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The current i is defined to have a positive value in the direction of flow of positive charges.
From Ohm's law (E = IR) it is apparent that the electric current (I) is inversely proportional to the resistance (R), where E represents potential difference.
The current (I) was measured while different DC potentials (V) were applied to these gold electrodes.
The input current I is equal to 0.4 and σ ext = 0.27.
The "swinging" component of the inductor current "I" is completely determined by the applied voltseconds and the inductance.
The electrode separation was 10 mm, arc time varied up to 165 s, and current (I) was 100 225 A.
Viscosity, flow rate (Q), and current (I) were found to play significant roles in the control of morphology during electrospinning.
Moreover, the solution is globally bounded in H α ( D ) if the externally applied current I is globally bounded.
Current (I) is used to measure the rate of flow of electrical charge and can be thought of in terms of water current.
Generally, the modulated ionic current (I) is smaller than the basic ionic current (I 0) if the concentration of the electrolyte solution is not too low.
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