Electromagnetism
Current Electricity
MCQ (Single Correct Answer)
Moving Charges and Magnetism
MCQ (Single Correct Answer)
Magnetism and Matter
MCQ (Single Correct Answer)
Electromagnetic Waves
MCQ (Single Correct Answer)
Electromagnetic Induction
MCQ (Single Correct Answer)
Alternating Current
MCQ (Single Correct Answer)
Modern Physics
Dual Nature of Radiation
MCQ (Single Correct Answer)
Semiconductor Devices and Logic Gates
MCQ (Single Correct Answer)
Communication Systems
MCQ (Single Correct Answer)
1
MHT CET 2023 11th May Evening Shift
MCQ (Single Correct Answer)
+1
-0

From a disc of mass '$$M$$' and radius '$$R$$', a circular hole of diameter '$$R$$' is cut whose rim passes through the centre. The moment of inertia of the remaining part of the disc about perpendicular axis passing through the centre is

A
$$\frac{13 \mathrm{MR}^2}{32}$$
B
$$\frac{11 \mathrm{MR}^2}{32}$$
C
$$\frac{9 \mathrm{MR}^2}{32}$$
D
$$\frac{7 \mathrm{MR}^2}{32}$$
2
MHT CET 2023 11th May Morning Shift
MCQ (Single Correct Answer)
+1
-0

A particle moves along a circular path with decreasing speed. Hence

A
its resultant acceleration is towards the centre.
B
it moves in a spiral path with decreasing radius.
C
the direction of angular momentum remains constant.
D
its angular momentum remains constant
3
MHT CET 2023 11th May Morning Shift
MCQ (Single Correct Answer)
+1
-0

Radius of gyration of a thin uniform circular disc about the axis passing through its centre and perpendicular to its plane is $$\mathrm{K}_{\mathrm{c}}$$. Radius of gyration of the same disc about a diameter of the disc is $$K_d$$. The ratio $$K_c: K_d$$ is

A
$$\sqrt{2}: 1$$
B
$$1: \sqrt{2}$$
C
$$2: 1$$
D
$$1: 4$$
4
MHT CET 2023 11th May Morning Shift
MCQ (Single Correct Answer)
+1
-0

A disc has mass $$M$$ and radius $$R$$. How much tangential force should be applied to the rim of the disc, so as to rotate with angular velocity '$$\omega$$' in time $$\mathrm{t}$$ ?

A
$$\frac{M R \omega}{4 t}$$
B
$$\frac{\mathrm{MR} \omega}{2 \mathrm{t}}$$
C
$$\frac{\mathrm{MR} \omega}{\mathrm{t}}$$
D
$$\mathrm{MR} \omega \mathrm{t}$$
Questions Asked from MCQ (Single Correct Answer)
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