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Moreover, it is shown how this model may select optimal degrees-of-freedom for simulations such that some dof can then be disregarded and the others are assumed to be necessary and sufficient.
These conditions significantly constrain the choice of parameter ranges used in our simulations, such that the parameter subspace which gives results obeying all constraints is rather narrow.
We choose 20,000 replicate simulations such that coverage in the type-1 error experiments is based off of approximately 1000 rejections of a true null hypothesis.
Consider a sequence of 11 simulations, such that for each simulation the recombination rate between each marker is incremented by 0.03 units (starting at a recombination rate of 0.01).
The concentrations with an average number N of molecules in the focus were chosen in the simulations such that they were optimal for the two measurement types: N=0.1 for correlation analyses and N=0.02 for single-molecule experiments.
The latter parameter is one-fourth of the corresponding v in the previous LK simulations such that the average selective advantages produced in the fitness landscape are not much larger than the mutation rate at the lower bound of 10−6; otherwise the coupling between haplotypes is too weak and no diversity will be present at equilibrium.
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The visualisation model was developed through integrating AutoCAD2000 with the database of the simulation model such that the simulated layouts can be studied in greater details and validated in a simpler manner.
The second perspective was the calibration of behavioural parameters of the PARAMICS simulation model, such that they imitated the local commuters' travel behaviour.
We propose a co-simulation such that the electromagnetic part is simulated in the frequency domain while the thermal part remains in time domain.
The optimal mold geometry can be determined by numerical simulation such that the produced composite component matches the target design.
For each upper bound L ̂ with 0 ≤ ( L ̂ − L ) ≤ 5, we choose P = L ̂ and M = 9P for simulation such that the transmission efficiency is maintained at 90%.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com