Electrostatics PYQs - Last 10 Years
COMEDK / Physics / Electromagnetism / 56 recent questions
PhysicsElectromagnetism2017-2026
Practice 56 COMEDK Physics questions from Electrostatics. Use the year-wise and type-wise breakdown to prioritize recent PYQs, then continue into the question list below.
56
PYQs on Page
Physics / Electromagnetism
2020-2026
Year Range
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47
Last 5 Years
2022-2026
56
Last 10 Years
2017-2026
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MCQ100%
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47 in last 5 years56 in last 10 years
Last 10 Years Electrostatics Questions
Showing 6 of 56 filtered questions.
1Electrostatics
The potential energies associated with four
orientations of an electric dipole in an electric
field are
(i) \(-5U_0\) (ii) \(-7U_0\) (iii) \(3U_0\) (iv) \(5U_0\)
where \(U_0\) is positive. Rank the orientations according to the angle betwee...
orientations of an electric dipole in an electric
field are
(i) \(-5U_0\) (ii) \(-7U_0\) (iii) \(3U_0\) (iv) \(5U_0\)
where \(U_0\) is positive. Rank the orientations according to the angle betwee...
MCQ+1 / -02020
2Electrostatics
Two point charges A = +3 nC and B = +1 nC are placed 5 cm apart in air. The work done to move charge B towards A by 1 cm is
MCQ+1 / -02020
3Electrostatics
An electric dipole is placed in a uniform electric
field with the dipole axis making an angle \(\theta\) with
the direction of the electric field. The
orientation of the dipole for stable equilibrium
is
field with the dipole axis making an angle \(\theta\) with
the direction of the electric field. The
orientation of the dipole for stable equilibrium
is
MCQ+1 / -02020
4Electrostatics
An electric dipole has a pair of equal and opposite point charges \(q\) and \(-q\) separated by a distance \(2x\). The axis of the dipole is defined as
MCQ+1 / -02020
5Electrostatics
A charge of 0.8 C is divided into two charges Q\(_1\) and Q\(_2\). These are kept at a separation of 30 cm. The force on Q\(_1\) is maximum when
MCQ+1 / -02020
6Electrostatics
Consider a thin spherical shell of radius R
consisting of uniform surface charge density s.
The electric field at a point of distance x from its
centre and outside the shell is
consisting of uniform surface charge density s.
The electric field at a point of distance x from its
centre and outside the shell is
MCQ+1 / -02020
