In a region, potential is a function of x only, i.e. potential does not change in the y- or z-direction. Consider three equally spaced equipotential surfaces with V=50 V for x = 0.0 m, V = 100 V for x = 1.0 m, V = 150 V for x = 2.0 m. Calculate the magnitude of electric field in the units of V/m on the surface at x = 1 m.
In a region, potential is a function of x only, i.e. potential does not change in the y- or z-direction. Consider three equally spaced equipotential surfaces with V=50 V for x = 0.0 m, V = 100 V for x = 1.0 m, V = 150 V for x = 2.0 m. Calculate the magnitude of electric field in the units of V/m on the surface at x = 1 m.
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
Transcribed Image Text:In a region, potential is a function of x only, i.e. potential does not change
in the y- or z-direction. Consider three equally spaced equipotential
surfaces with V=50 V for x = 0.0 m, V = 100 V for x = 1.0 m, V = 150 V
for x = 2.0 m. Calculate the magnitude of electric field in the units of V/m
on the surface at x = 1 m.
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