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From the simulations we found out the following results.
In our simulations, we found M = 3 is a good choice.
As well as determining the IAI distributions through simulations we found it is possible to derive the theoretical distribution.
Via extensive simulations, we found that EDR can achieve its best performance in most cases when k=10.
In our simulations we found that the population regulation effect of diversification can be positive, negative or negligible.
From several simulations we found that, for the specific problem at hand, by using either Equation (8) or (9) almost identical spectra can be obtained.
In simulations we found that the position sensor accuracy has the largest influence on the total filter accuracy in absence of orientation errors.
When using the method to perform simulations, we found that the most suitable solar image geometry has an elliptical shape and area of 0.0065 m2 on average.
Through simulations we found that both overall and kappa accuracies decrease markedly with increasing error distance, varying greatly across distances relevant to practical application.
In comparing the experimental results with WARP-3D computer simulations, we found excellent agreement in the emittance diagrams and in the beam current rise-time.
From our simulations we found that the relative drag coefficient of bubbles in three-phase flows seems to increase with increasing solids volume fraction.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com