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The instantaneous thermochemical state of the reactive mixture is described by a flamelet model and a detailed chemical mechanism.
A mild and efficient method for the conversion of fatty acid methyl esters from lard into ascorbyl esters via lipase-catalyzed transesterification in co-solvent mixture is described.
In the paper the use of the thermal wave method for measuring flow velocity of air and carbon dioxide mixture is described.
Following this observation, the fatigue behavior of grouted mixture is described through a new analytical model, which explicitly introduces the dependence of the fatigue life on the stiffness modulus.
The behavior of the mixture is described through a single mass density and a velocity field, with an unusual constraint that relates the divergence of the velocity to derivatives of the density.
The impact of the surfactant species on the dynamics of spinodal decomposition are tested and quantitative measurement of the permeability of a body centred cubic (BCC) model porous medium for a simple binary mixture is described.
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In the proposed mechanism, all the movements of chemical mixture are described by the characteristic waves of hyperbolic system.
Each reaction mixture was described previously [38].
A summary of dose response descriptors for all tested chemicals, based on the pooled outcome of studies conducted before the mixture experiment, is available in Supplemental Material, Tables 1 3 (doi:10.1289/ehp.0900689.S1); responses seen with individual chemicals tested in parallel with the mixture are described in Supplemental Material, Table 4.
Thermodynamic approach to heat integration of processes involving separation of multicomponent mixtures is described.
Furthermore, a dependency of aggregate size on solvent composition in polymer/tetrahydrofuran/water mixtures is described.
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