Fos Consider a circular wire Carrying a und form charge radius R and venter 01 density Az oq 50 dq de a us placed on the axis (Oz) at. A point M us placed distance & from the center of the disk O. By exploiting Invariances and Symmetries! a) Calculate the electrostatic field E (M). Plut E(z) b) Deduce the electrostatic potential V (M). We take √(z) = 0 for z → 'de M de TH
Fos Consider a circular wire Carrying a und form charge radius R and venter 01 density Az oq 50 dq de a us placed on the axis (Oz) at. A point M us placed distance & from the center of the disk O. By exploiting Invariances and Symmetries! a) Calculate the electrostatic field E (M). Plut E(z) b) Deduce the electrostatic potential V (M). We take √(z) = 0 for z → 'de M de TH
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![Fos
Consider a circular wire
Carrying
a
und form charge radius R and venter 01
density Az oq 50
dq
de
a
us placed on the axis (Oz) at.
A point M us placed
distance & from the center of the disk O.
By exploiting Invariances and Symmetries!
a) Calculate the electrostatic field E (M). Plut E(z)
b) Deduce the electrostatic potential V (M). We take
√(z) = 0 for z
→
'de
M
de
TH](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F63e1cfc5-d743-4910-a579-2d48ed6c9d1a%2F181abc05-65ab-4095-9e51-ae89a2f80181%2Fq4c3bth_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Fos
Consider a circular wire
Carrying
a
und form charge radius R and venter 01
density Az oq 50
dq
de
a
us placed on the axis (Oz) at.
A point M us placed
distance & from the center of the disk O.
By exploiting Invariances and Symmetries!
a) Calculate the electrostatic field E (M). Plut E(z)
b) Deduce the electrostatic potential V (M). We take
√(z) = 0 for z
→
'de
M
de
TH
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