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Using a two-dimensional advection-diffusion equation, model solutions that can minimize the shoreline salinity levels without building a longer sea outfall are presented.
As new mud piles up and vegetation takes hold, we reverse land loss and model solutions that can be applied at large and small scales across the Louisiana coast and other coastal areas fighting rising seas.
The assumed co-oxidation mechanism has been mimicked by spiking model solutions that contained β-carotene and linoleic acid with different LOX isoforms.
The acceptance criteria were arbitrary values chosen to define a number of possible model solutions that can be used to characterize the variability of model solutions given the uncertainty in measured tracer concentrations.
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In view of this inherent limitation of models, solutions that are nearly optimal, i.e. deviating less than a predefined percentage from the optimal value of the quantified objective functions, can constitute interesting alternatives for stakeholders.
We also show that our model produces solutions that are less conservative than those generated by common robustness measures.
Through this workflow, a single CAD model generates solutions that are energy efficient and feasibly fabricated using digital techniques.
The bioclimatic representation model identified solutions that meet biodiversity representation goals and substantially improve bioclimatic representation at minimal additional cost in terms of total land selected for a conservation portfolio.
In [10], the authors have shown that the model permits solutions that are almost surely positive, and a theorem on exponential stability in mean square is proved under the condition frac{beta}{mu+gamma} + frac{{ ( {1 + eta} ){sigma^{2}}}}{2} lefrac{1}{{1 + eta}}.
Deliberative democracy, without intending to totally challenge, on the one hand, "[the] aggregation as a decision rule" (Chambers 2012: 52), and without necessarily intending, on the other, to replace the existing institutions of democracy (Steiner et al. 2004), tries to compete with representative models, seeking solutions that guarantee higher levels of legitimacy to the said regime.
Computational results taken from two well known instance sets show that, with only a small increase in total time traveled, the model BCARP produces solutions that are more attractive to implement in practice than those produced by the MCARP model.
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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