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The result shows that the specific protein-DNA and protein-metalloid interactions can be applied to quantification of the lower concentrations of As (III) in whole milk and yoghurt in comparison with ET-AAS.
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Finally, the method was applied to quantification of β-caryophyllene content in the developed formulations.
The physical data using the non-linear fuzzy set algorithm are applied to quantification of the designed case.
The methods developed have been applied to quantification of enrofloxacin and its main metabolite ciprofloxacin in samples of turkey muscle obtained from animals treated with enrofloxacin.
Although emerging new methods, such as flow ellipsometry [ 25] and quartz crystal microbalance [ 26], enable the monitoring of changes in cellulose concentration in real time, these methods have not yet been applied to quantification of the inhibition of cellulases.
Absolute quantification can be applied to the quantification of fungal proteins, such as: (a) the enzymes involved in the production of mycotoxins, antibiotic or other target secondary metabolites, (b) extracellular enzymes used in biotechnological processes, (c) potential allergens or (d) subunits of protein complexes of interest to fungal metabolism and physiology.
Under optimum conditions, the proposed biosensor can be applied to the quantification analysis of H2O2 with a wide linear range covering 1 1030 μM (R = 0.9998) and a low detection limit of 0.1 μM.
The sensor can be applied to the quantification of TBHP with a linear range covering from 0.0260 to 4.81 mM, a high sensitivity of 13.64 A M−1, and a low detection limit of 5 μM.
The sensor can be applied to the quantification of Zn2+ with a linear range covering from 3.2 × 10−7 to 1.8 × 10−4 M and a detection limit of 5.5 × 10−8 M.
In addition, the sensor S1 can be applied to the quantification of Al3+ with a linear range covering from 1.0 to 10.0 μM and a detection limit of 1.78×10−7 M.
The chemosensor can be applied to the quantification of ATP with a linear range covering from 1.0 × 10−7 to 2.0 × 10−4 M and a detection limit of 2.5 × 10−8 M.
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