1
JEE Main 2026 (Online) 2nd April Morning Shift
MCQ (Single Correct Answer)
+4
-1
Change Language

When a coil is placed in a time dependent magnetic field the power dissipated in it is $P$. The number of turns, area of the coil and radius of the coil wire are $N$, $A$ and $r$ respectively. For a second coil number of turns, area of the coil and radius of the coil wire are $2N$, $2A$ and $3r$ respectively. When the first coil is replaced with second coil the power dissipated in it is $\sqrt{2} \,\alpha P$. The value of $\alpha$ is ______.

A

36

B

128 $ \sqrt{2} $

C

16

D

64

2
JEE Main 2026 (Online) 24th January Morning Shift
MCQ (Single Correct Answer)
+4
-1
Change Language

$$ \text { Match the LIST-I with LIST-II } $$

List-I List-II
A. Magnetic induction I.
<mi mathvariant="normal">M</mi>

<mi mathvariant="normal">L</mi>

<mrow data-mjx-texclass="ORD">

  <mi mathvariant="normal">T</mi>

</mrow>

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  <mo>−</mo>

  <mn>2</mn>

</mrow>

<mrow data-mjx-texclass="ORD">

  <mtext> </mtext>

  <mi mathvariant="normal">A</mi>

</mrow>

<mrow data-mjx-texclass="ORD">

  <mo>−</mo>

  <mn>2</mn>

</mrow>

<mi mathvariant="normal">M</mi>

<mi mathvariant="normal">L</mi>

<mrow data-mjx-texclass="ORD">

  <mi mathvariant="normal">T</mi>

</mrow>

<mrow data-mjx-texclass="ORD">

  <mo>−</mo>

  <mn>2</mn>

</mrow>

<mrow data-mjx-texclass="ORD">

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  <mi mathvariant="normal">A</mi>

</mrow>

<mrow data-mjx-texclass="ORD">

  <mo>−</mo>

  <mn>2</mn>

</mrow>

MLT^(-2)A^(-2)
B. Magnetic flux II.
<mi mathvariant="normal">M</mi>

<mrow data-mjx-texclass="ORD">

  <mi mathvariant="normal">L</mi>

</mrow>

<mn>2</mn>

<mrow data-mjx-texclass="ORD">

  <mtext> </mtext>

  <mi mathvariant="normal">T</mi>

</mrow>

<mrow data-mjx-texclass="ORD">

  <mo>−</mo>

  <mn>2</mn>

</mrow>

<mrow data-mjx-texclass="ORD">

  <mtext> </mtext>

  <mi mathvariant="normal">A</mi>

</mrow>

<mrow data-mjx-texclass="ORD">

  <mo>−</mo>

  <mn>2</mn>

</mrow>

<mi mathvariant="normal">M</mi>

<mrow data-mjx-texclass="ORD">

  <mi mathvariant="normal">L</mi>

</mrow>

<mn>2</mn>

<mrow data-mjx-texclass="ORD">

  <mtext></mtext>

  <mi mathvariant="normal">T</mi>

</mrow>

<mrow data-mjx-texclass="ORD">

  <mo>−</mo>

  <mn>2</mn>

</mrow>

<mrow data-mjx-texclass="ORD">

  <mtext></mtext>

  <mi mathvariant="normal">A</mi>

</mrow>

<mrow data-mjx-texclass="ORD">

  <mo>−</mo>

  <mn>2</mn>

</mrow>

ML^(2)T^(-2)A^(-2)
C. Magnetic permeability III.
<mi mathvariant="normal">M</mi>

<mrow data-mjx-texclass="ORD">

  <mi mathvariant="normal">L</mi>

</mrow>

<mn>0</mn>

<mrow data-mjx-texclass="ORD">

  <mtext> </mtext>

  <mi mathvariant="normal">T</mi>

</mrow>

<mrow data-mjx-texclass="ORD">

  <mo>−</mo>

  <mn>2</mn>

</mrow>

<mrow data-mjx-texclass="ORD">

  <mtext> </mtext>

  <mi mathvariant="normal">A</mi>

</mrow>

<mrow data-mjx-texclass="ORD">

  <mo>−</mo>

  <mn>1</mn>

</mrow>

<mi mathvariant="normal">M</mi>

<mrow data-mjx-texclass="ORD">

  <mi mathvariant="normal">L</mi>

</mrow>

<mn>0</mn>

<mrow data-mjx-texclass="ORD">

  <mtext></mtext>

  <mi mathvariant="normal">T</mi>

</mrow>

<mrow data-mjx-texclass="ORD">

  <mo>−</mo>

  <mn>2</mn>

</mrow>

<mrow data-mjx-texclass="ORD">

  <mtext></mtext>

  <mi mathvariant="normal">A</mi>

</mrow>

<mrow data-mjx-texclass="ORD">

  <mo>−</mo>

  <mn>1</mn>

</mrow>

ML^(0)T^(-2)A^(-1)
D. Self inductance IV.
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<mrow data-mjx-texclass="ORD">

  <mi mathvariant="normal">L</mi>

</mrow>

<mn>2</mn>

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  <mtext> </mtext>

  <mi mathvariant="normal">T</mi>

</mrow>

<mrow data-mjx-texclass="ORD">

  <mo>−</mo>

  <mn>2</mn>

</mrow>

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  <mtext> </mtext>

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</mrow>

<mrow data-mjx-texclass="ORD">

  <mo>−</mo>

  <mn>1</mn>

</mrow>

<mi mathvariant="normal">M</mi>

<mrow data-mjx-texclass="ORD">

  <mi mathvariant="normal">L</mi>

</mrow>

<mn>2</mn>

<mrow data-mjx-texclass="ORD">

  <mtext></mtext>

  <mi mathvariant="normal">T</mi>

</mrow>

<mrow data-mjx-texclass="ORD">

  <mo>−</mo>

  <mn>2</mn>

</mrow>

<mrow data-mjx-texclass="ORD">

  <mtext></mtext>

  <mi mathvariant="normal">A</mi>

</mrow>

<mrow data-mjx-texclass="ORD">

  <mo>−</mo>

  <mn>1</mn>

</mrow>

ML^(2)T^(-2)A^(-1)

Choose the correct answer from the options given below:

A

A-III, B-IV, C-II, D-I

B

A-I, B-III, C-IV, D-II

C

A-IV, B-III, C-I, D-II

D

A-III, B-IV, C-I, D-II

3
JEE Main 2026 (Online) 23rd January Evening Shift
MCQ (Single Correct Answer)
+4
-1
Change Language

A circular loop of radius 7 cm is placed in uniform magnetic field of 0.2 T directed perpendicular to plane of loop. The loop is converted into a square loop in 0.5 s . The EMF induced in the loop is $\_\_\_\_$ mV.

A

13.2

B

6.6

C

1.32

D

8.25

4
JEE Main 2026 (Online) 23rd January Evening Shift
MCQ (Single Correct Answer)
+4
-1
Change Language

Suppose a long solenoid of 100 cm length, radius 2 cm having 500 turns per unit length, carries a current $I=10 \sin (\omega \mathrm{t}) \mathrm{A}$, where $\omega=1000 \mathrm{rad} . / \mathrm{s}$. A circular conducting loop $(B)$ of radius 1 cm coaxially slided through the solenoid at a speed $v=1 \mathrm{~cm} / \mathrm{s}$. The r.m.s. current through the loop when the coil $B$ is inserted 10 cm inside the solenoid is $${\alpha \over {\sqrt 2 }}\mu A$$. The value of $\alpha$ is $\_\_\_\_$ .

[Resistance of the loop $=10 \Omega$ ]

A

80

B

280

C

100

D

197

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