Both fields point in the same direction (from + to -). E = 2 × kq/r² = 2 × 9×10⁹ × 2×10⁻⁶ / (0.05)² = 14.4 × 10⁶ N/C
NEET UG 2026 — Physics Electromagnetism
Two point charges +2μC and -2μC are placed 10 cm apart. The electric field at the midpoint is:
Verified 30 May 2026.
0 N/C
7.2 × 10⁶ N/C
14.4 × 10⁶ N/C
28.8 × 10⁶ N/C
Sign in to track your attempts and accuracy.
Sign in to keep a private note on this question. Nothing you write is ever public.
The current passing through the battery in the given circuit, is : 
A parallel plate capacitor made of circular plates is being charged such that the surface charge density on its plates is increasing at a constant rate with time. The magnetic field arising due to displacement current is :
Two identical charged conducting spheres $A$ and $B$ have their centres separated by a certain distance. Charge on each sphere is q and the force of repulsion between them is $F$. A third identical uncharged conducting sphere is brought in contact with sphere A first and then with B and finally removed from both. New force of repulsion between spheres $A$ and $B$ (Radii of $A$ and $B$ are negligible compared to the distance of separation so that for calculating force between them they can be considered as point charges) is best given as :
The electric potential at distance r from a point charge q is V = q/(4πε₀r). The electric field E is:
AB is a part of an electrical circuit (see figure). The potential difference " $\mathrm{V}_{\mathrm{A}}-\mathrm{V}_{\mathrm{B}}$ ", at the instant when current $\mathrm{i}=2 \mathrm{~A}$ and is increasing at a rate of $1 \mathrm{amp} / \mathrm{second}$ is : 
Work through every NEET UG Electromagnetism PYQ, year by year.