atomabsorption-atomemission) für die bestimmung der serumelektrolyte und der spurenelemente (Fe, Cu, Zn), Teil I). J. Clin. Chem. Clin. Biochem. 17:1979;71-76.
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Teilautomatisierte bestimmung von natrium und kalium in 1 bis 5 mikroliter humanserum durch flammen-emissionsspektrometrie
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Berndt H. Teilautomatisierte bestimmung von natrium und kalium in 1 bis 5 mikroliter humanserum durch flammen-emissionsspektrometrie. Fresenius J. Anal. Chem. 296:1979;277-280.
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0001349694
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Eine mikromethode der flammen-atomabsorptions- und emissionsspektrometrie (platinschlaufen-methode)-II. Die bestimmung von As, Bi, Cd, Hg, Pb, Sb, Se, Te, Tl, Zn/Li, Na, K, Cs, Sr and Ba
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Berndt H., Messerschmidt J. Eine mikromethode der flammen-atomabsorptions- und emissionsspektrometrie (platinschlaufen-methode)-II. Die bestimmung von As, Bi, Cd, Hg, Pb, Sb, Se, Te, Tl, Zn/Li, Na, K, Cs, Sr and Ba. Spectrochim. Acta Part B. 36:1981;809-819.
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0000458551
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Improvements in loop atomic absorption spectrometry by application of an iridium loop and a ceramic collection tube
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Berndt H., Messerschmidt J. Improvements in loop atomic absorption spectrometry by application of an iridium loop and a ceramic collection tube. Anal. Chim. Acta. 136:1982;407-411.
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Probeneintragssystem mit probenverbrennung oder probenvorverdampfung für die direkte feststoffanalyse und für die lösungsspektralanalyse
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Feststoffanalytik in der Flammen-AAS (Mikroprobenverbrennungssysteme) Tagungsband: 4. Coll.
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0001828118
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A new technique for the direct analysis of combustible solids by flame atomic absorption spectrometry
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Simple low-cost tungsten-coil atomiser for electrothermal atomic absorption spectrometry
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Berndt H., Schaldach G. Simple low-cost tungsten-coil atomiser for electrothermal atomic absorption spectrometry. J. Anal. Atom. Spectrom. 3:1988;709-712.
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Improved ET-AAS determination of alkaline and earth alkaline elements with a simple 'low-cost' tungsten coil atomizer
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Havesov I., Ivanova E., Berndt H., Schaldach G. Improved ET-AAS determination of alkaline and earth alkaline elements with a simple 'low-cost' tungsten coil atomizer. Fresenius J. Anal. Chem. 336:1990;484-485.
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Low temperature hydride furnace modified for the atomic absorption spectrometric determination of metals with low appearance temperatures
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Bruhn C., Berndt H., Tristao M.L. Low temperature hydride furnace modified for the atomic absorption spectrometric determination of metals with low appearance temperatures. Anal. Chim. Acta. 193:1987;361-365.
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0000018744
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Comparative study of injection into a pneumatic nebuliser and tungsten coil electrothermal vaporisation for the determination of rare earth elements by inductively coupled plasma optical emission spectrometry
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Dittrich K., Berndt H., Broekaert J.A.C., Schaldach G., Tölg G. Comparative study of injection into a pneumatic nebuliser and tungsten coil electrothermal vaporisation for the determination of rare earth elements by inductively coupled plasma optical emission spectrometry. J. Anal. Atom. Spectrom. 3:1988;1105-1110.
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Comparative study of a Beenakker cavity and a surfatron in combination with electrothermal evaporation from a tungsten coil for microwave plasma optical emission spectrometry (MIP-AES)
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Richts U., Broekaert J.A.C., Tschoepel P., Tölg G. Comparative study of a Beenakker cavity and a surfatron in combination with electrothermal evaporation from a tungsten coil for microwave plasma optical emission spectrometry (MIP-AES). Talanta. 38:1991;863-869.
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Effective on-line coupling of HPLC and flame-AAS by means of hydraulic high pressure nebulization
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0001373404
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Measurement of Cr(III)/Cr(VI) species by wavelength modulation diode laser flame atomic absorption spectrometry
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Groll H., Schaldach G., Berndt H., Niemax K. Measurement of Cr(III)/Cr(VI) species by wavelength modulation diode laser flame atomic absorption spectrometry. Spectrochim. Acta Part B. 50:1995;1293-1298.
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Metal speciation in the ppt range by HPLC and diode laser atomic absorption spectrometry in a flame
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Zybin A., Schaldach G., Berndt H., Niemax K. Metal speciation in the ppt range by HPLC and diode laser atomic absorption spectrometry in a flame. Anal. Chem. 50:1998;5093-5096.
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Improvement of the power of detection in ICP/OES by a new way of sample introduction (hydraulic high-pressure nebulization)
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0033941076
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Gáspár A., Berndt H. Thermospray flame furnace atomic absorption spectrometry (TS-FF-AAS): a simple method for trace element determination with microsamples in the μg/l concentration range. Spectrochim. Acta Part B. 55:2000;587-597.
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0000090277
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Analysis of submicroliter samples using micro thermospray flame furnace atomic absorption spectrometry
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