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The solution suggests that, as the eccentricity increases, the total quantity of material transferred to or from the drop decreases (for prolate spheroids) and increases (for oblate spheroids).
The solution suggests that the parameters controlling the plume length are: (i) the size of the contaminant source, (ii) electron acceptor to electron donor ratio, (iii) transverse dispersivities and (iv) the ratio between degradation rate constant and velocity (λ/v).
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We focus on the solution suggested in [2].
The solution suggested for this problem is changing the whole time-dependent variables into time-averaged components and fluctuating component.
The solution suggested at the end of this article will consider the highest operational risk at automatic LXs with warning devices and half barriers.
In the second step, based on the solution suggested in the first step, the minimum number of VCs for each link is finally determined.
The solution suggested in the paper implies that the posterior distribution of the mean shifts towards larger values when the sample size n increases.
In general, the solution suggested is not to attempt to create a neutral language that can accurately capture reality in itself, a goal they would take to be nonsense.
If the termination criteria are met, the solution suggested by the hybrid approach is accepted; otherwise, the results are used to revise the problem to be resolved by the analytical model in the third iteration, and so on.
The solution suggested by Gelman [10] based on earlier ideas [17], [18], [19], [26] is straight-forward: we can simply calculate variance components for all variables (and interactions).
The solution suggested by (2) is to correct for the early accumulation of deleterious mutations.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com