NEET UG Rotational Motion 2025 Important Questions: Physics is both a complex and scoring section in NEET. Students should gain adequate insight into the question types, chapter weigahge and marks distribution to make study plans effectively. As per previous year trends, the questions are prepared from class 11 and 12 syllabus; class 12 topics carry maximum weigtahge. Among the important chapters in NEET Physics, Rotational Motion is crucial and is part of class 11 syllabus. Students can expect equation based problems that require good practice. To fetch maximum marks from this chapters, it is vital to adopt to the question pattern and know the total marks expected from the topic.
We have provided here NEET UG Rotational Motion 2025 important questions on various topics including moment of inertia, rolling motion, rolling motion on inclined plane and others.
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NEET UG Rotational Motion 2025: Important Questions
Practice these NEET UG Rotaional 2025 important question and enhance your confidence in accurately solving the problems on the exam day.
Q1) Two homogeneous spheres A and B of masses m and 2m having radii 2a and a respectively are placed in touch. The distance of centre of mass from first sphere is:
- A
- 2a
- 3a
- None of these
Q2) A circular disc of radius R is removed from a bigger circular disc of radius 2R such that the circumferences of the disc coincide. The centre of mass of the new disc from the centre of bigger disc is
- R/3
- R/2
- R/6
- R/4
Q3) From a disc of radius R and mass M, a circular hole of dimeter R, whose rim passes through the centre is cut. What is the moment of inertia of the remaining part the disc about a perpendicular axis, passing through teh centre?
- 9MR2/32
- 15MR2/32
- 11MR2/32
- 13MR2/32
Q4) When a ceiling fan is switched on, it makes 10 revolutions in the first 4 second. Assuming a uniform angular acceleration, how many revolutions it will make in the next 4 seconds?
- 10
- 20
- 30
- 40
Q5) The direction of angular velocity vector is
- Radially outward
- Radially inward
- Along the tangent to the circular path
- Along the axis rotation
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