3) Consider a perfectly conducting spherical shell of radius a=10 cm in free space with permittivity ( ɛ0=10°/36n F/m). Electric field expression around the sphere centered at the origin of coordinate system is given as E = 2/R² ar V/m, where R is the distance from the center of sphere. a) Obtain the potential distribution for Ra, with respect to infinity reference. b) Find the total charge on sphere. %3D
3) Consider a perfectly conducting spherical shell of radius a=10 cm in free space with permittivity ( ɛ0=10°/36n F/m). Electric field expression around the sphere centered at the origin of coordinate system is given as E = 2/R² ar V/m, where R is the distance from the center of sphere. a) Obtain the potential distribution for Ra, with respect to infinity reference. b) Find the total charge on sphere. %3D
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![12:08
You
All Media
11.08.2021 12:06
3) Consider a perfectly conducting spherical shell of radius a=10 cm in
free space with permittivity ( ɛ0=10/36n F/m). Electric field
expression around the sphere centered at the origin of coordinate
R
system is given as E = 2/R2 aR V/m, where R is the distance from
the center of sphere.
a) Obtain the potential distribution for R<a, R=a and R>a, with respect to
infinity reference.
b) Find the total charge on sphere.
a](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff5ba0da5-6723-4ddc-a18f-a6694250b2c8%2Ff4842f39-d154-4608-8bcd-d15bc654386b%2Fzfxfr5a_processed.png&w=3840&q=75)
Transcribed Image Text:12:08
You
All Media
11.08.2021 12:06
3) Consider a perfectly conducting spherical shell of radius a=10 cm in
free space with permittivity ( ɛ0=10/36n F/m). Electric field
expression around the sphere centered at the origin of coordinate
R
system is given as E = 2/R2 aR V/m, where R is the distance from
the center of sphere.
a) Obtain the potential distribution for R<a, R=a and R>a, with respect to
infinity reference.
b) Find the total charge on sphere.
a
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