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If companies choose to limit complexity we suggest optimizing configuration rules, reducing variants or both.
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R5.1 We suggest optimizing hydration using crystalloids to prevent contrast-induced nephropathy (CIN), ideally before contrast media infusion and to continue this therapy within 6 12 h after this infusion.
This of course suggests optimizing the reconstruction parameters for each contrast, but this would not be possible for clinical data.
To further reduce the complexity of the proposed solution, the paper suggests optimizing the construction, the update, and the dimension of the graph.
A priori bond valences (called theoretical by Brown, 1987 ▸; and ideal by Brown, 2013 ▸) are obtained by solution of the network equations of a crystal structure (see Brown, 2002 ▸). Brown (2002 ▸) suggests optimizing the bond-valence parameters on the basis of minimization of the squared difference between observed and a priori bond valences.
Here, we suggest to optimize an approximation of the predicted variance covariance matrix of the parameter estimates, which can be computed as the solution of a Riccati differential equation.
We suggest approaches to optimizing the conditions for observing the process.
From this work, we recognize the main physical mechanism responsible for the potential enhancements after the use of surfactants, thus we suggest criteria to optimize the performance of surfactant additives for stimulating the low permeability gas/oil reservoirs.
In a nutshell, we suggest how one can optimize this technique for producing such FLG with precisely controlled N with minimal cost and instrumental facility with an unbelievably high production-rate.
We suggest that each process optimizes the transport of different cargo classes endowed with specific physical properties.
In this article, we suggest a design rule to optimize the bendability of flexible nanoelectronics through neutral axis (NA) engineering.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com