1
COMEDK 2025 Afternoon Shift
MCQ (Single Correct Answer)
+1
-0
To get 300 MW electric power for half an hour, how much mass is to be completely converted into energy?
A
$6 \times 10^{-2} \mathrm{~kg}$
B
$3 \times 10^{-6} \mathrm{~kg}$
C
$6 \times 10^{-3} \mathrm{~kg}$
D
$6 \times 10^{-6} \mathrm{~kg}$
2
COMEDK 2025 Afternoon Shift
MCQ (Single Correct Answer)
+1
-0

The electric field versus distance graph is shown as given. Select the correct statement from the following.

E- electric field

R-radius

r - distance from the centre

COMEDK 2025 Afternoon Shift Physics - Electrostatics Question 6 English

A
The graph shows the variation of the electric field intensity with distance from the centre of a uniformly charged conducting ring of radius R.
B
The graph shows the variation of the electric field intensity with distance from the centre of a uniformly charged non conducting solid sphere of radius R.
C
The graph shows the variation of the electric field intensity with distance from the centre of a uniformly charged conducting solid sphere of radius R.
D
The graph shows the variation of the electric field intensity with distance from the centre of a uniformly charged non conducting cylinder of radius R.
3
COMEDK 2025 Afternoon Shift
MCQ (Single Correct Answer)
+1
-0
One end of a nylon rope of length 1 and diameter 10 mm is fixed to free limb. A monkey weighing 100 N jumps to catch the free end and stays there. The change in diameter of the rope is (Young's modulus of the wire is Y and Poisson Ratio is $\sigma$ )
A
$\frac{4000 \sigma}{\pi Y}$
B
$\frac{400 \sigma}{\pi Y}$
C
$\frac{40000 \sigma}{\pi Y}$
D
$\frac{40000 \pi}{\sigma Y}$
4
COMEDK 2025 Afternoon Shift
MCQ (Single Correct Answer)
+1
-0
Two spherical planets P and Q have the same uniform density $\rho$, and masses Mp and $\mathrm{MQ}_{\mathrm{Q}}$ and surface areas A and 4 A respectively. Another spherical planet $R$ also has the same uniform density $\rho$, and its mass is $\mathrm{Mp}+\mathrm{MQ}$. The escape velocities from these planets is
A
$V_R>V_Q>V_P$
B
$\mathrm{V}_{\mathrm{R}}<\mathrm{V}_{\mathrm{Q}}<\mathrm{V}_{\mathrm{P}}$
C
$V_R=V_Q>V_P$
D
$V_R>V_Q=V_P$
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