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The responses of the flies to each compound were studied in a two-choice wind tunnel.
The enhancing sodium ion insertion and deinsertion characteristics of Li in layered structure compound were studied.
Carbon pastes, using an electrolyte as the binder and containing an insoluble electroactive compound, were studied by voltammetric techniques.
The effects of annealing temperature and time on the grain growth of this compound were studied and the grain growth exponent n and the apparent activation energy Q were estimated to be 2.7 and 381 ± 30 kJ/mol, respectively.
The electrochemical properties of the LiV3O8 compound were studied by galvanostatic charge discharge, and the highest capacity of 274 mAh g−1 was obtained for the LiV3O8 compound calcined at 370 °C in the range of 1.8 4.0 V.
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Further, the electrochemistry property of the compound is studied.
In the present work, the electrochemical properties of this Ni-overstoichiometric compound are studied in detail.
The non-isothermal kinetics for the compound was studied by Kissinger's and Ozawa's methods.
The chemical and plasmatic hydrolysis kinetics of the compound was studied by HPLC.
The photochemical behavior of this compound was studied with a view to obtaining polymeric networks.
A polyfluorinated compound was studied as a material for the specific protection of calcarenite.
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