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Different melt-drawing speeds were evaluated in order to obtain an optimal microfiber dimension for the scaffold.
Trajectories of sensitive modes due to controller gain variations were evaluated in order to determine the stability boundaries.
Mucus and blood were evaluated in order to develop a non-destructive tool to detect the pathogen.
FT-IR absorption spectra were evaluated in order to determine protein, lipid, carbohydrate and silicate contents of the algae.
The physico-chemical properties of the scaffolds were evaluated in order to assess its suitability for tissue engineering application.
Several factors affecting the adsorption capacity were evaluated in order to improve the adsorption of the mycotoxin by bacteria.
The electrospun Fum-F/PAN nanocomposite nanofibers were evaluated in order to remove lead from aqueous solution.
Different deposition techniques, such as, screen printing, spray painting and drop casting were evaluated in order to optimize the resistance variation related to the piezoresistive effect.
The influence of stirring speed and venting rate on the drug loading and the average pore size were evaluated in order to optimize the impregnation process.
The binding interactions of two other analogs were evaluated in order to unravel the structural features that contribute to specific DNA recognition.
Preoperative and operative parameters were evaluated in order to identify the patients at risk for prolonged ventilation postoperatively in coronary artery bypass graft (CABG) patients.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com