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[" (2) Let "P(x)=(Q)/(ln^(4))" r be the ...

[" (2) Let "P(x)=(Q)/(ln^(4))" r be the charge density distribution for a "],[" solid sphere of radius "R" and total charge "Q" .For a point "%],[" inside the sphere at distance "r_(1)" firom the centre of the "],[" sphere,the magnitude of electric field is "Q],[[" (a) "Qr_(1)^(2)," (b) "(Q)/(4 pi epsilon_(0)r_(1)^(2))],[" (c) "(Q_(1)^(2))/(4 pi epsilon_(0)R^(4))," (d) "(Qr_(1)^(2))/(3 pi epsilon_(0)R^(4))]]

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Let P(r)=(Q)/(piR^4)r be the charge density distribution for a solid sphere of radius R and total charge Q. For a point 'p' inside the sphere at distance r_1 from the centre of the sphere, the magnitude of electric field is:

Let P(r)=(Q)/(piR^4)r be the charge density distribution for a solid sphere of radius R and total charge Q. For a point 'p' inside the sphere at distance r_1 from the centre of the sphere, the magnitude of electric field is:

Let P(r)=(Q)/(piR^4)r be the charge density distribution for a solid sphere of radius R and total charge Q. For a point 'p' inside the sphere at distance r_1 from the centre of the sphere, the magnitude of electric field is: