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The role of experiments for the determination of minor actinide nuclear data is presented as essential to meet the tight uncertainties requirements derived by sensitivity analyses for innovative systems designed to significantly reduce the amount of high level nuclear waste.
A carbon-paste electrode (CPE) chemically modified with the cobalt II -4-methylsalophen (cobalt II -4-methylsalophenmplex was used as a highly sensitive and fairly selecobalt II -4-methylsalophenr for simultaneous determination of minor mounts of asCoMSal asid (aA) and cySchiff.
A simple, uniform and rapid methodology was developed enabling determination of minor H antigen genotypes of all currently identified minor H antigens.
This study reports the determination of minor and trace elements and their distribution in the Corning glasses.
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Several applications and techniques are described: determination of major, minor and trace elements in geological, environmental and biological materials, analysis of brines, nuclear materials and organic solvents and solutions.
The chemical composition of the used substrate is presented in Tables 2 and 3. Determination of major and minor elements was achieved according to Standard EN 15290 and Standard EN 15297.
However, appropriate modifications of these techniques combined with use of electrodes having a high polarisation resistance, enable a precise determination of even minor electronic contributions to the total conductivity of solid electrolytes.
The applicability of LA-MC-ICPMS for the determination of the minor U isotopes was demonstrated in a recent study [ 6], as well as within the NUSIMEP-7 ILC [ 38].
Even though in this study only results for the major U isotope ratio (U/U) were shown, the model is equally applicable for the determination of the minor isotope ratios (i.e. U/U and U/U).
Chemical analyses were performed for the determination of major (Table 3) and minor components (Table 4) and LOI.
The selection of wide concentration ranges with high levels is not recommended for the determination of analytes at minor levels (<1%, w/w), even when the concentration of interest is within the range of the model.
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