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The physicochemical properties related to the salinity of water can be appreciated by the measurements of the following parameters: chloride concentration, electric conductivity, and total dissolved solids.
Biochemical parameters including urea concentration, electric conductivity (EC), pH, and optical density at 600 nm (OD600) of the solution at different time intervals were measured.
The influence of EPD parameters including Bioglass® concentration, electric voltage and deposition time on deposition yield was studied by an orthogonal Taguchi array of L18 type.
A Box Behnken design (BBD) with three independent variables, which were concentration, electric field intensity and pulse frequency was used to establish the regression equation of second-order response surface.
Therefore, a Box-Behnken design (BBD) with three independent variables including concentration, electric field intensity and pulse frequency was used to establish the regression equation of second-order response surface.
The architecture has been explored in terms of various device electrostatic parameters such as potential, energy band profile, electron and hole concentration, electric field variation and band to band generation rate (GBTB) near the tunneling junction where the Dielectric Pocket (DP) has been introduced.
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The other parameters (initial polymer concentration, solution density, electric potential, perturbation frequency, and solvent vapor pressure) have moderate effects on the jet radius.
The bay-like area has concentration of electric current, resulting in the larger electric field on land.
Apart from the concentration and electric conductivity of particles and fluids, the effective electrical conductivity of nanofluids exhibits a complex dependence on the electrical double layer interactions [40, 41], ionic concentrations, and other physicochemical properties which is not effectively captured by the Maxwell's model.
The results show not only that the ER properties are enhanced by increasing the particle concentration and electric field strength, but also the cellulose-based ER fluids exhibit viscoelastic behavior under an applied electric field due to the chain formation induced by electric polarization between particles.
With the change of the doping concentration, the electric field in the multiplication layer changes obviously.
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CEO of Professional Science Editing for Scientists @ prosciediting.com