1
JEE Main 2026 (Online) 22nd January Evening Shift
MCQ (Single Correct Answer)
+4
-1
Change Language

Figure shows the circuit that contains three resistances ( $9 \Omega$ each) and two inductors ( 4 mH each). The reading of ammeter at the moment switch $K$ is turned ON , is $\_\_\_\_$ A.

JEE Main 2026 (Online) 22nd January Evening Shift Physics - Electromagnetic Induction Question 15 English
A

2

B

3

C

1

D
zero
2
JEE Main 2026 (Online) 22nd January Morning Shift
MCQ (Single Correct Answer)
+4
-1
Change Language

$X P Q Y$ is a vertical smooth long loop having a total resistance $R$ where $P X$ is parallel to $Q Y$ and separation between them is $l$. A constant magnetic field $B$ perpendicular to the plane of the loop exists in the entire space. A rod $C D$ of length $L(L>l)$ and mass $m$ is made to slide down from rest under the gravity as shown in figure. The terminal speed acquired by the rod is $\_\_\_\_$ $\mathrm{m} / \mathrm{s} .(\mathrm{g}=$ acceleration due to gravity)

JEE Main 2026 (Online) 22nd January Morning Shift Physics - Electromagnetic Induction Question 16 English
A

$\frac{m \mathrm{~g} R}{B^2 l^2}$

B

$\frac{2 m g R}{B^2 L^2}$

C

$\frac{2 m g R}{B^2 l^2}$

D

$\frac{8 m g R}{B^2 l^2}$

3
JEE Main 2026 (Online) 22nd January Morning Shift
MCQ (Single Correct Answer)
+4
-1
Change Language

Three identical coils $C_1, C_2$ and $C_3$ are closely placed such that they share a common axis. $C_2$ is exactly midway. $C_1$ carries current $I$ in anti-clockwise direction while $C_3$ carries current $I$ in clockwise direction. An induced current flows through $C_2$ will be in clockwise direction when

A

$C_1$ and $C_3$ move with equal speeds away from $C_2$

B

$C_1$ moves towards $C_2$ and $C_3$ moves away from $C_2$

C

$C_1$ and $C_3$ move with equal speeds towards $C_2$

D

$C_1$ moves away from $C_2$ and $C_3$ moves towards $C_2$

4
JEE Main 2026 (Online) 21st January Morning Shift
MCQ (Single Correct Answer)
+4
-1
Change Language

A conducting circular loop of area $1.0 \mathrm{~m}^2$ is placed perpendicular to a magnetic field which varies as $B=\sin (100 t)$ Tesla. If the resistance of the loop is $100 \Omega$, then the average thermal energy dissipated in the loop in one period is $\_\_\_\_$ J.

A

$\pi^2$

B

$\frac{\pi}{2}$

C

$\pi$

D

$2 \pi$

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