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Homework Statement
consider 2 uniform static electric charge densities +/-\rho located in the volumes defined by the 2 intercepting spheres of radius a. Charges are located in free space and \rho\delta is a constant c.
The center of the spheres are separated by distance \delta
The upper sphere has charge density +\rho and lower has -\rho
Show that E(P) in the region belonging to both spheres is constant and given by -\hat{z}c/3\epsilon0
Homework Equations
The Attempt at a Solution
Charge Q= \rho(4/3pi a3)
I tried for +ve charged sphere E(P) = (Q/(4pi\epsilon)R3)[ 3 R.d/R2 R-d]
I was able to get
E(P) = \rhoa3/3epsilonR3 [ 3 R \delta/R2 R-\delta]
I tried to use superposition and calculate E field due to each sphere and add up. But didn't get anywhere.
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