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Then the possibilities of the experimental approach were used to perform some statistically planned experiments.
A factorial design and a central composite design approach were used for method optimisation.
A one-dimension flooded homogeneous model and a microscopic approach were used.
A stress strain field intensity approach and a novel energy-based approach were used to predict the fatigue lives.
Finally, the parameters obtained from the combined approach were used in a lumped kinetic model to simulate the chromatography runs.
Both the concept of representative micro- and meso-unit-cells and the viscoelastic Eshelby/Mori–Tanaka approach were used in the analyses.
Multiple regression analysis and an information-theoretic model comparison approach were used to identify field and landscape parameters that account for variation in damage.
Factorial design, standard deviation, effect of variables at 95% confidence interval and Arrhenius kinetics approach were used to correlate the corrosion parameter and corrosion rate.
Previously reported pentapeptidic BACE1 inhibitors, designed using a substrate-based approach, were used as lead compounds for the further design of non-peptidic BACE1 inhibitors.
Anaerobic digestion processes and the conductive electron transfer approach were used to describe the bioenergy production processes in a microbial fuel cell (MFC), respectively.
Two nonlinear models with different complexities and one linear model with a concentrated plasticity approach were used to evaluate a reinforced concrete frame.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com