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Molecular dynamics simulations were utilized to begin testing this hypothesis.
DPD simulations were utilized to investigate the structure of PE/PLLA-CNT composite.
The widely used Monte Carlo simulations were utilized to infer the convergence of the N-robot system under both Controllers 3e and 4e with connected interaction topology.
Monte Carlo MCNP4B computer simulations were utilized to estimate the associated radiation dose distribution for the following radioisotopes: 188Re, 186Re, 32P, 153Sm, 111In, 123I, and 99mTc.
Optimization methods along with finite element simulations were utilized to determine the optimum loading paths for closed-die and T-joint tube hydroforming processes.
The MD simulations were utilized to determine the relative importance of electrostatic and hydrophobic component in to the binding of inhibitors.
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The results of simulations are utilized to design and fabricate beam-line elements.
Flow simulations are utilized to off-line design the flow control system.
Finally, the test results and numerical simulations are utilized to investigate the failure mechanism of T-joints under impact load.
In this research, instrumented nanoindentation and crystal plasticity finite element simulations are utilized to investigate twin formation and propagation in pure Mg.
Results from numerical simulations are utilized to evaluate failure of beams under different limit states including flexure, shear, sectional instability and deflection.
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