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This work presents a review of the progress in the development of the numerical methods for sample paths simulation of stochastic differential equations. The error of approximation, the order of the convergence, the stability improvement for Euler methods (explicit, implicit and composite schemes) are studied theoretically as well as numerically. MathLab programs support all the illustrations.
The paper presents the results of numerical modeling of concrete rheological manifestations under compression, the properties of which are described by a linear model of a viscoelastic material. The computer model of concrete with viscoelastic properties selected for studies identified by experimental research results of concrete samples. Computer simulation was carried out in a software environment...
Progress in the development of simulation tools makes it possible to conduct experiments with blood flow containing a large number of solid objects, typically red blood cells (RBC). In our work [2] we designed and verified a set of statistical methods allowing to either confirm or deny the compliance of the behavior of such simulations and real experiments. Rotation (angular speed) of RBC during their...
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