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The Science of the Total Environment|January 1, 1976
The lead, copper and zinc content of tree rings and bark. A measurement of local metallic pollutionD Barnes, M A Hamadah, J M OttawayTalanta|June 1, 1972
Indirect method for the determination of aluminium by atomic-absorption spectrometry using an air-acetylene flameJ M Ottaway, D T Coker, B SingletonClinical Chemistry|October 1, 1976
Modified determination of total and inorganic mercury in urine by cold vapor atomic absorption sectrometryD Littlejohn, G S Fell, J M OttawayBritish Journal of Industrial Medicine|May 1, 1977
Application of blood cadmium analysis to industry using an atomic fluorescence methodG S Fell, J M Ottaway, F E HusseinTalanta|September 1, 1979
Accuracy of the direct determination of cadmium in urine by carbon-furnace atomic-absorption spectrometryP E Gardiner, J M Ottaway, G S FellTalanta|May 1, 1977
Determination of gold in tissue by carbon-furnace atomic-absorption spectrometryH Kamel, D H Brown, J M Ottaway, et al.Talanta|August 1, 1971
A titrimetric method for the rapid determination of carbon in steel with an aqueous titrantJ M Ottaway, D W Whymark, B Metters, et al.Talanta|April 1, 1973
Coulometric titration of acids in isopropanol-II Electrode reactions with lithium chloride and tetraethylammonium bromide as supporting electrolytesB G Cooksey, B Metters, J M Ottaway, et al.Talanta|January 1, 1986
Matrix modification--the use of protein-free solutions in the determination of metals in blood by flame atomic fluorescence and emission spectrometryE J Ekanem, C L Barnard, J M Ottaway, et al.Clinica Chimica Acta; International Journal of Clinical Chemistry|May 16, 1979
An evaluation of the use of electrophoresis and carbon furnace atomic absorption spectrometry to determine the copper level in separated serum protein fractionsJ Teape, H Kamel, D H Brown, et al.Pageof 3