Practice & Test Electric Charges and Fields

Class 12 Physics · Chapter 1. Practice 247 free NEET 2027 questions on Electric Charges and Fields (Class 12 Physics), across 21 concepts. Asked ~2.3× per paper since 2013.

247
Practice questions
21
Concepts tagged
30
Asked 2013–2025
2.3×
Per paper

How much does Electric Charges and Fields matter?

Across the 13 NEET papers from 2013 to 2025, Electric Charges and Fields has been examined 30 times — an average of 2.3 questions per paper. At 4 marks each, that is roughly 9 marks a year riding on this one chapter.

What gets asked: 22 concepts

Every question in the bank is tagged to one of these, so practice can target the exact idea you keep missing.

Applications of Gauss's LawBasic Properties of Electric ChargeContinuous Charge DistributionCoulomb's LawDielectrics and Electric PolarizationDifference between Mass and ChargeElectric Charges, Conductors and InsulatorsElectric DipoleElectric FieldElectric Field due to a Charged Circular Arc on Its Centre of CurvatureElectric Field due to a Charged Ring on Its Axis Using Coulomb's LawElectric Field LinesElectric Field Lines due to a Positive and a Negative Point ChargeElectric Field Lines due to Two Identical Positive Point ChargeElectric FluxElectrostatic Force between Two Charges in VacuumElectrostatics of ConductorsForce between Multiple ChargesGauss's LawGauss's Theorem and Its ApplicationsSuperposition Principle and Continuous Charge DistributionTime Period of an Oscillating Dipole in Electric Field

Sample questions

Question 1

Assertion (A): Coulomb's law correctly describes electrostatic force for point charges. Reason (R): Coulomb's law is valid only for stationary charges and does not account for continuous charge distributions.

Question 2

The intensity of electric field required to balance a proton of mass $1.7 \times 10^{-27}$ kg and charge $1.6 \times 10^{-19}$ C is nearly

Question 3

A molecule of water appear as shown in figure. Its dipole moment, assuming that all the electrons in the molecule rotate symmetrically about the oxygen nucleus is nearly (Take cos 52° = 0.616). ![figure](/assets/xii-neet-m1-physics/ecf-ex1-086-fig.png)

Start practicing Electric Charges and Fields now

Practice adapts as you go — get one wrong and the next question targets the same concept instead of moving on. Or sit a timed test to see where you actually stand.

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