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1
JEE Main 2026 (Online) 28th January Morning Shift
MCQ (Single Correct Answer)
+4
-1
Change Language

Two circular discs of radius each 10 cm are joined at their centres by a rod of length 30 cm and mass 600 gm as shown in figure.

If the mass of each disc is 600 gm and applied torque between two discs is $43 \times 10^5$ dyne.cm, the angular acceleration of the discs about the given axis $A B$ is $\_\_\_\_$ $\mathrm{rad} / \mathrm{s}^2$.

JEE Main 2026 (Online) 28th January Morning Shift Physics - Rotational Motion Question 23 English
A

100

B

22

C

27

D

11

2
JEE Main 2026 (Online) 28th January Morning Shift
MCQ (Single Correct Answer)
+4
-1
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Which of the following best represents the temperature versus heat supplied graph for water, in the range of $-20^{\circ} \mathrm{C}$ to $120^{\circ} \mathrm{C}$?

A
JEE Main 2026 (Online) 28th January Morning Shift Physics - Heat and Thermodynamics Question 33 English Option 1
B
JEE Main 2026 (Online) 28th January Morning Shift Physics - Heat and Thermodynamics Question 33 English Option 2
C
JEE Main 2026 (Online) 28th January Morning Shift Physics - Heat and Thermodynamics Question 33 English Option 3
D
JEE Main 2026 (Online) 28th January Morning Shift Physics - Heat and Thermodynamics Question 33 English Option 4
3
JEE Main 2026 (Online) 28th January Morning Shift
MCQ (Single Correct Answer)
+4
-1
Change Language

Assuming in forward bias condition there is a voltage drop of 0.7 V across a silicon diode, the current through diode $D_1$ in the circuit is $\_\_\_\_$ mA .

(Assume all diodes in the given circuit are identical)

JEE Main 2026 (Online) 28th January Morning Shift Physics - Semiconductor Question 19 English
A

17.6

B

18.8

C

20.15

D

11.7

4
JEE Main 2026 (Online) 28th January Morning Shift
MCQ (Single Correct Answer)
+4
-1
Change Language

The electric current in the circuit is given as $i=i_{\mathrm{o}}(t / T)$. The r.m.s current for the period $t=0$ to $t=T$ is $\_\_\_\_$ .

A

$\frac{i_{\mathrm{o}}}{\sqrt{2}}$

B

$\frac{i_o}{\sqrt{3}}$

C

$i_{\mathrm{o}}$

D

$\frac{i_o}{\sqrt{6}}$

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