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The data expose a relation between the process conditions and the carbon content.
The correlation between the process conditions and the resulting microstructures are discussed.
Extensive simulation work leads to the quantitative relationships between the process conditions, volume ratio of the flange to can, and the size of the flange or can.
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The results showed that significant differences existed in the process conditions between the upstream and downstream fermentations.
Further, scaling relationships between an average particle size and the process conditions are derived for three flow configurations, which are useful for design and optimization of the hydrothermal process for nanoparticle production.
In order to be able to design granules with required macroscopic properties rationally, it is important to know the functional relationship between the granule composition and microstructure and the effective macroscopic properties as well as the relationship between the granulation process conditions and the resulting granule microstructure.
With the use of experimental result analysis and mathematical modelling, correlations between the cutting process conditions and process outputs are studied in detail.
Mathematical models have been formulated to develop a functional relationship between the processing conditions and the process quality characteristics.
Design of experiments is performed to generate informative data that reveal the relationship between process conditions and the final product quality at various times.
In order to investigate the correlation between process conditions and barrier performance, the carbon content of different aluminium oxide films, given in Table 3, was detected by energy-dispersive X-ray spectroscopy (EDX).
This flexibility enables the generation of experimental information on the relationship between process conditions and product quality for different model compound systems using one crystallizer.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com