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The effects of lateral S-wave velocity and attenuation heterogeneities on the ground-motion simulations were investigated.
Algorithms to generate atomistic models of cross-linked phenolic resins suitable for molecular dynamics simulations were investigated.
Finite element simulations were investigated to explore the effect of altering connected and non-connected electrodes on the diffusional behaviour of the arrays with 500 nm separations.
Various effective masses of hole inversion layers used in technology computer-aided design (TCAD) simulations were investigated, such as the quantization effective mass, mz, the density of states effective mass, mDOS, and the conductivity mass, mσ.
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Simulations are investigated on OFDMA signals, all the results are averaged over 1000 Monte-Carlo runs assume a perfect synchronization.
Further, the effect of lateral V s and Q s heterogeneities on the ground-motion simulations is investigated.
The use of renormalization to improve the accuracy of the simulations is investigated and discussed.
The influence of the numerical parameters used in the simulations was investigated.
At the end, cutting simulations are investigated for testing the new model.
Using LEGS, the difference between D8 and GD8 simulations is investigated with focus on both evolution rate and resulting topography.
In this paper, three multiscale methods for coupling of mesoscopic (compartment-based) and microscopic (molecular-based) stochastic reaction diffusion simulations are investigated.
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