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If Is the Current Density and Is a Vector

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If If   is the current density and   is a vector element of area then the integral   over an area represents: A) the electric flux through the area B) the average current density at the position of the area C) the resistance of the area D) the resistivity of the area E) the current through the area is the current density and If   is the current density and   is a vector element of area then the integral   over an area represents: A) the electric flux through the area B) the average current density at the position of the area C) the resistance of the area D) the resistivity of the area E) the current through the area is a vector element of area then the integral If   is the current density and   is a vector element of area then the integral   over an area represents: A) the electric flux through the area B) the average current density at the position of the area C) the resistance of the area D) the resistivity of the area E) the current through the area over an area represents:


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