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Previous year question hub

Electrostatics - Electricity - Physics Previous Year Questions

Practice Electrostatics - Electricity - Physics previous year questions organised from real papers, with year-wise coverage and clear topic navigation.

38Papers
27Years
77Questions
1Topics

Electrostatics question pattern

Every graph below is calculated only from this selection.

Questions by year

Year-wise coverage for Electrostatics. Each bar uses a separate theme-derived color.

Difficulty distribution

How the classified questions are distributed by difficulty.

Not classified 73 94.8%
Easy 3 3.9%
Medium 1 1.3%

Question type distribution

MCQ, numerical, multiple-select and other formats found in these papers.

Multiple Choices 77 100%

Subject weightage

Top subjects by unique question coverage.

Physics
77 Qs

Most asked topics

Top topics across the included previous year papers.

Electricity
77 Qs

Subtopic coverage

Top subtopics inside this exact selection.

Electrostatics
77 Qs

Paper coverage

Question coverage for the most populated papers. Every active PYP paper remains listed below.

NEET 2026
1 Qs
NEET 2025
2 Qs
NEET 2024
2 Qs
NEET 2024 RE EXAMINATION
2 Qs
NEET 2023
3 Qs
NEET 2023 MANIPUR
3 Qs
NEET 2022 Phase 1
3 Qs
NEET 2022 PHASE 2
1 Qs
NEET 2021
4 Qs
NEET 2020 PHASE 1
3 Qs
NEET 2019
3 Qs
AIIMS 2018
3 Qs
NEET 2018
2 Qs
AIIMS 2017
2 Qs
NEET 2017
2 Qs
NEET 2016 PHASE 1
1 Qs
NEET 2016 PHASE 2
1 Qs
AIPMT 2015
1 Qs
AIPMT 2015 Cancelled Paper
1 Qs
AIPMT 2014
2 Qs
NEET 2013
2 Qs
NEET 2013 KARNATAKA
2 Qs
AIPMT 2012 PRELIMS
3 Qs
AIPMT 2012 MAINS
1 Qs
AIPMT 2011 MAINS
2 Qs
AIPMT 2011 PRELIMS
2 Qs
AIPMT 2010 PRELIMS
2 Qs
AIPMT 2010 MAINS
1 Qs
AIPMT 2009
2 Qs
AIPMT 2008
2 Qs
AIPMT 2007
3 Qs
AIPMT 2006
2 Qs
AIPMT 2005
2 Qs
AIPMT 2004
2 Qs
AIPMT 2003
1 Qs
AIPMT 2002
2 Qs
AIPMT 2001
2 Qs
AIPMT 2000
2 Qs

Included previous year papers

Newest papers appear first. Sort by year, question coverage or name.

PaperYear / sessionQuestions in this viewOpen
NEET 202620261View paper
NEET 202520252View paper
NEET 202420242View paper
NEET 2024 RE EXAMINATION20242View paper
NEET 202320233View paper
NEET 2023 MANIPUR20233View paper
NEET 2022 Phase 120223View paper
NEET 2022 PHASE 220221View paper
NEET 202120214View paper
NEET 2020 PHASE 120203View paper
NEET 201920193View paper
AIIMS 201820183View paper
NEET 201820182View paper
AIIMS 201720172View paper
NEET 201720172View paper
NEET 2016 PHASE 120161View paper
NEET 2016 PHASE 220161View paper
AIPMT 201520151View paper
AIPMT 2015 Cancelled Paper20151View paper
AIPMT 201420142View paper
NEET 201320132View paper
NEET 2013 KARNATAKA20132View paper
AIPMT 2012 MAINS20121View paper
AIPMT 2012 PRELIMS20123View paper
AIPMT 2011 MAINS20112View paper
AIPMT 2011 PRELIMS20112View paper
AIPMT 2010 MAINS20101View paper
AIPMT 2010 PRELIMS20102View paper
AIPMT 200920092View paper
AIPMT 200820082View paper
AIPMT 200720073View paper
AIPMT 200620062View paper
AIPMT 200520052View paper
AIPMT 200420042View paper
AIPMT 200320031View paper
AIPMT 200220022View paper
AIPMT 200120012View paper
AIPMT 200020002View paper

All Electrostatics previous year questions

Practice every matching question in batches of 20, with every available option.

1
2000 · Physics · Electricity · Electrostatics
AIPMT 2000
A charge Q is situated at the corner of a cube, the electric flux passed through all the six faces of the cube is
A
\({Q \over {6{\varepsilon _0}}}\)
B
\({Q \over {8{\varepsilon _0}}}\)
C
\({Q \over {{\varepsilon _0}}}\)
D
\({Q \over {2{\varepsilon _0}}}\)
Open complete paper
2
2000 · Physics · Electricity · Electrostatics
AIPMT 2000
Electric field at centre O of semicircle of radius \(a\) having linear charge density \(\lambda\) given as

AIPMT 2000 Physics - Electrostatics Question 33 English
A
\({{2\lambda } \over {{\varepsilon _0}a}}\)
B
\({{\lambda \pi } \over {{\varepsilon _0}a}}\)
C
\({\lambda \over {2\pi {\varepsilon _0}a}}\)
D
\({\lambda \over {\pi {\varepsilon _0}a}}\)
Open complete paper
3
2001 · Physics · Electricity · Electrostatics
AIPMT 2001
A dipole of dipole moment \(\overrightarrow p\) is placed in uniform electric field \(\overrightarrow E\) then torque acting on it is given by
A
\(\overrightarrow \tau = \overrightarrow p .\overrightarrow E\)
B
\(\overrightarrow \tau = \overrightarrow p \times \overrightarrow E\)
C
\(\overrightarrow \tau = \overrightarrow p + \overrightarrow E\)
D
\(\overrightarrow \tau = \overrightarrow p - \overrightarrow E\)
Open complete paper
4
2001 · Physics · Electricity · Electrostatics
AIPMT 2001
A charge Q\(\mu\)C is placed at the centre of a cube, the flux coming out from each face will be
A
\({Q \over {6{\varepsilon _0}}} \times {10^{ - 6}}\)
B
\({Q \over {6{\varepsilon _0}}} \times {10^{ - 3}}\)
C
\({Q \over {24{\varepsilon _0}}}\)
D
\({Q \over {8{\varepsilon _0}}}\)
Open complete paper
5
2002 · Physics · Electricity · Electrostatics
AIPMT 2002
Some charge is being given to a conductor. Then its potential is
A
maximum at surface
B
maximum at centre
C
remain same throughout the conductor
D
maximum somewhere between surface and centre.
Open complete paper
6
2002 · Physics · Electricity · Electrostatics
AIPMT 2002
Identical charges (\(-\)q) are placed at each corners of cube of side b then electrostatic potential energy of charge (+q) which is placed at centre of cube will be
A
\({{ - 4\sqrt 2 {q^2}} \over {\pi {\varepsilon _0}b}}\)
B
\({{ - 8\sqrt 2 {q^2}} \over {\pi {\varepsilon _0}b}}\)
C
\({{ - 4\,{q^2}} \over {\sqrt 3 \,\pi {\varepsilon _0}b}}\)
D
\({{8\sqrt 2 \,{q^2}} \over {4\,\pi {\varepsilon _0}b}}\)
Open complete paper
7
2003 · Physics · Electricity · Electrostatics
AIPMT 2003
A charge q is located at the centre of a cube. The electric flux through any face is
A
\({{2\pi q} \over {6\left( {4\pi {\varepsilon _0}} \right)}}\)
B
\({{4\pi q} \over {6\left( {4\pi {\varepsilon _0}} \right)}}\)
C
\({{\pi q} \over {6\left( {4\pi {\varepsilon _0}} \right)}}\)
D
\({q \over {6\left( {4\pi {\varepsilon _0}} \right)}}\)
Open complete paper
8
2004 · Physics · Electricity · Electrostatics
AIPMT 2004
A bullet of mass 2 g is having a charge of 2 \(\mu\)C. Through what potential difference must it be accelerated, starting from rst, to acquire a speed of 10 m/s ?
A
5 kV
B
50 kV
C
5 V
D
50 V
Open complete paper
9
2004 · Physics · Electricity · Electrostatics
AIPMT 2004
An electric dipole has the magnitude of its charge as q and its dipole moment is p. It is placed in a uniform electric field E. If its dipole moment is along the direction of the field, the force on it and its potential energy are respectively
A
2q.E and minimum
B
q.E and p.E
C
zero and minimum
D
q.E and maximum
Open complete paper
10
2005 · Physics · Electricity · Electrostatics
AIPMT 2005
As per the diagram a point charge +q is placed at the origin O. Work done in taking another point charge \(-\)Q from the point A [coordinates (0, \(a\))] to another point B

AIPMT 2005 Physics - Electrostatics Question 43 English
A
zero
B
\(\left( {{{qQ} \over {4\pi {\varepsilon _0}}}{1 \over {{a^2}}}} \right).\sqrt 2 a\)
C
\(\left( {{{ - qQ} \over {4\pi {\varepsilon _0}}}{1 \over {{a^2}}}} \right).\sqrt 2 a\)
D
\(\left( {{{qQ} \over {4\pi {\varepsilon _0}}}{1 \over {{a^2}}}} \right).{a \over {\sqrt 2 }}\)
Open complete paper
11
2005 · Physics · Electricity · Electrostatics
AIPMT 2005
Two charges q1 and q2 are placed 30 cm apart, as shown in the figure. A third charge q3 is moved along the arc of a circle of radius 40 cm from C to D.

The change in the potential energy of the system is \({{{q_3}} \over {4\pi {\varepsilon _0}}}\) where k is

AIPMT 2005 Physics - Electrostatics Question 42 English
A
8q1
B
6q1
C
8q2
D
6q2
Open complete paper
12
2006 · Physics · Electricity · Electrostatics
AIPMT 2006
A square surface of side L metres is in the plane of the paper. A uniform electric field \(\overrightarrow E\) (volt/m), also in the plane of the paper is limited only to the lower half of the square surface (see figure). The electric flux in SI inits associated with the surface is

AIPMT 2006 Physics - Electrostatics Question 44 English
A
EL2
B
EL2/2\(\varepsilon\)0
C
EL2/2
D
zero
Open complete paper
13
2006 · Physics · Electricity · Electrostatics
AIPMT 2006
An electric dipole of moment \(\overrightarrow p\) is lying along a uniform electric field \(\overrightarrow E\). The work done in rotating the dipole by 90o is
A
pE
B
\(\sqrt 2 pE\)
C
pE/2
D
2pE
Open complete paper
14
2007 · Physics · Electricity · Electrostatics
AIPMT 2007
A hollow cylinder has a charge q coulomb within it. If \(f\) is the electric flux in units of voltmeter associated with the curved surface B, the flux linked with the plane surface A in units of V-m will be

AIPMT 2007 Physics - Electrostatics Question 48 English
A
\({q \over {2{\varepsilon _0}}}\)
B
\({\phi \over 3}\)
C
\({q \over {{\varepsilon _0}}} - \phi\)
D
\({1 \over 2}\left( {{q \over {{\varepsilon _0}}} - \phi } \right)\)
Open complete paper
15
2007 · Physics · Electricity · Electrostatics
AIPMT 2007
Three point charges +q, \(-\) 2q and + q are placed at points (x = 0, y = a, z = 0), (x = 0, y = 0, z = 0) and (x = \(a\), y = 0, z = 0) respectively. The magnitude and direction of the electric dipole moment vector of this charge assembly are
A
\(\sqrt 2 qa\) along the line joining points (x = 0, y = 0, z = 0) and (x = \(a\), y = a, z = 0)
B
q\(a\) along the line joining points (x = 0, y = 0, z = 0) and (x = \(a\), y = a, z = 0)
C
\(\sqrt 2 qa\) along +x direction
D
\(\sqrt 2 qa\) along +y direction.
Open complete paper
16
2007 · Physics · Electricity · Electrostatics
AIPMT 2007
Charges +q and \(-\)q are placed at points A and B respectively which are a distance 2L apart, C is the midnight between A and B. The work done in moving a charge + Q along the semicircle CRD is

AIPMT 2007 Physics - Electrostatics Question 47 English
A
\({{qQ} \over {2\pi {\varepsilon _0}L}}\)
B
\({{qQ} \over {6\pi {\varepsilon _0}L}}\)
C
\(-\) \({{qQ} \over {6\pi {\varepsilon _0}L}}\)
D
\({{qQ} \over {4\pi {\varepsilon _0}L}}\)
Open complete paper
17
2008 · Physics · Electricity · Electrostatics
AIPMT 2008
A thin conducting ring of radius R is given a charge +Q. The electric field at the centre O of the ring due to the charge on the part AKB of the ring is E. The electric field at the centre due to the charge on the part ACDB of the ring is

AIPMT 2008 Physics - Electrostatics Question 50 English
A
E along KO
B
3E along OK
C
3E along KO
D
E along OK
Open complete paper
18
2008 · Physics · Electricity · Electrostatics
AIPMT 2008
The electric potential at a point in free space due to charge Q coulomb is Q \(\times\) 1011 volts. The electric field at that point is
A
\(4\pi {\varepsilon _0}Q \times {10^{20}}\) volt/m
B
12\(\pi\)0Q \(\times\) 1022 volt/m
C
\(4\pi {\varepsilon _0}Q \times {10^{22}}\) volt/m
D
\(12\pi {\varepsilon _0}Q \times {10^{20}}\) volt/m
Open complete paper
19
2009 · Physics · Electricity · Electrostatics
AIPMT 2009
Three concentric spherical shells have radii a, b and c (a < b < c) anf have surface charge densities \(\sigma\), \(-\)\(\sigma\) and \(\sigma\) respectively. If VA, VB and VC denote the potentials of the three shells, then, for c = a + b, we have
A
VC = VB \(\ne\) VA
B
VC \(\ne\) VB \(\ne\) VA
C
VC = VB = VA
D
VC = VA \(\ne\) VB
Open complete paper
20
2009 · Physics · Electricity · Electrostatics
AIPMT 2009
The electric potential at a point (x, y, z) is given by V = \(-\)x2y \(-\) xz3 + 4

The electric field at that point is
A
\(\overrightarrow E = \widehat i2xy + \widehat j\left( {{x^2} + {y^2}} \right) + \widehat k\left( {3xz - {y^2}} \right)\)
B
\(\overrightarrow E = \widehat i{z^3} + \widehat jxyz + \widehat k{z^2}\)
C
\(\overrightarrow E = \widehat i\left( {2xy - {z^3}} \right) + \widehat jx{y^2} + \widehat k3{z^2}x\)
D
\(\overrightarrow E = \widehat i\left( {2xy + {z^3}} \right) + \widehat j{x^2} + \widehat k3x{z^2}\)
Open complete paper

Showing 20 of 77 questions