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Relying upon the performed studies, the stationary distribution of a semi-Markov process was determined.
The energy of activation for the cathodic redox (Ag+ → Ag) process was determined.
The abrasion resistance of samples after the varnishing process was determined in accordance with TS 4755.
The concentration of the metal ions after adsorption process was determined by inductively coupled plasma optical emission spectroscopy (ICP-OES).
In addition, using the lofting small casting test, the rationality and stability of the shell casting process was determined.
The efficiency of the process was determined from the analysis of the following parameters: cyanides, formates and TOC content.
The generation of Joule heating during the process was determined by using a contact-free thermal camera system.
The activation energy of the process was determined by using alloy composition and inclusion size to control the transformation temperature.
The enantiomeric excess (ee) of the chiral electrodeposition process was determined by X-ray pole figure analysis.
The type of nucleation and crystal growth process was determined as a function of polymer electrolyte composition.
In addition the amount of water trapped in the mixture after the mixing process was determined using thermogravimetric analysis.
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