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The relationships among metal ion concentration, electrical current density, and removal efficiency are also discussed.
The experimental design consisted of four factors (glycerol concentration, electrical conductivity of electrolyte, applied voltage and duration of process), each containing three levels.
In this work, the deposition conditions, such as flow rate, solution concentration, electrical potential, and distance between electrodes, are examined to find the optimal deposition conditions to create 3D self-assembly crystals.
Finally, a model consisting of 'Continuous Stirred Tank Reactors' (CSTR) cascade with multiple injections of atomic oxygen is proposed in order to explain the relationships between the reactor parameters (inlet flow, inlet NO concentration, electrical energy density and electrical gap) and the experimental results (outlet NOx concentration).
By using a full factorial and central composite design, it was possible to correlate the output parameters such as the Redox potential, temperature, voltage and pH with the input parameters (type of salt in the central compartment; maple juice concentration, electrical current intensity, and the mechanical stirring given by the Froude number).
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Kinetics of polymerisation were investigated for different initial monomer concentrations, acid concentrations, electrical currents, dielectric constants of the solvent and electrode materials.
The influence of titanium surface preparation, cathodic current density, copper sulphate and sulphuric acid concentrations, electrical charge density and stirring of the solution on the adhesion of the electrodeposits was studied using the Taguchi statistical method.
Numerical solution to the model gives concentration and electrical potential distributions in the porous medium at different times and gives as well the electrical current history.
A concentration of electrical activity at the eye of a storm is often a harbinger of destruction.
With the increase in lanthanide concentration, the electrical resistivity of synthesized nanomaterials decreased obviously (Figure 8a).
A reasonable relationship was found between formaldehyde concentration and electrical resistance response of the sensor.
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CEO of Professional Science Editing for Scientists @ prosciediting.com