Electrostatics PYQs - Last 10 Years
MHT CET / Physics / Electromagnetism / 174 recent questions
PhysicsElectromagnetism2017-2026
Practice 174 MHT CET 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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Last 10 Years Electrostatics Questions
Showing 24 of 174 filtered questions.
1Electrostatics
Two charged metallic spheres are joined by a very thin metal wire. If the radius of the larger sphere is four times that of the smaller sphere, the electric field near the larger sphere is
MCQ+1 / -02021
2Electrostatics
Three charges \(-\mathrm{q}, \mathrm{Q}\) and \(-\mathrm{q}\) are placed at equal distances on a straight line. If the total potential energy of the system of three charges is zero then the ratio \(\frac{Q}{q}\) is
MCQ+1 / -02021
3Electrostatics
Two positive ions, each carrying a charge 'q' are separated by a distance 'd'. If 'F' is the force of repulsion between the ions, the number of electrons from each ion will be (\(\varepsilon\) = charge on \(\varepsilon_k\) = permittivity of...
MCQ+1 / -02021
4Electrostatics
Two point charges \(+3 \mu \mathrm{C}\) and \(+8 \mu \mathrm{C}\) repel each other with a force of \(40 \mathrm{~N}\). If a charge of \(-5 \mu \mathrm{C}\) is added to each of them, then force between them will become
MCQ+1 / -02021
5Electrostatics
A point charge \(\mathrm{Q}\) is placed at the centre of the line joining two equal point charges \(+\mathrm{q}\) and \(+\mathrm{q}\). The value of \(Q\) if the system of the charges is in equilibrium, is
MCQ+1 / -02021
6Electrostatics
Two spherical conductors of radii \(4 \mathrm{~cm}\) and \(5 \mathrm{~cm}\) are charged to the same potential. If '\(\sigma_1\)' and '\(\sigma_2\)' be the respective values of the surface density of charge on the two conductors then the rat...
MCQ+1 / -02021
7Electrostatics
Two particles \(A\) and \(B\) having same mass have charge \(+q\) and \(+4 q\) respectively. When they are allowed to fall from rest through same electric potential difference, the ratio of their speeds '\(V_A\)' to '$$\mathrm{V}_{\mathrm{B...
MCQ+1 / -02021
8Electrostatics
An electron of mass '\(m\)' and charge '\(q\)' is accelerated from rest in a uniform electric field of strength '\(E\)'. The velocity acquired by the electron when it travels a distance '\(L\)' is
MCQ+1 / -02021
9Electrostatics
'\(\mathrm{F}\)' is the force between the two identical charged particles placed at a distance '\(\mathrm{Y}\)' from each other. If the distance between the charges is reduced to half the previous distance then force between them becomes
MCQ+1 / -02021
10Electrostatics
A hollow metal sphere has a radius 'r'. The potential difference between a point on its surface and at a point at a distance '3r' from its centre is 'V'. The electric intensity at the distance '3r' from the centre of the sphere will be :
MCQ+1 / -02021
11Electrostatics
When a piece of polythene is rubbed with wool, a negative charge of \(4 \times 10^{-7} \mathrm{C}\) is developed on the polythene. The number of electrons transferred from wool to polythene is $$[e=1.6 \times\left.10^{-19} \mathrm{C}\right]...
MCQ+1 / -02021
12Electrostatics
A charge of magnitude '2e' and mass '4m' is moving in an electric field \(\overrightarrow E\). The acceleration imparted to the above charge is
MCQ+1 / -02021
13Electrostatics
A spherical conducting shell of inner radius 'r\(_1\)' and outer radius 'r\(_2\)' has a charge 'Q'. A charge \(-\)q is placed at the centre of the shell. The surface charge density on the inner and outer surface of the shell will be
MCQ+1 / -02021
14Electrostatics
A uniformly charged half ring of a radius ' $R$ ' has linear charge density '\(\sigma\)'. The electric potential at the centre of the half ring is ( \(\epsilon_0=\) permittivity of free space)
MCQ+1 / -02021
15Electrostatics
An electric dipole having dipole moment \(\mathrm{P}=\mathrm{q} \times 2 \ell\) is placed in a uniform electric field '\(\mathrm{E}\)'. The dipole moment is along the direction of the field. The force acting on it and its potential energy a...
MCQ+1 / -02021
16Electrostatics
A hollow charged metal sphere has radius 'R'. If the potential difference between its surface and a point at a distance '5 R' from the centre is \(\mathrm{V}\), then magnitude of electric field Intensity at a distance '5R' from the centre o...
MCQ+1 / -02021
17Electrostatics
A uniformly charged semicircular arc of radius '\(r\)' has linear charge density \((\lambda)\), is the electric field at its centre? ( \(\in_0=\) permittivity of free space)
MCQ+1 / -02021
18Electrostatics
Van de Graaff generator produces
MCQ+1 / -02020
19Electrostatics
Surface density of charge on a charged conducting sphere of radius \(R\) in terms of electric field intensity \(E\) at a distance \(r\) in free space is (\(r>R, \varepsilon_0=\) permittivity of free space)
MCQ+1 / -02020
20Electrostatics
A spherical rubber balloon carries a charge, uniformly distributed over the surface. As the balloon is blown up and increases in size, the total electric flux coming out of the surface
MCQ+1 / -02020
21Electrostatics
Which of the following is the dimensional formula for electric polarisation?
MCQ+1 / -02019
22Electrostatics
A charged conductor produces an electric field of intensity $10^3 \mathrm{~V} / \mathrm{m}$ just outside its surface in vacuum. Then, it produces the electric field of intensity E just outside its surface, when it is placed in a medium of d...
MCQ+1 / -02019
23Electrostatics
In case of dimensions of electric field and electric dipole moment the power of mass is reswpectively,
MCQ+1 / -02019
24Electrostatics
Which of the following molecules is a polar molecule?
MCQ+1 / -02019
