In Fig-1, there are two infinite planes A and B, parallel to the YZ plane. Their surface charge densities are σA = −47nC/m2 and σB = 28nC/m2. The separation between the planes A and B is d = 10m.  a) Now, we place a conducting spherical shell of radius R=0.1d  in between the planes. The spherical shell conductor carries a surface charge density σ = −25μC/m2. The coordinates of the center(d/2,d/2,0), P1 (4d/5, d/2, 0) and P2 (d/2, d/4, 0). Find the net electric field at points P1 and P2 in unit vector notation.

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In Fig-1, there are two infinite planes A and B, parallel to the YZ plane. Their surface charge densities are σA = −47nC/mand σB = 28nC/m2. The separation between the planes A and B is d = 10m

a) Now, we place a conducting spherical shell of radius R=0.1d  in between the planes. The spherical shell conductor carries a surface charge density σ = −25μC/m2. The coordinates of the center(d/2,d/2,0), P1 (4d/5, d/2, 0) and P2 (d/2, d/4, 0). Find the net electric field at points P1 and P2 in unit vector notation. 

Fig-1
I.
IL
IIL
B
IN
Transcribed Image Text:Fig-1 I. IL IIL B IN
Y
Fig-2
•P
Transcribed Image Text:Y Fig-2 •P
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