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Considering this illustrative example and assuming periodic body forces, heat and mass sources acting on the medium, the solution performed by the first order homogenization approach is compared with the numerical results obtained by the heterogeneous model.
The main loop of the DASA method, visualized in Figure 1, consists of an iterative improvement of a temporary-best solution, performed by searching (constructing) appropriate offset paths in the differential graph.
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The sensitivity analyses are preceded by an accurate study on the robustness of solutions, performed by assuming different widths of the temporal basis adopted for the optimization.
Electrodeposition from micellar solutions performed by cyclic voltammetry (CV) displayed an enhanced rate as compared to surfactant concentrations lower than the critical micelle concentration (cmc) or in surfactant-free monomer solutions.
Table 3 gives the mean number of ODE solutions performed by each algorithm to reach the 'good' and 'good-enough' solutions; as expected, the synchronous and asynchronous piES algorithms both perform roughly the same number of ODE solutions, and the relationship between number of ODE solutions for the piES and pLSA algorithms follows the same pattern as the time taken.
The search for the next solution is performed by evaluating the different polynomial Q z), starting from the current solution [23, 24].
Electrohydrodynamic (EHD) co-casting Eu-containing shell solution (Solution I) and Fe-containing core solution (Solution II) was performed by using the coaxial needle.
The time advance on the unsteady solution is performed by the full implicit dual time stepping method with Newton type LU-SGS subiteration, where the solutions of pseudo steady computation are as the initial fields of the unsteady flow computation.
The degradation of methylene blue solution is performed by TiO2 fluoropolymer fiber nanocomposites under UV irradiation.
Photocatalytic degradation of DOM from TWW and synthetic solution was performed by catalyst Fe2O3 NPs (5 mg/L) in the presence of solar irradiation (up to 40 h).
The solution is performed by either a direct or Latin Hypercube Monte Carlo simulation or by generating a response surface and then doing Monte Carlo simulations using this response surface.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com