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This numerical simulation resulted in the following conclusions:.
The simulation resulted in a global surface temperature warming of 3°C compared to present-day.
Each simulation resulted in a columnar microstructure and growth statistics including grain diameter and area, RMS surface roughness and surface texture were collected at each time step.
The simulation resulted in total consumed power, heat exchanger area and total profit by 2745.33 kW, 3285.58 m2 and 1266.64 million$, respectively.
Selecting a small inertial constant for the simulation resulted in a large frequency deviation of G/T and S/T, with frequency stabilized for a short time.
Including silicon anisotropy in thermomechanical FE simulation resulted in 5% lower stresses and 9% higher deflections than those obtained for isotropic properties of silicon.
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EB uses Bayesian modelling and simulation, resulting in a more robust estimate for small numbers [ 15].
Structural snapshots were saved every 16,667 steps during the simulation, resulting in 3,000 structural snapshots.
Mutant complex F1174L remained distinguished throughout the simulation resulting in maximum backbone RMSD of ~0.41 nm.
In BT474, the simulations resulted in active ERK1/2 states, resisting drug treatment (Table 1).
Similarly, in silico knockout simulations resulted in little or no perturbation of the mouse metabolic network.
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