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[" ABCD is a square of side "2" m.Charge...

[" ABCD is a square of side "2" m.Charge of "5nC,+10n" Cand "-5nC" are placed at corner "A,B" and "],[" of intersection of the diagonals."]

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ABCD is a square of side 2m. Charges of 5nC, + 10nC and -5nC are placed at corners A,B and C respectively .What is the workdone in transferring a charge of 5nC from 'D' to the point of intersection of the diagonals ?

ABCD is a square of side 1m. Charges of +3nC, -5nC and +3nC are placed at the comers A, B and C respectively. Calculate the work done in transferring a charge of 12mu c from D to the point of intersection of the diagonals?

ABCD is a square of side 0.2 m. Charges of 2xx10^-9, 4xx10^-9, 8 xx 10^-9 coulomb are placed at the corners. A,B and C respectively. Calculate the work required to transfer a charge of 2xx10^-9 coulomb from corner D to the centre of the square.

ABCD is a square of side 20 cm positive charges of +2 * 10^-9 C. +4 * 10^-9 C and + 8 * 10^-9 C are placed at the corners A, B and C respectively. Calculate the work required to be done to transfer a unit positive charge from D to the point of intersection of the diagonals.

Four point charges +2nC,-3nC,+4nC,-5nC are placed at the vertices A,B,C,D of a square ABCD of side 0.2 m respectively. Calculate the electric field intensity at a point of intersection of the diagonals.

Four point charges q, -q, 2q and - 2q are placed at the comers of a square of side 5 cm. If q= 5 * 10^-6 C , find the magnitude of the electric field at the intersection of the diagonals.

Four identical spheres each of mass m are placed at the corner of square of side 2 m. Taking the point of intersection of the diagonals as the orgin the coordinates of the centre of mass are ?

charges of 20nC each are placed at the corners A and B of a square ABCD of side sqrt(8)cm and charges of -10nC at the corners C and D. find the potential at the centre of the square.

Three point charges +10nC,-15nC and +20nC are placed at the corners A,B and C respectively of a square, ABCD of side 0.1m. Calculate the amount of work done to transfer -100nC from the point 'D' to the point 'O'.