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For the purpose of overcoming the limitations detected in spectrophotometric and PCR DNA yield evaluations, the performance of the extraction protocols during the optimization processes was evaluated using qPCR.
Quantity of physical and electrochemical processes was evaluated and linked to the state of specimen providing valuable supplementary data.
The model ability to reproduce the underlying processes was evaluated using data collected in Europe between 1993 and 2013.
The distribution and migration of residual oil in different flooding processes was evaluated by quantitatively analyzing the change of the relaxation time.
The efficiency of the degradation processes was evaluated by measuring both the reactant conversion and the decrease of the total organic carbon (TOC) of the solution.
The sum of individual effects of coupling the photoelectrocatalytic and photoelectro-Fenton processes was evaluated as a function of the decolorization and mineralization of Orange G solutions.
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At the same time, several tertiary treatment processes were evaluated.
The adsorption processes were evaluated by Langmuir and Freundlich isotherms.
Both processes were evaluated regarding the achieved delignification and the purity of the extracted lignins.
Concave surfaces produced by boring and honing processes were evaluated by optical interferometry method.
A porous skeleton was created (Fig. 13), and the absorption capacity, hydrophobicity, and recyclability of the processes were evaluated.
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CEO of Professional Science Editing for Scientists @ prosciediting.com