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The selected key variables were voltage, distance between electrodes and the organic load of the effluent.
The experiment revealed significant effects of voltage, distance (gap) between electrodes, configuration of discharge electrode, air cross-flow and the characteristics of material surface on mass transfer.
The chosen solution parameters were polymer grade, viscosity of solution, salt content and solvent grade and process parameters, voltage, distance, nozzle size and feeding pressure of solution.
In this regard, concentration, flow rate, voltage, distance, and speed of collector were used as input parameter and diameter of fibers was considered as output parameter.
In this regard, concentration, flow rate, voltage, distance, and speed of collector were used as input parameters and average diameter of the fibers was considered as output parameter.
To develop of GMDH and ANN models, concentration, flow rate, voltage, distance, and speed of collector were used as input parameter and diameter of fibers was considered as output parameter.
Similar(51)
DCE-rich domains with dimensions ranging from 0.5 to 2 μm were observed with the increase of DCE, revealed by atomic force microscopy (AFM) phase image and voltage-distance curve.
The levitation net force (thrust) has been calculated for different applied voltages, distances between the electrodes and shapes of the ground electrode.
The analysis revealed that concentration, voltage and distance are the significant parameters.
Manipulation of the voltage, collection distance, flow rate, and solution viscosity impacts the resulting fiber diameter.
Nevertheless, the field strength is reduced with respect to the quotient of electrode voltage and distance for any electrode shape.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com