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Different twin morphologies were simulated.
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For water-based suspension droplets of monodisperse silica particles, the effects of these parameters on granule morphology were simulated and the results were compared with the experimental data.
Furthermore, the particle morphology was simulated via a theoretical model based on the minimum interfacial energy of the system.
Afterwards, tensile tests on a series of steel reinforcement artificially made with the above three types of corrosion morphologies, which were simulated through mechanically induced cross-sectional losses, were conducted with the aim of quantifying the relationship between the ductility of the corroded reinforcement and the corrosion degree and morphology.
In total, 3125 virtual cultivars representing existing genetic variability for phenology, morphology and photosynthesis were simulated.
These read sets were simulated.
Systems were simulated for 5 ns each.
Spatial coordinates were simulated using Gaussian distributions.
Here also nine channels were simulated.
For all scenarios, 10 replicates were simulated.
In each replicate, 800 individuals were simulated.
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