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As shown in Fig. 3, due to aggregation of positive charges on dielectric covering the grounded electrode, electric potential between two electrodes is changed.
All conditions including the length of the wire feeding, the position of the electrode, electric power, etc. had been programmed beforehand.
Influence of specific surface area (SDFT), total pore volume (Vtot) and other porosity characteristics on the electrochemical parameters and power density of two electrode electric double layer capacitors based on 1 M 3-ethyl-methylammonium tetrafluoroborate (Et3MeNBF4) solution in acetonitrile and on 1-ethyl-3-methylimidazolium tetrafluoroborate (EtMeImBF4) has been analysed.
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In order to maximise the collection efficiency of these devices, a better knowledge of the free-ion charge density and the variation of the inter-electrode electric field is needed.
This important observation will be critical in future NTIRE device designs, where intervention time could be reduced by increasing trans-electrode electric potential.
We tested various IWG system designs with different electrode diameters, electric configurations, and operational conditions.
The answers indicated that electrode material, electric current, and powder concentration were the most significant parameters those influenced the MRR.
Carbon nanomaterials are used as an electrode of electric double layer capacitors (EDLCs).
In order to predict the size of the cementation region, a series of electro-osmotic chemical tests was conducted using different electrode sizes, electric voltages, and electrode spacing.
Both working and counter electrodes are made of carbon inks, whereas pseudo-reference electrode and electric contacts are made of silver.
Under the same conditions (electrode size, electric field, and concentration of CNT suspension), the same amount of CNTs gather in the same area of the meniscus.
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