++++ ++ +t ++ +++ L ++ +++++ ++ +++ R ++ + The cylindrical shell of length L = 1m and radius R = 1m is placed on the x-axis. Its its principal axis is coincident with the x-axis and its left surface...


++++<br>++ +t<br>++<br>+++<br>L<br>++<br>+++++<br>++<br>+++<br>R<br>++<br>+<br>The cylindrical shell of length L = 1m and radius R = 1m is placed on the x-axis.<br>Its its principal axis is coincident with the x-axis and its left surface is L away from<br>the origin. The charge Q distributed on the surface of the shell is not homogeneous<br>and changes according to the relation o = 2x. Where x is the distance from the<br>origin along the x-axis. Due to charge Q on the cylindrical shell find the electric<br>potential at the origin in terms of ɛ,.<br>a)는 (V5- v2)<br>b) - (V17 – V5)<br>c) (V5 – vz)<br>d)르 (2VZ-V5)<br>(V13 – V10)<br>80<br>+i + +<br>+ + + ! + +<br>+ + + ! + +<br>+ + + + + +<br>+ + + i + +<br>+ + + 1 + +<br>+ + + ! + +<br>

Extracted text: ++++ ++ +t ++ +++ L ++ +++++ ++ +++ R ++ + The cylindrical shell of length L = 1m and radius R = 1m is placed on the x-axis. Its its principal axis is coincident with the x-axis and its left surface is L away from the origin. The charge Q distributed on the surface of the shell is not homogeneous and changes according to the relation o = 2x. Where x is the distance from the origin along the x-axis. Due to charge Q on the cylindrical shell find the electric potential at the origin in terms of ɛ,. a)는 (V5- v2) b) - (V17 – V5) c) (V5 – vz) d)르 (2VZ-V5) (V13 – V10) 80 +i + + + + + ! + + + + + ! + + + + + + + + + + + i + + + + + 1 + + + + + ! + +

Jun 11, 2022
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