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Electrostatics PYQs - Last 5 Years

WB JEE / Physics / Electricity / 15 recent questions

PhysicsElectricity2022-2026

Practice 15 WB JEE Physics questions from Electrostatics. Use the year-wise and type-wise breakdown to prioritize recent PYQs, then continue into the question list below.

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Physics / Electricity
2022-2026
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15
Last 5 Years
2022-2026
15
Last 10 Years
2017-2026

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15PYQs
MCQ86.7%
MCQM13.3%

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Last 5 Years Electrostatics Questions

Showing 15 of 15 filtered questions.

1Electrostatics
A simple pendulum of length $l$ has a bob of mass $m$ ,with a charge $q$ .On it a vertical sheet of charge, with surface charge density'$\sigma$'passes through the point of suspension.At equilibrium,if the string makes an angle $\theta$ wit...
MCQ+1 / -0.252026
2Electrostatics
Two charges $+q$ and $-q$ are placed at points $A$ and $B$ respectively which are at a distance $2 L_{\mathrm{p} p a t}$ $C$ is the mid point of $A$ and $B$. The workdone in moving a charge $+Q$ along the semicircle $\operatorname{CSD}\left...
MCQ+1 / -0.252025
3Electrostatics
Consider a particle of mass 1 gm and charge 1.0 Coulomb is at rest. Now the particle is subjected to an electric field $E(t)=E_0 \sin \omega t$ in the $x$-direction, where $E_0=2$ Newton/Coulomb and $\omega=1000 \mathrm{rad} / \mathrm{sec}$...
MCQ+1 / -0.252025
4Electrostatics
A charge Q is placed at the centre of a cube of sides a. The total flux of electric field through the six surfaces of the cube is
MCQ+1 / -0.252024
5Electrostatics
Three point charges \(\mathrm{q},-2 \mathrm{q}\) and \(\mathrm{q}\) are placed along \(x\) axis at \(x=-{a}, 0\) and $a$ respectively. As \(\mathrm{a} \rightarrow 0\) and \(\mathrm{q} \rightarrow \infty\) while $$\mathrm{q} \mathrm{a}^2=\ma...
MCQ+1 / -0.252024
6Electrostatics
Consider the integral form of the Gauss' law in electrostatics
\(\oint {\overrightarrow E .d\overrightarrow S } = {Q \over {{\varepsilon _0}}}\)
Which of the following statements are correct?
MCQM+2 / -02024
7Electrostatics
An electric dipole of dipole moment \(\vec{p}\) is placed at the origin of the co-ordinate system along the \(\mathrm{z}\)-axis. The amount of work required to move a charge '\(\mathrm{q}\)' from the point \((\mathrm{a}, 0, 0)\) to the poin...
MCQ+1 / -0.252023
8Electrostatics

The figure represents two equipotential lines in x-y plane for an electric field. The x-component E\(_x\) of the electric field in space between these equipotential lines is,
MCQ+1 / -0.252023
9Electrostatics

A thin glass rod is bent in a semicircle of radius R. A charge is non-uniformly distributed along the rod with a linear charge density \(\lambda=\lambda_0\sin\theta\) (\(\lambda_0\) is a positive constant). The electric field at the centre...
MCQ+1 / -0.252023
10Electrostatics

Consider a positively charged infinite cylinder with uniform volume charge density \(\rho > 0\). An electric dipole consisting of + Q and \(-\) Q charges attached to opposite ends of a massless rod is oriented as shown in the figure. At th...
MCQ+1 / -0.252023
11Electrostatics

A hemisphere of radius R is placed in a uniform electric field E so that its axis is parallel to the field. Which of the following statement(s) is/are true?
MCQM+2 / -02022
12Electrostatics
Consider two concentric conducting sphere of radii R and 2R respectively. The inner sphere is given a charge +Q. The other sphere is grounded. The potential at \(r = {{3R} \over 2}\) is
MCQ+1 / -0.252022
13Electrostatics

A neutral conducting solid sphere of radius R has two spherical cavities of radius a and b as shown in the figure. Centre to centre distance between two cavities is c. qa and qb charges are placed at the centres of cavities respectively. T...
MCQ+1 / -0.252022
14Electrostatics
Two charges, each equal to \(-\)q are kept at (\(-\)a, 0) and (a, 0). A charge q is placed at the origin. If q is given a small displacement along y direction, the force acting on q is proportional to
MCQ+1 / -0.252022
15Electrostatics
The electric potential for an electric field directed parallel to X-axis is shown in the figure. Choose the correct plot of electric field strength.
MCQ+1 / -0.252022