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It uses outputs and profiling float simulations derived from a primitive equation model of the North Atlantic Ocean.
Simulations derived from these contour plots were tested against various building conditions with excellent agreement observed throughout.
Molecular Fragment Dynamics (MFD) is a new method for mesoscopic molecular modelling computer simulations derived from Dissipative Particle Dynamics (DPD) [1].
DOA method is efficient in reducing the number of simulations derived from the combination of the aforementioned variables, and in identifying the optimal PSS configuration.
In parallel, we perform computer simulations derived from first principles, implementing a dynamic Kirchhoff rod model that includes the frictional interaction between the rod and constraint.
A series of computer simulations derived from a real-world communication headset model are used to compare the method developed with a traditional passive attenuation headset and a commercial active noise reduction design.
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The experimental results derived from this research enabled characterisation of the thermal performance of T1, relative to other heat pipes, and validation of the developed computer simulation model derived from the authors' previous research.
They support this claim with a computational simulation, derived from universally conserved proteins, which produces similar sequences lacking phylogenetic structure.
Using Monte Carlo simulation derived from empirical observations of power curves in the European starling (Sturnus vulgaris), we demonstrate how the underlying QTL for power curves can be detected from molecular markers and how the QTL detected affect the most appropriate flight speeds used to design an optimal migration strategy.
As pointed out, part of the advantage of computer simulation derives from the fact that huge numbers of calculations can be carried out without requiring direct observation by the experimenter/simulator.
In this paper we present a new class of coarse-grained stochastic processes and Monte Carlo simulations, derived directly from microscopic lattice systems and describing mesoscopic length scales.
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