Looking at the concentric spherical shells with r = a, r = b, and r = c have charges 4 C, -6 C, and 10 C, respectively, placed on their surfaces. If the regions separating them are filled with different dielectrics, a. find the potential everywhere b. the potential difference between 2 shells at r = a and r = c c. the electrostatic energy store in the smallest shell in the region a
Looking at the concentric spherical shells with r = a, r = b, and r = c have charges 4 C, -6 C, and 10 C, respectively, placed on their surfaces. If the regions separating them are filled with different dielectrics, a. find the potential everywhere b. the potential difference between 2 shells at r = a and r = c c. the electrostatic energy store in the smallest shell in the region a
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
Transcribed Image Text:Looking at the concentric spherical shells
with r = a, r= b, and r = c have charges 4 C,
-6 C, and 10 C, respectively, placed on their
surfaces. If the regions separating them are
filled with different dielectrics,
a. find the potential everywhere
b. the potential difference between 2 shells
at r = a andr= c
c. the electrostatic energy store in the
smallest shell in the region a <r< b, region
b<r<c, and outside the largest shell
note: r = a is the darkest circle in the middle
%3D
E = E0
E = Se,
E =
FIGURE 5.20 For Problem 5.23.
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