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EIS was employed to study the phenomena above.
A Riser Simulator was employed to study OCM.
Polarized light microscopy was employed to study their homogeneity.
Density functional theory (DFT) was employed to study electron distribution.
Structural equation modeling was employed to study cross-lagged associations.
Dynamic light scattering (DLS) was employed to study the stability of the supramicelles in 5 months.
Impedance spectroscopy was employed to study the origin of the resistance switching.
The PAL method was employed to study free-volume structure of As4S4/ZnS nanocomposites.
The BaTiO3 catalyst was employed to study the reaction optimization for the series of catalysts investigated.
A three-factor D-optimal design was employed to study the responses, after urea inclusion fractionation.
A three-electrode system was employed to study the electrochemical performances of composites.
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