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This paper reports the plasma discharge analysis of a dielectric barrier discharge (DBD) source.
An electrical circuit model has been used for the discharge analysis of the DBD tube.
The electrochemical studies of the electroactive material, DIP were carried out using Cyclic Voltammetry (CV), Galvanostatic Charge – Discharge analysis (GCD) and Electrochemical Impedence Spectroscopy (EIS).
A discharge analysis is undertaken to determine the appropriate size of an osmotic power plant by studying the relationships of the flow extraction with the installed capacity, load factor and yearly generation of the power plant.
However, quantitative description of the aquifer structure such as effective porosity (neff) and water storage capacity by the discharge analysis is difficult because of the complex conduit/fracture system.
Based on hydrological data collected over ~ 60 years, an extreme stage-extreme discharge analysis and a specific-gauge analysis were performed to research the individual and combined effects of multiple engineering projects on a long-term time series of water stages in the middle Yangtze River.
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Equal-discharge analysis of these parameters illustrates the mechanisms of channel change driving flood magnification.
Subsequently the charge-discharge analysis exhibits the specific capacitance of 79 F g−1 at 1 mA cm−2.
The electrochemical performance of prepared electrode materials was evaluated using cyclic voltammetry, galvanostatic charge-discharge analysis and electrochemical impedance spectroscopy.
The MoS2/Mo electrodes delivered a specific capacitance of about 192.7 F/g from the galvanostatic charge-discharge analysis at a current density of 1 mA/cm2.
Equal-discharge analysis also can be used for analyzing time series of other parameters that co-vary strongly with discharge and that change systematically over time.
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