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Dependence of the noise spectra on flow rate, electrode dimensions and particle content of the liquid is reported.
Material removal rate, electrode wear rate and surface roughness have been selected as response parameters.
To successfully apply this device, high-capacity and rate electrode materials for Li storage should be developed.
The input process parameters are polarity, peak current, pulse duration, powder supply voltage, rotational speed of the electrode, injection flushing pressure and response variables are metal removal rate, electrode wear rate and surface roughness.
Yilmaz and Okka (2010) drilled aerospace alloy (Inconel 718 and Ti 6Al 4 V) by electrical discharge machining to investigate the effect of electrode type and material on material removal rate, electrode wear and microhardness.
Loudness balance functions were measured for stimuli that differed in terms of stimulation rate, electrode configuration and electrode location; a 2-alternative, forced-choice adaptive procedure (double-staircase) was used.
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In the present paper we report on high rate electrodes made from a conventional battery cathode material, vanadium pentoxide.
The composite proves to be a promising candidate as a high-rate electrode material for lithium ion batteries.
The work in this article sheds light on the in-depth understanding of the improved sodium-storage behavior with the advancing VI group anions and provides an effective strategy for the design of high-rate electrode materials for SIBs.
Silicon chips were placed on the bottom electrodes and the electrostatically captured particles were counted as a function of flow rates, electrode positions, bias voltages, and capture times by epifluorescent images and scanning electron micrographs (SEMs).
This result provides a promising solution for designing high-capacitive and high-rate electrodes for high-performance energy storage devices.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com