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Finite-element modelling is then used to back-calculate the original stress field.
Progress in numerical modelling is then considered and, finally, the prospects for future research in the area are discussed.
The modelling is then either with the equilibrium or dispersion model, whereas in the latter the dispersion coefficient accounts for all hydrodynamic non-idealities.
A list of the most recent applications of these techniques in various fields (from chemical kinetics to biological modelling) is then presented highlighting the key role of model-based DOE in the process engineering area.
The FEA modelling is then used to perform analysis on typical failure modes, moment-deflection relations, stress developments, material interactions and the load transferring paths of the composite truss systems.
Kinetic modelling is then conducted using the mechanisms of Anderlohr et al. (2009) and Contino et al. (2013) to simulate the measured ignition delays, as well as the species profiles in a jet stirred reactor (JSR) reported in the literature.
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Each model is then wound a precise number of times.
The model is then linearized.
The model is then rerun.
The model is then analyzed and controlled.
This model is then experimentally verified.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com