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These results were adjusted to mathematical models of equivalent electrical circuits to extract data of membrane ionic conductivity.
The results are expressed in the form of two kinds of equivalent electrical circuits, connecting the plane modes in the inlet and outlet.
The in situ EIS results during lithium-ion intercalation and deintercalation processes are discussed on the basis of equivalent electrical circuit model and analyzed by non linear least square fit method.
Based on the variations of equivalent electrical permittivity with different phase concentrations in two-phase or multiphase flow, the capacitance sensor has been successfully used for the phase concentration measurement due to its advantages of non-invasion, low-cost, high reliability and non-radiation.
These systems are: AgNO3TlNO3Cd(NO3)2H2O and AgNO3TlNO3Ca(NO3) 2 H2O, where the mole fractions in the anhydrous melts are: X AgNO3) = 0.464, X(TlNO3) = 0.436 and X(M NO3 2) = 0.100 with M = Cd or Ca. The sets of equivalent electrical conductivity data obtained from these measurements are discussed in terms of the free energy, enthalpy and entropy of activation for this transport process.
Figure 6a shows the Nyquist plots which were fitted by the classical model of equivalent electrical circuit (the inset at the bottom-right corner).
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Such algorithm is capable of estimating the parameters of the equivalent electrical circuit, such as stator and rotor resistances and leakage inductances, the magnetizing inductance, and also mechanical parameters, such as moment of inertia and the friction coefficient.
The influence of hydrogen absorption reaction (HAR) proceeding through Hads with kinetic or with diffusion control on the dependence of the elements R1, R2, C2 of the equivalent electrical circuit for hydrogen evolution reaction (HER) on the electrode potential E has been considered.
An analog model of the respiratory system of a conscious, freely respiring animal is presented in terms of an equivalent electrical circuit.
This has led many researchers to analyze their data in terms of simple equivalent electrical circuits, and hence to ignore the great power of EIS for deriving mechanistic and kinetic information for processes that occur at electrochemical interfaces.
The correlation of extracted equivalent electrical lumped components with the visual biofilm parameters and their dependence on the attachment and growth phases is confirmed.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com