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AC electrical properties were investigated using the super-linear power law and activation energies were calculated for all compositions.
AC electrical study of the sample was thoroughly studied and conductivity of the sample is found to be about 10−2 S cm−1 above 400 °C with an activation energy of 0.22 eV.
AC electrical resistance was measured at room temperature for film samples in the transverse direction with a two probe INSTEK LCR meter (LCR 819, Taiwan) operating in AC frequency range from 0.4 to 10 kHz.
The thermo-mechanical and electrical properties of BaTiO3 epoxy composites were investigated using complex permittivity, electric modulus and ac electrical conductivity.
DC-electric field is only one point in the wide range of AC electrical conduction that varies from few micro Hz's up to more than giga Hz's does.
All the experiments were performed using classical AC electrical method.
Both dc and ac electrical properties were measured to understand the detail charge transport mechanism.
Based on circuit theory, we derived analytical descriptions of the AC electrical coupling in networks of isopotential cells.
The ac electrical response of the consolidated ZnO Ag nanocomposites was studied using impedance spectroscopy.
Analysis of the AC electrical data explores the presence of Maxewell Wagner polarization in the system.
The ac electrical response of the consolidated Al2O3-Ag nanocomposite samples was studied using impedance spectroscopy.
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