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The adsorptive behaviour under various process conditions was evaluated using equilibrium loading isotherms.
Improvement in diluted bitumen dewatering performance with improved mixing conditions was evaluated using a factorial design of experiments.
The ability of nitric oxide (NO -releasing xerogels to reduce adhesioNO -releasingnas aeruginosa under flowing conditions was evaluated using a parallel plate flow chamber.
The electrocatalytic activity of N-CNTs towards ORR in alkaline conditions was evaluated using rotating ring disc electrode voltammetry which showed a positive correlation between nitrogen content and ORR activities.
The model performance in predicting the catchment conditions was evaluated using the statistical analysis parameters such as coefficient of determination (R2), Nash Sutcliffe efficient (NSE), r‐factor and p-factor (Arnold et al. 2012) and graphical analysis.
Data were presented as the mean±S.D. Comparison of two experimental conditions was evaluated using the unpaired Student's t-test.
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The fault detection performances in various flight conditions are evaluated using the parametric simulation.
Optimal control policy at different conditions is evaluated using the best-known Pontryagin's maximum principle.
Adequate contact conditions were evaluated using a simple analytical model of stress field distribution.
Mechanisms responsible for metal retention were investigated and optimal sorption conditions were evaluated using the RSM approach.
Indoor thermal conditions were evaluated using the extended Predicted Mean Vote (PMV) and Standard Effective Temperature (SET*) comfort models.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com