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The reason for this is apparent from information in Fig. 2 which shows the actual second-phase sample target and auxiliary variable data values from two example simulations from that population.
More detailed results from two example simulations from the constant selection coefficient set (σ=0.1, U=1×10−7) are shown in Figure 2. In the first example (Fig. 2a d), the model marker frequencies are very close to those from the simulation (Fig. 2b).
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Figure 4 shows the distributions of avalanche size and duration from example simulations for the three different levels of external input investigated.
Results from example simulations are reported; the total number of crystals, the average crystal size, the standard deviation of the crystal size, and the crystal size density function are calculated.
Similarly here at optical frequencies, simulated and measured electromagnetic waves near metallic NPs irradiated by light often agree well; for example, simulation results from nanoscaled antennae which can effectively enhance light emission have been reported [38, 39].
For example, simulations results indicated increasing tip radius from 5 to 20 µm and flux increased from 6.56 × 10−6 to 7.02 × 10−6 mol/(m2 s) for constant diffusion coefficient.
These points are demonstrated with an example simulation of centerline melting resultant from fission heating for fuel performance analysis.
A set of examples of Monte Carlo simulations from the PBN example in Figure 2 is shown in Figure 4.
As an example, analyses of simulations from scenario g with 1000 traits and 1000 individuals took about 4 hr to generate 12,000 posterior samples on a laptop computer with a 4-core 2.4-GHz Intel Core i7, while analyses of scenario a with 100 traits took ∼45 min. Parallel computing techniques may speed up analyses in cases of very large (e.g., 10,000+) numbers of traits.
We will discuss the major features of HELIOS-CR, and present example results from simulations.
For example, evidence from simulations suggests that biologically realistic dynamics can be produced by scale-free network topologies with canalizing Boolean functions.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com