For a single, isolated point charge carrying a charge of q = 5.22 × 10-¹¹ C, one equipotential surface consists of a sphere of radius r₁ = 0.0259 m centered on the point charge as shown in the figure. What is the potential on this surface? potential: V Now consider an additional equipotential surface that is separated by 6.09 V from the previously mentioned surface. How far from the point charge should this surface be? This surface must also meet the condition of being farther from the point charge than the original equipotential surface. distance from point charge: m 9

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter20: Electric Potential And Capacitance
Section20.2: Potential Diff Erence In A Uniform Electric Field
Problem 20.2QQ: The labeled points in Figure 20.4 are on a series of equipotential surfaces associated with an...
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For a single, isolated point charge carrying a charge of
q = 5.22 × 10-¹¹ C, one equipotential surface consists of a
sphere of radius r₁ = 0.0259 m centered on the point charge
as shown in the figure. What is the potential on this surface?
potential:
V
Now consider an additional equipotential surface that is
separated by 6.09 V from the previously mentioned surface.
How far from the point charge should this surface be? This
surface must also meet the condition of being farther from the
point charge than the original equipotential surface.
distance from point charge:
m
1
9
1
Transcribed Image Text:For a single, isolated point charge carrying a charge of q = 5.22 × 10-¹¹ C, one equipotential surface consists of a sphere of radius r₁ = 0.0259 m centered on the point charge as shown in the figure. What is the potential on this surface? potential: V Now consider an additional equipotential surface that is separated by 6.09 V from the previously mentioned surface. How far from the point charge should this surface be? This surface must also meet the condition of being farther from the point charge than the original equipotential surface. distance from point charge: m 1 9 1
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