The Electric Potential is given throughout space by: V(s,Theta) = bs/R *cos (Theta) ,sR b = positive constant s = radial coordinate from the z axis Theta = angle around the z axis : x= s*cos(theta) ,...


The Electric Potential is given throughout<br>space by:<br>V(s,Theta) = bs/R *cos (Theta) ,s<R and bR/s<br>*cos(Theta) , s>R<br>b = positive constant<br>s = radial coordinate from the z axis<br>Theta = angle around the z axis : x=<br>s*cos(theta) , y = s* sin (Theta)<br>For s=R<br>1)Find the electric field both in and out of<br>the cylinder<br>2)Find the charge density inside and<br>outside the cylinder<br>3)Find the surface charge density<br>

Extracted text: The Electric Potential is given throughout space by: V(s,Theta) = bs/R *cos (Theta) ,sR b = positive constant s = radial coordinate from the z axis Theta = angle around the z axis : x= s*cos(theta) , y = s* sin (Theta) For s=R 1)Find the electric field both in and out of the cylinder 2)Find the charge density inside and outside the cylinder 3)Find the surface charge density

Jun 10, 2022
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