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A general method is described for calculating potential, current and heat-power distributions in electrode foils.
Oxygen concentration, potential, current density and temperature distribution in interconnect and SOFC cathode have been calculated.
The interrelated parameters measured included potential, current, concentration (translated from conductivity measurements) and pH vs. time.
The effects of potential, current density, time, temperature and stirring on coating weight were studied.
The system has electrical potential, current, conductivity, pH, temperature, water-level and flow sensors for automated monitoring.
These include electrode potential, current, angular electrode rotation speed and surface concentrations of Zn(OH 2−4 and OH− ions.
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It punishes potential current-affairs viewers unable to record two or three programmes at once.
For action potential recordings, ruptured-patch whole-cell voltage-clamp experiments were used to measure membrane potential (current-clamp configuration).
The steady-state potential-current-time behaviour has been investigated.
The performance of the electrode was evaluated from the measurement of cell potential-current density plots.
We use a potential-current formulation (A, φ,Ĵ) with a Coulomb gauge.
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