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Our approach is evaluated through quantitative simulations in various environments.
A multi-phase field model for quantitative simulations of polycrystalline solidification of binary alloys is introduced.
For those initiating events, the quantitative simulations using transient mass and energy calculation and computational fluid dynamics were performed.
Available models and reliable quantitative simulations are of significant value to predict the spreading rate of desertification and provide an optimal design for sand prevention.
Many foresight researchers believe that quantitative simulations have a very restricted contribution in futures studies due to their simplicity and lack of creativity.
This paper presents a "triple-jump" method to realize quantitative simulations to the formation and evolution of an aeolian dune field from an arbitrary initial configuration.
Similar(35)
Innovations are thus required in the rapid, quantitative simulation of self-assembly on cellular scales.
This work provides a quantitative simulation model toward the rational design of high efficient membranes.
The more specific the insight, the more it relies upon detailed quantitative simulation of processes in the model, and the less robust the resulting insight.
Shortcomings of qualitative simulation and of quantitative simulation motivate combining them to do simulations exhibiting strengths of both.
However, lack of biochemical data and complexity of biological environment complicate rational design of such circuits based on quantitative simulation.
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