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The method of the numerical simulation has been explained by Katsumata (2011) in detail.
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The results of numerical simulations have been explained on the basis of analogy between hydrodynamic cavitation and acoustic cavitation.
Details of the simulations have been explained previously.
Based on the above assertions, we have used SD = 1.2 to define the ceiling at which all of the hereditary variance has been explained in our simulation work.
This variation has been explained on the basis of results of simulation of radial motion of cavitation bubble.
The design of the experiment, with account taken of the factors which are important in simulation of noise, environment and community, have been explained in detail in Part 1. Tests each lasting 30 min consisted of two consecutive parts under continuous and similar noise conditions, enabling the subjects to perform two different activities, namely, reading and listening without being interrupted.
These experimental results have been explained by MD simulation.
Key experimental results on decarburization have been explained within the framework of our simulations.
This simulation has been performed 10,000 times and the results are summarised here.
Finally, numerical simulations have been shown.
An application scenario connecting different dynamic simulation tools has been used to explain the integration issues and to guide the development work in Cheops.
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