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A simple mathematical model was developed for computing the concentration of metal ions in the eluent in a counter-current multi-stage desorption system and validated using thorium desorption kinetic data.
The permeate flux was predicted by the osmotic pressure model, using the membrane hydraulic resistance and the solution viscosity inside the membrane pores, and computing the concentration polarization with recourse to a mass-transfer correlation specific for the plate-and-frame module used.
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The method of computing the concentrations and segregation intensities from reflectance measurements is presented.
We first compute the concentration for a stationary impulse point source of unit mass to obtain Green's function.
Hence, while one can compute the concentration of a molecule at a given space around a receiver, the mechanism of coupling the molecular information into the receiver biological circuit will definitely define how much information it actually transferred.
One potential advantage of using the LFS to construct the explanatory variable is that one can compute the concentration of immigrants across different segments of the population (which would not be possible from nonsurvey administrative registries).
When applied to compute the concentration profile and the effectiveness factor in a porous catalyst, the conventional shooting method requires that the concentration at the catalyst center y(0) must be greater than zero to yield a nontrivial solution.
Linear regression analysis was used to compute the concentration that reduced absorbance by 50% (IC50).
In our implementation of RNAcofold we therefore follow their approach and explicitly compute the concentration dependencies of the equilibrium ensemble in a mixture of two partially hybridizing RNA species.
We describe below how to compute the concentrations from partition functions, and why it is difficult to correctly predict those equilibrium concentrations.
Eqn (1) was used to compute the concentrations of the ions. 1 where c i is the concentration of species i, D i is the diffusion coefficient, and R i is the generation or consumption of ions due to electrochemical reactions (R el), the neutralization reaction between H+ and OH+ (R neut), and the reaction between the conjugate acid base pair in the buffer HPO4 2– and H2PO4 – (R buf).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com