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Dissolutions in OH− medium are characterized by the formation of a halo of solid residues made of Fe(OH 3 that surrounds an unreacted core, while K+ and SO4 2− are preferentially released from the particle into the solution.
The material properties of a micropolar medium are characterized by three fourth-order tensors, C, B and D, in which C relates the stress to the strain, D connects the couple stress to the curvature tensor, and B is the coupling tensor, linking the stress to the curvature tensor or the couple stress to the strain tensor.
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Then this medium was characterized by particle size analyzer.
The size distribution of hydrophilic FA-PMIDA-CoO NPs in aqueous medium was characterized by DLS.
It is assumed that the medium is characterized by random velocity fluctuations and inelasticity.
The heterogeneous medium was characterized by a = 800 m and ε = 8%%.
The size distribution of cobalt oxide nanoparticles in aqueous medium was characterized by DLS.
An electromagnetic medium is characterized by its relative permittivity ε with ε ∈ ℂ.
In addition, the state of dispersion of the nanoparticles in the bioassay medium was characterized.
The degraded polymers were characterized for percentage mass loss and molecular weight and the degradation medium was characterized for acid released in non-buffered solutions.
Enzyme activities of the extracts, previously obtained from a liquid culture medium, were characterized in terms of laccase and peroxidase for ligninolytic activity.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com