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As expected, the optimum capture efficiency (about 85%) occurred when we used a low cell density (3.2 × 105 Cells mL−1).
The results of this study indicated an optimum capture rate lower than the one obtained by looking into account the economies of the capture plant alone.
The force plates and electromyographic unit are programmed to capture at a rate of 3000 Hz (3000 frames per second), for optimum capture speed whilst utilising all equipment simultaneously.
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The paper shows that the design of the optimum carbon capture plant will depend not only on the specific capture process but also on the conditions of the power station and the importance in optimising the whole process at the same time.
This paper pursues to establish the optimum CO2 capture technology for each plant layout, if possible.
It is competitive with the optimum CO2 capture cost of the amine-only case.
It also provides an understanding of how the optimum CO2 capture cost changes with these fluctuations.
For all solvents, the optimum CO2 capture cost shows an inversely proportional relationship to the CO2 concentration in flue gas.
The potential candidates for remediation uses are selected with regard to their sorption capacity and distribution coefficient towards target cations, and also the pH window for an optimum cation capture.
The results show that changes in the CO2 concentration in flue gas have the highest impact on the optimum CO2 capture cost of an existing plant when compared with the remaining parameters.
A linear relationship between fitness and flux, with unit slope, and a cost to flux above the optimum is captured in the following piecewise fitness function: (3) where w L (F) is the fitness of a genotype with relative flux F through the pathway.
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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