A non-conducting sphere of radius R = 5 cm has its center at the origin O of coordinate system as shown in Fig. Its has two spherical cavities of radius r = I cm, whose centers are at (0, 3 cm), (0. -3 cm), respectively, and solid material of the sphere has uniform positive charge density p = 1/л μСm-³. Calculate electric potential at point P (4 cm, 0). y Fig. P -X
A non-conducting sphere of radius R = 5 cm has its center at the origin O of coordinate system as shown in Fig. Its has two spherical cavities of radius r = I cm, whose centers are at (0, 3 cm), (0. -3 cm), respectively, and solid material of the sphere has uniform positive charge density p = 1/л μСm-³. Calculate electric potential at point P (4 cm, 0). y Fig. P -X
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
Transcribed Image Text:A non-conducting sphere of radius R = 5 cm has its center
at the origin O of coordinate system as shown in Fig.
Its has two spherical cavities of radius r = I cm, whose
centers are at (0, 3 cm), (0. -3 cm), respectively, and solid
material of the sphere has uniform positive charge density
p = 1/л μСm-³. Calculate electric potential at point P (4
cm, 0).
y
Fig.
P
-X
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