A positive 40nC point charge is placed inside the conducting spherical shell, 10cm thick, with the outside radius or 1m and the total positive net charge of 10nC. a) Calculate the total charge distributed on the inner surface of the spherical shell. b) Calculate the charge density on the outer surface of the spherical shell c) Calculate the electric field at point P₁, 95cm from the spherical shell centre, and at point P2, 105cm from the spherical shell centre. d) Calculate the electric flux through a spherical Gaussian surface of radius 2m surrounding the spherical shell.

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A positive 40nC point charge is placed inside the conducting spherical shell, 10cm thick, with the
outside radius or 1m and the total positive net charge of 10nC.
a) Calculate the total charge distributed on the inner surface of the spherical shell.
b) Calculate the charge density on the outer surface of the spherical shell
c) Calculate the electric field at point P₁, 95cm from the spherical shell centre, and at point P2,
105cm from the spherical shell centre.
d) Calculate the electric flux through a spherical Gaussian surface of radius 2m surrounding the
spherical shell.
Transcribed Image Text:A positive 40nC point charge is placed inside the conducting spherical shell, 10cm thick, with the outside radius or 1m and the total positive net charge of 10nC. a) Calculate the total charge distributed on the inner surface of the spherical shell. b) Calculate the charge density on the outer surface of the spherical shell c) Calculate the electric field at point P₁, 95cm from the spherical shell centre, and at point P2, 105cm from the spherical shell centre. d) Calculate the electric flux through a spherical Gaussian surface of radius 2m surrounding the spherical shell.
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