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The relative size of fluctuations in extension decreases as sigma x/x approximately equal to 0.42 exp (-4.9 x/L).
Convergence rates as well as the size of fluctuations in the computed effective coefficients are compared for the different formulations.
The expectation of the product of fitnesses over multiple generations is therefore larger than the product of the single-generation expected fitness, by an amount that increases with the size of fluctuations, favoring the species with the higher variance.
The marginal impact that different stochastic processes have on the overall size of fluctuations in a population is noted in [32], where protein noise is shown to be only weakly dependent on burst size and waiting time statistics, and on the number of steps in the degradation pathway.
Return rates decline as the size of fluctuations increases (r3214 = -0.36, p < 0.001) from a value around one when fluctuations are small.
A deterministic process was chosen as this quantity is likely to be very high, and hence the size of fluctuations will be relatively small.
Similar(52)
dW is a Wiener process generating fluctuations in the polarization, and σ controls the size of those fluctuations.
Hence, for Θ<0.5, the ssLNA correctly predicts the fluctuations to be super-Poissonian, i.e., the size of the fluctuations is larger than those of a Poissonian with the same mean number of substrate molecules, whereas the hLNA incorrectly predicts the opposite case of sub-Poissonian fluctuations.
The resulting model comprises the standard chemical Langevin formulation, in which the size of the fluctuations associated with each transition is state dependent.
Based on the non-classical nucleation theory, the size of critical fluctuations, the critical free energy change and the nucleation rate are estimated for the specific case of the precipitation of metastable δ′ ordered phase from a disordered matrix in the AlLi alloy.
The magnitude and standard deviation of Γ serve as indicators of the amount of coupling present and the size of the fluctuations.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com