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The only previous estimate gave log Kgreig ≈ 2.6 based on the supposition that aS0 = 1.0 in the solutions under study [63].
Due to concurrence between ions in solutions under study, the strong correlation of aggregate size and electrolyte concentration was not observed.
In this study, batch process was applied to estimate the adsorption process and the experiments were performed at room temperature (25 ± 1 °C) in 250-mL stoppered conical flask consisting of 50 mL solutions under study.
By clustering the conformational space of the tripeptide, we show that the molecular dynamics trajectories of this molecule form only a few major conformation clusters for each of the sixteen salt solutions under study.
Therefore, by applying Equation (2) in terms of the fugacity of the gas near the surface of the material of interest, the activity depends only on the inherent properties of the material itself, independent of any potential gradients that may exist in space outside of the solutions under study.
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The name "temperature jump" is usually reserved for the relaxation technique in which a stepwise temperature perturbation is achieved by passing a large electric current through the solution under study and thus heating it almost instantaneously; another method is to apply ultrasonic radiation to the system.
In other words, it was possible to foresee the emergence of certain technical solutions just as the natural following steps of some existing evolutionary trends, and a later investigation found out that such solutions were actually under study by research groups around the world.
Stock solutions of the analytes under study, positive and negative control solutions, as well as the mobile phase were prepared using methanol and acetonitrile Lichrosolv®, along with ortho-phosphoric acid, monobasic and dibasic potassium phosphate (Merck, Darmstadt, Germany), and submicron-filtered water (Fisher Scientific).
In each well, the mixture consisted of 25 μL of 15 mM ATCI in water, 125 μL of 3 mM DTNB in buffer C, 50 μL of buffer B, and 25 μL of 10 mM solution of each compound under study (dissolved in a solution of 10% methanol in buffer A).
In addition, we consider the concentration properties of blow-up solutions for the system under study.
The most effective corrosion protection in brine solutions among the coatings under study was demonstrated by the nanocomposite superhydrophobic coating.
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