Electrostatic Potential and Capacitance: NEET 2023

Medium· Potential due to a Point Charge and Electric Dipole (Potential Due to Dipole at Longitudinal or End-on Position)· +4 / −1
An electric dipole is placed as shown in the figure. *Figure (described):* Charges −q-q and +q+q lie on a horizontal line, each 3 cm3\ \mathrm{cm} from the midpoint OO (−q-q on the left, +q+q on the right). The point PP lies on the same line (axis of the dipole), on the side of +q+q, at a distance of 5 cm5\ \mathrm{cm} from OO. The electric potential (in 102 V10^2\ \mathrm{V}) at point PP due to the dipole is (ε0\varepsilon_0 = permittivity of free space and 14πε0=K\dfrac{1}{4\pi\varepsilon_0} = K):
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