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Electrostatics PYQs - Last 10 Years

MHT CET (Biology) / Physics / Electromagnetism / 11 recent questions

PhysicsElectromagnetism2016-2025

Practice 11 MHT CET (Biology) 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 / Electromagnetism
2024-2025
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11
Last 5 Years
2021-2025
11
Last 10 Years
2016-2025

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Last 10 Years Electrostatics Questions

Showing 11 of 11 filtered questions.

1Electrostatics
A simple pendulum has mass 2 gram and charge $2 \mu \mathrm{C}$. In a uniform horizontal electric field of intensity $1000 \mathrm{~V} / \mathrm{m}$, pendulum is at rest. At equilibrium, the angle made by the pendulum with the vertical is (...
MCQ+1 / -02025
2Electrostatics
The charges are arranged at the four corners of square $A B C D$ of side ' $d$ ' as shown in figure. The work required to put this arrangement together is given by
MCQ+1 / -02025
3Electrostatics
If the electric flux entering and leaving an enclosed surface area are ' $\phi_1$ ' and ' $\phi_2$ ' respectively, the electric charge inside the surface will be ( $\varepsilon_0=$ permittivity of free space)
MCQ+1 / -02025
4Electrostatics
If 80 J of work is required in moving an electric charge of ' 2 C ' from a point where potential is " -8 V ' to another point where potential is ' $V$ ' volt, the value of ' $V$ ' is
MCQ+1 / -02025
5Electrostatics
A charge of $8 \mu \mathrm{C}$ exists at the centre of the square $A B C D$. The work done in moving a $4 \mu C$ point charge from corner A to corner B is (Along side AB )
MCQ+1 / -02025
6Electrostatics
In the diagram, the total electric flux through the closed surface ' S ' is
[Given $\mathrm{q}=$ charge
$\varepsilon_0=$ permittivity of free space]
MCQ+1 / -02024
7Electrostatics
A hollow charged metal sphere has a radius ' $r$ '. If the potential difference between its surface and a point at a distance ' 3 r ' from the centre is ' $v$ ', then the electric field intensity at a distance ' $3 r$ ' is
MCQ+1 / -02024
8Electrostatics
Three charges $Q,-2 q$ and $-2 q$ are placed at the vertices of an isosceles right-angled triangle as shown in figure. The net electrostatic potential energy is zero if $Q$ is equal to
MCQ+1 / -02024
9Electrostatics
The potentials at points A and B are $\mathrm{V}_{\mathrm{A}}$ and $\mathrm{V}_{\mathrm{B}}$ respectively for the charges $+q$ and $-q$ placed at distances ' $x$ ' each from points $A$ and $B$ as shown in figure. The distance between points...
MCQ+1 / -02024
10Electrostatics
The wrong statement out of the following statements is
MCQ+1 / -02024
11Electrostatics
A large insulated sphere of radius ' $r$ ', charged with ' $Q$ ' units of electricity, is placed in contact with a small insulated uncharged sphere of radius ' R ' and is then separated. The charge on the smaller sphere will now be
MCQ+1 / -02024