= 0 at infinity, what are the electric potential and electric field at the center C of the circle due to these electrons. Draw the figure

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(a) 12 electrons (of charge -e) are
equally spaced and fixed around a circle of radius R. Relative to
= 0 at infinity, what are the electric potential and electric field at
the center C of the circle due to these electrons. Draw the figure
this configurasion. (b) If the electrons are moved along the
circle until they are nonuniformly spaced over 120° arc as
shown in the given figure (b), What then is the potential at C?
How does the electric field at C change ( if at all) ? (c) Draw the
equipotential surfaces for a single positive charge. (d) Draw
the equipotential surfaces for two charges, one is positive & the
other is negative point charge separated by a distance d.
V
of
C
120°
(b)
Transcribed Image Text:(a) 12 electrons (of charge -e) are equally spaced and fixed around a circle of radius R. Relative to = 0 at infinity, what are the electric potential and electric field at the center C of the circle due to these electrons. Draw the figure this configurasion. (b) If the electrons are moved along the circle until they are nonuniformly spaced over 120° arc as shown in the given figure (b), What then is the potential at C? How does the electric field at C change ( if at all) ? (c) Draw the equipotential surfaces for a single positive charge. (d) Draw the equipotential surfaces for two charges, one is positive & the other is negative point charge separated by a distance d. V of C 120° (b)
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