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Previous year question hub

Electromagnetic Induction - Electricity - Physics Previous Year Questions

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

17Papers
15Years
22Questions
1Topics

Electromagnetic Induction question pattern

Every graph below is calculated only from this selection.

Questions by year

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

Difficulty distribution

How the classified questions are distributed by difficulty.

Not classified 22 100%

Question type distribution

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

Multiple Choices 22 100%

Subject weightage

Top subjects by unique question coverage.

Physics
22 Qs

Most asked topics

Top topics across the included previous year papers.

Electricity
22 Qs

Subtopic coverage

Top subtopics inside this exact selection.

Electromagnetic Induction
22 Qs

Paper coverage

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

RE-NEET 2026
3 Qs
NEET 2019
2 Qs
NEET 2016 PHASE 1
1 Qs
NEET 2016 PHASE 2
1 Qs
AIPMT 2015
1 Qs
AIPMT 2014
1 Qs
NEET 2013
1 Qs
NEET 2013 KARNATAKA
1 Qs
AIPMT 2012 PRELIMS
1 Qs
AIPMT 2011 PRELIMS
1 Qs
AIPMT 2010 PRELIMS
1 Qs
AIPMT 2009
2 Qs
AIPMT 2008
2 Qs
AIPMT 2006
1 Qs
AIPMT 2005
1 Qs
AIPMT 2004
1 Qs
AIPMT 2001
1 Qs

Included previous year papers

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

PaperYear / sessionQuestions in this viewOpen
RE-NEET 202620263View paper
NEET 201920192View paper
NEET 2016 PHASE 120161View paper
NEET 2016 PHASE 220161View paper
AIPMT 201520151View paper
AIPMT 201420141View paper
NEET 201320131View paper
NEET 2013 KARNATAKA20131View paper
AIPMT 2012 PRELIMS20121View paper
AIPMT 2011 PRELIMS20111View paper
AIPMT 2010 PRELIMS20101View paper
AIPMT 200920092View paper
AIPMT 200820082View paper
AIPMT 200620061View paper
AIPMT 200520051View paper
AIPMT 200420041View paper
AIPMT 200120011View paper

All Electromagnetic Induction previous year questions

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

1
2001 · Physics · Electricity · Electromagnetic Induction
AIPMT 2001
For a coil having L = 2 mH, current flow through it is \(I = {t^2}{e^{ - t}}\) then, the time at which emf become zero
A
2 sec
B
1 sec
C
4 sec
D
3 sec
Open complete paper
2
2004 · Physics · Electricity · Electromagnetic Induction
AIPMT 2004
The magnetic flux through a circuit of resistance R changes by an amount \(\Delta\)\(\phi\) in a time \(\Delta\)t. Then the total quantity of electric charge Q that passes any point in the circuit during the time \(\Delta\)t is represented by
A
\(Q = {1 \over R}.{{\Delta \phi } \over {\Delta t}}\)
B
\(Q = {{\Delta \phi } \over R}\)
C
\(Q = {{\Delta \phi } \over {\Delta t}}\)
D
\(Q = R.{{\Delta \phi } \over {\Delta t}}\)
Open complete paper
3
2005 · Physics · Electricity · Electromagnetic Induction
AIPMT 2005
As a result of change in the magnetic flux linked to the closed loop as shown in the figure, an e.m.f. \(V\) volt is induced in the loop. The work done (joule) in taking a charge Q coulomb once along the loop is

AIPMT 2005 Physics - Electromagnetic Induction Question 16 English
A
QV
B
2QV
C
QV/2
D
zero
Open complete paper
4
2006 · Physics · Electricity · Electromagnetic Induction
AIPMT 2006
Two coils of self inductance 2 mH and 8 mH are placed so close together that the effective flux in one coil is completely linked with the other. The mutual inductance between these coils is
A
16 mH
B
10 mH
C
6 mH
D
4 mH
Open complete paper
5
2008 · Physics · Electricity · Electromagnetic Induction
AIPMT 2008
A long solenoid has 500 turns. When a current of 2 ampere is passed through it, the resulting magnetic flux linked with each turn of the solenoid is 4 \(\times\) 10\(-\)3 Wb. The self-inductance of the solenoid is
A
1.0 henry
B
4.0 henry
C
2.5 henry
D
2.0 henry
Open complete paper
6
2008 · Physics · Electricity · Electromagnetic Induction
AIPMT 2008
A circular disc of radius 0.2 meter is placed in a uniform magnetic field of induction \({1 \over \pi }\left( {{{Wb} \over {{m^2}}}} \right)\) in such a way that its axis makes an angle of 60o with \(\overrightarrow B .\) The magnetic flux linked with the disc is
A
0.08 Wb
B
0.01 Wb
C
0.02 Wb
D
0.06 Wb
Open complete paper
7
2009 · Physics · Electricity · Electromagnetic Induction
AIPMT 2009
A rectangular, a square, a circular and an elliptical loop, all in the (x-y) plane, are moving out of a uniform magnetic field with a constant velocity. \(\overrightarrow V = v\widehat i\). The magnetic field is directed along the negative z axis direction. The induced emf, during the passes of these loops, out of the field region, will not remain constant for
A
The circular and the elliptical loops
B
only the ellliptical loop
C
any of the four loops
D
the rectangular, circular and elliptical loops
Open complete paper
8
2009 · Physics · Electricity · Electromagnetic Induction
AIPMT 2009
A conducting circular loop is placed in a uniform magnetic field 0.04 T with its plane perpendicular to the magnetic field. The radius of the loop starts shrinking at 2 mm/s. The induced emf in the loop when the radius is 2 cm is
A
4.8\(\pi\)\(\mu\)V
B
0.8\(\pi\)\(\mu\)V
C
1.6\(\pi\)\(\mu\)V
D
3.2\(\pi\)\(\mu\)V
Open complete paper
9
2010 · Physics · Electricity · Electromagnetic Induction
AIPMT 2010 PRELIMS
A conducting circular loop is placed in a uniform magnetic field, B = 0.025 T with its plane perpendicular to the loop. The radius of the loop is made to shrink at a constant rate of 1 mm s\(-\)1. The induced emf when the radius is 2 cm, is
A
\(2\pi \mu V\)
B
\(\pi \mu V\)
C
\({\pi \over 2}\mu V\)
D
2\(\mu\)\(V\)
Open complete paper
10
2011 · Physics · Electricity · Electromagnetic Induction
AIPMT 2011 PRELIMS
The current \(i\) in a coil varies with time as shown in the figure. The variation of induced emf with time would be

AIPMT 2011 Prelims Physics - Electromagnetic Induction Question 23 English
A
AIPMT 2011 Prelims Physics - Electromagnetic Induction Question 23 English Option 1
B
AIPMT 2011 Prelims Physics - Electromagnetic Induction Question 23 English Option 2
C
AIPMT 2011 Prelims Physics - Electromagnetic Induction Question 23 English Option 3
D
AIPMT 2011 Prelims Physics - Electromagnetic Induction Question 23 English Option 4
Open complete paper
11
2012 · Physics · Electricity · Electromagnetic Induction
AIPMT 2012 PRELIMS
A coil of resistance 400 \(\Omega\) is placed in a magnetic field. If the magnetic flux \(\phi\) (Wb) linked with the coil varies with time t (sec) as \(\phi = 50{t^2} + 4\).

The current in the coil at t = 2 sec is
A
0.5 A
B
0.1 A
C
2 A
D
1 A
Open complete paper
12
2014 · Physics · Electricity · Electromagnetic Induction
AIPMT 2014
A thin semicircular conducting ring (PQR) of radius r is falling with its plane vertical in a horizontal magnetic field B, as shown in the figure.

AIPMT 2014 Physics - Electromagnetic Induction Question 28 English
The potential difference developed across the ring when its speed is \(v\), is
A
zero
B
\({{Bv\pi {r^2}} \over 2}\) and P is at higher potential
C
\(\pi rBV\) and R is at higher potential
D
2rBV and R is at higher potential
Open complete paper
13
2015 · Physics · Electricity · Electromagnetic Induction
AIPMT 2015
An electron moves on a straight line path XY as shown. The abcd is a coil adjacent to the path of electron. What will be the direction of current, if any, induced in the coil ?

AIPMT 2015 Physics - Electromagnetic Induction Question 29 English
A
The current will reverse its direction as the electron goes past the coil
B
No current induced
C
abcd
D
adcb
Open complete paper
14
2013 · Physics · Electricity · Electromagnetic Induction
NEET 2013
A wire loop is rotated in a magnetic field. The frequency of change of direction of the induced e.m.f. is
A
four times per revoluation
B
six times per revolution
C
once per revolution
D
twice per revolution
Open complete paper
15
2013 · Physics · Electricity · Electromagnetic Induction
NEET 2013 KARNATAKA
A current of 2.5 A flows through a coil of inductance 5 H. The magnetic flux linked with the coil is
A
0.5 Wb
B
12.5 Wb
C
zero
D
2 Wb
Open complete paper
16
2016 · Physics · Electricity · Electromagnetic Induction
NEET 2016 PHASE 1
A long solenoid has 1000 turns. When a current of 4 A flows through it, the magnetic flux linked with each turn of the solenoid is 4 \(\times \,{10^{ - 3}}\) Wb. The self-inductance of the solenoid is
A
2 H
B
1 H
C
4 H
D
3 H
Open complete paper
17
2016 · Physics · Electricity · Electromagnetic Induction
NEET 2016 PHASE 2
A uniform magnetic field is restricted within a region of rafius r. The magnetic field changes with time at a rate \({{d\overrightarrow B } \over {dt}}\). Loop 1 of radius R > r encloses the region r and loop 2 of radius R is outside the region of magnetic field as shown in the figure. Then the e.m.f. generated is

NEET 2016 Phase 2 Physics - Electromagnetic Induction Question 31 English
A
zero in loop 1 and zero in loop 2
B
\(- {{d\overrightarrow B } \over {dt}}\pi {r^2}\) in loop 1 and \(- {{d\overrightarrow B } \over {dt}}\pi {r^2}\) in loop 2
C
\(- {{d\overrightarrow B } \over {dt}}\pi {R^2}\) in loop 1 and zero in loop 2
D
\(- {{d\overrightarrow B } \over {dt}}\pi {r^2}\) in loop 1 and zero in loop 2
Open complete paper
18
2019 · Physics · Electricity · Electromagnetic Induction
NEET 2019
A 800 turn coil of effective area 0.05 m2 is kept. perpendicular to a magnetic filed 5 × 10–5 T. When the plane of the coil is rotated by 90o around any of its coplanar axis in 0.1 s, the emf induced in the coil will be :
A
0.2 V
B
0.02 V
C
2 V
D
2 \(\times\) 10-3 V
Open complete paper
19
2019 · Physics · Electricity · Electromagnetic Induction
NEET 2019
In which of the following devices, the eddy current effect is not used?
A
magnetic braking in train
B
electromagnet
C
electric heater
D
induction furnace
Open complete paper
20
2026 · Physics · Electricity · Electromagnetic Induction
RE-NEET 2026

Consider a long solenoid of length $I$ and radius $r$. If $n$ is the number of turns per unit length and $\mu_0$ is the permeability of free space, the inductance of the solenoid is :

A

$2 \mu_0 \pi n^2 r^2 I$

B

$\mu 0 \pi n^2 r^2 1$

C

$\mu_0 n^2 r^2 I$

D

$\left(\mu_0 / 2 \pi\right) n^2 r^2 I$

Open complete paper

Showing 20 of 22 questions