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Mesh-independent solutions were achieved at mean cell volumes of 5 × 10−9 m3.
The adsorption activities of the samples towards the phenols from aqueous solutions were achieved including kinetic and equilibrium approaches with different nonlinear models for modeling.
The mathematical formulation was developed theoretically and the analytical solutions were achieved by using the orthogonal expansion technique with the eigenfunctions expanding in terms of an extended power series.
In some cases the optimal solutions were achieved while reducing up to 53% of the cost of the shoring system, in shorter construction time, and meeting all the usual requirements for the construction of this type of building.
For a cumulative α decay dose equal to 0.28 dpa, it was shown that non-defective fluorite solid solutions were achieved and therefore, that the fluorite structure is stable for the studied doses.
Insights into the nonlinear response of the DNA solutions were achieved by performing particle image velocimetry (PIV) at a wide range of imposed strain amplitudes and two angular frequencies.
Similar(51)
The trade-off solutions are achieved by multi-objective optimization.
Identification of near optimal solutions is achieved through a novel goal-directed fuzzy search approach.
Theoretical solutions are achieved by using the Bubnov-Galerkin procedure in solving differential equations.
Evaluation of complete solutions is achieved through cooperation, i.e., all subpopulations share a subset of their current partial solutions.
A set of optimal solutions is achieved and a final optimum point is then chosen using TOPSIS decision-making method.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com