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Mechanisms, thermodynamic and transport data are given in Chemkin format.
Device design, fabrication, and low temperature (T=0.3 K) transport data are reported.
Column transport data are presented for a nonionic surfactant mixture, and the results are discussed in terms of mixed sorption behavior.
These novel alternative "experiments" have the advantages that thermodynamic, structural and other transport data are simultaneously forthcoming and instrumental artifacts eliminated.
Transport data are affected by the nature of the interacting solvent molecule rather than its size and also by the structural variations of the elastomers blended with NR.
Meanwhile, density functional theory and the ionic transport data are used to compare the different approaches for assessing the lattice dynamics.
Similar(53)
Flame simulations with two sets of transport data were compared.
Both hydrodynamic and transport data were compared to best available correlations.
Global mass transport data were obtained by monitoring the (first order) concentration decay of Ag(I).
The transport data were fitted to a diffusion model and the fitted diffusivity was compared to diffusivity predicted from a model based on hydrogel mesh size.
The derived expressions have a general validity and may be applied to any electrolyte system for which a complete set of mass and charge transport data is available.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com