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Possible reasons for these deviations are discussed.
The intrinsic mechanisms leading to these deviations are discussed.
Some of these deviations are errors which can result in harmful outcomes.
With the CWF however, these deviations are reduced to about 10% or lower.
These deviations are very low compared with the ideal gas equation whose deviations are above 100%.
These deviations are most probably due to artefacts occurring during the binarization procedure of the scans.
These deviations are believed to be caused by substantial migration of H+ and OH−.
The challenge is to ensure that these deviations are kept to a minimum or corrected by other components in real-time.
At 656 kg/m3, these deviations are −35%, 74%, 113% and 319% for helium, argon, krypton and xenon, respectively.
These deviations are strongly reduced when the pure water viscosity is replaced by the solution viscosity adjacent to the membrane.
These deviations are attributed to the axial heat conduction which directs portion of heat toward the entrance and reduces convective heat transfer in the fully developed region.
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