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Electromagnetic Induction PYQs - Last 10 Years

JEE Advanced / Physics / Electricity / 13 recent questions

PhysicsElectricity2017-2026

Practice 13 JEE Advanced Physics questions from Electromagnetic Induction. Use the year-wise and type-wise breakdown to prioritize recent PYQs, then continue into the question list below.

13
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Physics / Electricity
2017-2026
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7
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2022-2026
13
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2017-2026

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7 in last 5 years13 in last 10 years

Last 10 Years Electromagnetic Induction Questions

Showing 13 of 13 filtered questions.

1Electromagnetic Induction
List-I contains four conducting loops lying in the $XY$ plane, as shown in the figures. The loops are rotating about $Z$ axis passing through the point $O$ with time period $T$ in clockwise direction.
The region $x>0$ contains a uniform mag...
MCQ+4 / -12026
2Electromagnetic Induction
Consider a circuit consisting of a capacitor of capacitance C and a coil with N turns per unit length, cross sectional area S and length d, where $d^2 \gg S$. There is another coil of length $d/2$, cross sectional area $S/2$ and $2N$ turns ...
MCQ+3 / -12026
3Electromagnetic Induction
A conducting square loop of side $L$, mass $M$ and resistance $R$ is moving in the $X Y$ plane with its edges parallel to the $X$ and $Y$ axes. The region $y \geq 0$ has a uniform magnetic field, $\vec{B}=B_0 \widehat{k}$. The magnetic fiel...
MCQM+4 / -22025
4Electromagnetic Induction
A conducting square loop initially lies in the $X Z$ plane with its lower edge hinged along the $X$-axis. Only in the region $y \geq 0$, there is a time dependent magnetic field pointing along the $Z$-direction, $\vec{B}(t)=B_0(\cos \omega ...
MCQ+3 / -12025
5Electromagnetic Induction
A region in the form of an equilateral triangle (in $x-y$ plane) of height $L$ has a uniform magnetic field $\vec{B}$ pointing in the $+z$-direction. A conducting loop $\mathrm{PQR}$, in the form of an equilateral triangle of the same heigh...
MCQ+3 / -12024
6Electromagnetic Induction
A thin conducting rod $M N$ of mass $20 ~\mathrm{gm}$, length $25 \mathrm{~cm}$ and resistance $10 ~\Omega$ is held on frictionless, long, perfectly conducting vertical rails as shown in the figure. There is a uniform magnetic field $B_0=4 ...
MCQ+3 / -12023
7Electromagnetic Induction
Consider an LC circuit, with inductance $L=0.1 \,\mathrm{H}$ and capacitance $C=10^{-3} \mathrm{~F}$, kept on a plane. The area of the circuit is $1 \mathrm{~m}^{2}$. It is placed in a constant magnetic field of strength $B_{0}$ which is pe...
INTEGER+3 / -02022
8Electromagnetic Induction
The inductors of two LR circuits are placed next to each other, as shown in the figure. The values of the self-inductance of the inductors, resistors, mutual-inductance and applied voltages are specified in the given circuit. After both the...
INTEGER+4 / -02020
9Electromagnetic Induction
A 10 cm long perfectly conducting wire PQ is moving with a velocity I cm/s on a pair of horizontal rails of zero resistance. One side of the rails is connected to an inductor L = 1 mH and a resistance R = 1\(\Omega\) as shown in figure. Th...
INTEGER+3 / -02019
10Electromagnetic Induction
A conducting wire of parabolic shape, initially y = x2, is moving with velocity \(v = {v_0}\widehat i\) in a non-uniform magnetic field \(B = {B_0}\left( {1 + {{\left( {{y \over L}} \right)}^\beta }} \right)\widehat k\), as shown in figure....
MCQM+4 / -12019
11Electromagnetic Induction
In the figure below, the switches \({S_1}\) and \({S_2}\) are closed simultaneously at \(t=0\) and a current starts to flow in the circuit. Both the batteries have the same magnitude of the electromotive force (emf) and the polarities are a...
MCQM+4 / -12018
12Electromagnetic Induction
A source of constant voltage V is connected to a resistance R and two ideal inductors L1 and L2 through a switch S as shown. There is no mutual inductance between the two inductors. The switch S is initially open. At t = 0, the switch is cl...
MCQM+4 / -22017
13Electromagnetic Induction
A circular insulated copper wire loop is twisted to form two loops of area \(A\) and \(2A\) as shown in the figure. At the point of crossing the wires remain electrically insulated from each other. The entire loop lies in the plane (of the ...
MCQM+4 / -12017