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The inter-cellular medium is simulated by a Monte-Carlo simulation on a 2d square lattice.
The elastic medium is simulated as Winkler and Pasternak foundation.
The surrounding elastic medium is simulated with nonlinear orthotropic visco-Pasternak foundation.
The soil medium is simulated by spring constant of Winkler medium.
The interaction between the SWCNT and its surrounding elastic medium is simulated using the Pasternak foundation model.
The premixed flame propagation of a methane/air mixture in a ceramic porous medium is simulated through an unsteady, one-dimensional model.
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The background of the medium is simulating the breast with µa = 0.1 cm−1.
Using the Monte Carlo ray tracing method, the pumping process and absorption profile in active medium are simulated.
The cylinder and the surrounding medium are simulated with nonlinear finite elements that account for both geometric and material nonlinearities.
A 2D fracture-matrix medium was simulated and effective permeability computed using a finite element based method.
The transient heating patterns of each solid food and carrier medium were simulated using computational fluid dynamics (CFD) codes with user defined functions (UDFs) for electric field equations.
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