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The stiffness and strength of the materials could be predicted in terms of the polyurethane contents, and the linear relationships could be established.
Starting from this expression, the solubilities could be predicted in terms of those in each of the two constituents and the properties of the mixed solvent.
Macroscopic gradient-enhanced inelastic behaviours may then be predicted in terms of the microscopic internal variables and their conjugate forces, and thus a micro macro bridging formulation is available for strain-gradient-characterised materials.
A simple expression in which the solubility could be predicted in terms of those in each of the two constituents and the molar volumes of the latter was also derived.
On the one hand, some of these economic theories are consistent with theories of evolutionary psychology that see preferences as determined largely genetically; as such, they hold that the reactions of markets can be predicted in terms of largely fixed human attributes.
The progressive surface subsidence owing to the mining sequence can be predicted in terms of monthly sequences.
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The force on the rotor is predicted in terms of semi-analytical frozen image model.
Then, the crater wear depth is predicted in terms of tool/work material properties and process information.
The volume of extracted material required to initiate the interaction and the location where it occurs are predicted in terms of the material's previously extracted volume, diffusion coefficient, density variations, and extraction rate.
The location and structure of the OSF-ring is predicted in terms of point defect dynamics near the melt/crystal interface, which results in an annular region with almost balanced point defect concentrations (centered at r≡RΔ=0), and in terms of a peak (centered at r≡RCV,max) in the residual vacancy concentration after cluster formation.
The scaling behavior for the size of spherical micelles is predicted, in terms of radius of gyration (R g,m)) and thickness of corona (Hcorona), as a function of solvent ionic strength (c(s)) and polyelectrolyte length (NA), which are R g,m) ∼ c(s)(-0.06 N(A)(0.54) and Hcorona ∼ c(s)(-0.11 N(A)(0.75).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com