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In the discovery step, profiling of a broad range of metabolites in a small set of samples is performed by a non-targeted metabolomics approach with the objective of detecting potential biomarkers [ 36].
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The film thickness was determined by an optical profiler (WYKO NT 3000) via measuring a step profile at the interface of film-glass substrate.
Using this model, a temperature step profile was calculated based on the optimal D-criterion.
A simple approximation is used for the choice of the slope of a step profile.
We find that for this model the step profiles do reveal the fixed-point attractor.
We discuss the implications of these results for the interpretation of experimental step profiles.
By using the technique of calculus of variations, the optimization is performed over a class of step profiles.
Good agreement is found upon comparison with experimental data over several one-dimensional beach profiles, including uniform slope, bar and step profiles.
Also presented are three suboptimum solutions for special cases of 2D step profile, constant film thickness in the radial direction and constant film depth with quadrilateral shape.
Qualitatively, the whole oxidation process can be properly described by the sequential electrochemical oxidation of water, in such a way that the main features of the cyclic voltammogram and potential step profiles can be explained.
In the second experiment, we derived classification images for a uniform surface stimulus with "step" – profile (figure 2).
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