2. Given two line charges -qe and qe at (r, y) = (-d/2,0) and (r, y) = (d/2, 0) respectivel a. Find the electric potential for any point (r, y). b. Based on your answer in (a) derive the electric field.
2. Given two line charges -qe and qe at (r, y) = (-d/2,0) and (r, y) = (d/2, 0) respectivel a. Find the electric potential for any point (r, y). b. Based on your answer in (a) derive the electric field.
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![2. Given two line charges -qe and qe at (r, y) = (-d/2,0) and (r, y) = (d/2,0) respectivel
a. Find the electric potential for any point (r, y).
b. Based on your answer in (a) derive the electric field.
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Transcribed Image Text:2. Given two line charges -qe and qe at (r, y) = (-d/2,0) and (r, y) = (d/2,0) respectivel
a. Find the electric potential for any point (r, y).
b. Based on your answer in (a) derive the electric field.
%3D
![3. A neutral spherical conductor of radius has a concentric cavity of radius, 6 < a ar
centred at the origin. Charge Q is then transferred to the sphere by contact.
a. Determine the electric field everywhere.
b. Determine the potential everywhere.
c. What electrostatic boundary conditions are exhibited here?
d. What is the capacitance of the sphere?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F2a107bf9-d01b-4cf6-a5fc-4ec5dff0935f%2F055faf75-374a-49f8-815d-9339e145a81f%2F2bpvhi5_processed.jpeg&w=3840&q=75)
Transcribed Image Text:3. A neutral spherical conductor of radius has a concentric cavity of radius, 6 < a ar
centred at the origin. Charge Q is then transferred to the sphere by contact.
a. Determine the electric field everywhere.
b. Determine the potential everywhere.
c. What electrostatic boundary conditions are exhibited here?
d. What is the capacitance of the sphere?
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