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The choice of sufficient approximation order is suggested.
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As the kinetics experiments indicate that biosorption is of pseudo second order, it is suggested that two types of reactive centers be predominantly responsible for biosorption.
A convenient implementation of the high-order fluxes is suggested, which guarantees improved computational efficiency over existing methods.
A different order of events is suggested by Spahn, Ramakrishnan and colleagues (Schuette et al, 2009).
A new explicit predictor multicorrector high-order accurate method is suggested for linear elastodynamics.
Also, implementing high-order Godunov schemes is suggested to improve the quality of computed results, coupling with the heat transfer equations and the models of fluid-rock interaction.
A set of conservative sixth order central differencing schemes is suggested for compressible flows with variable viscosity coefficient.
Then, a reweighted PAPA is suggested in order to reduce the computational complexity.
Standardization of various methodologies is suggested in order to obtain data suitable for inter-laboratory comparison.
Future research is suggested in order to validate the method in different types of organizations.
A multi-winding transformer design is suggested in order to reduce the volume and losses.
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