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The effect of the mass capture on the phase and the group velocities of the dispersive transverse waves is demonstrated using the simple model that consists of a rotatinf beam impacted transversely by a rigid mass.
When type I error can be reasonably controlled under these conditions, applied researchers might prefer using the simple model (i.e., LR) for its ease of implementation and interpretation.
The mean values calculated for the various measurements (details below) were all analysed using the simple model: {text{Metric }} = { exp }left( {{text{Treatment }} + {text{ Region}}} right), + {text{ error}}.
At higher values (λ f larger than 6000 W m−1 °C−1), the numerical solution matches the results obtained using the simple model of [12, 13], under the same operating conditions and with the same time step (0.1 s).
The data in Figure 8 were generated using the simple model of coevolution described previously [15].
Hence, the impact of treatment is under-estimated using the simple model.
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We have previously described the TM using the simplest model of anisotropy, the transversely isotropic model, in which there is a single family of parallel fibers embedded in a matrix whose elastic properties are the same in any direction perpendicular to the fibers [16] (Fig. 1).
By using the simpler model described in the Technical Appendix part B, we performed a sensitivity analysis (Appendix Figure) on the effect of city size and travel rates on epidemic spread.
We also observed a similar difference in τHC between the autosomes and X chromosome when using the simplest model, which considers a uniform evolutionary rate across the lineage and across loci (supplementary table S1, Supplementary Material online).
Branch lengths of the inferred ML trees, measured by number of expected nucleotide changes per codon, were estimated by using the simplest model M0 and then fixed in all further ML analyses to shorten the computational time.
We therefore used the simple model with a symmetric rate of character change and without gamma as the base model.
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CEO of Professional Science Editing for Scientists @ prosciediting.com