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Furthermore, 2-dimensional Hückel problems are formulated and solved for isolated σ- and π-bonds.
Instances of supply and demand are defined as an optimization problem and solved for each timestep.
Some original examples were generated and solved for the literature as well.
The basic equations of motion for a transversely isotropic microstretch elastic solid are formulated and solved for plane wave solutions.
For more analysis, random problems in different sizes were generated and solved for five and ten facilities.
Using FLUENTTM code, an axisymmetric model of the core was developed and solved for multiphase flows during the hydrate dissociation.
A new analytical model is presented and solved for gas diffusion in fuel cell porous media based on fractal geometry.
The problem of switched static output feedback tracking with output constraints (SSOFTOC) is proposed and solved for the first time.
The discrete random fiber networks representing membranes are converted to resistor networks and solved for current flow and ionic conductivity.
Using multi-objective programming (MOP) techniques, the three NDEA models are formulated and solved for the cloud service industry.
A basic unidirectional flow model is developed in general and solved for typical experimental parameters using perturbation methods.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com