Rotational Motion PYQs - Last 10 Years
AIIMS / Physics / Mechanics / 5 recent questions
PhysicsMechanics2010-2019
Practice 5 AIIMS Physics questions from Rotational Motion. Use the year-wise and type-wise breakdown to prioritize recent PYQs, then continue into the question list below.
5
PYQs on Page
Physics / Mechanics
2017-2019
Year Range
Based on indexed question metadata
5
Last 5 Years
2015-2019
5
Last 10 Years
2010-2019
Recent Year Trend
2017
2018
2019Latest year
20172 max PYQs/year2019
Question Types
5PYQs
MCQ100%
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#1 Unknown5
5 in last 5 years5 in last 10 years
Last 10 Years Rotational Motion Questions
Showing 5 of 5 filtered questions.
1Rotational Motion
A sphere pure rolls on a rough inclined
plane with initial velocity 2.8 m/s. Find the
maximum distance on the inclined plane.
plane with initial velocity 2.8 m/s. Find the
maximum distance on the inclined plane.
MCQ+1 / -0.332019
2Rotational Motion
Assertion The angular momentum of
system always remain constant.
Reason For a system, \(\tau_{\mathrm{ext}}=\frac{d L}{d t}=0\)
system always remain constant.
Reason For a system, \(\tau_{\mathrm{ext}}=\frac{d L}{d t}=0\)
MCQ+1 / -0.332018
3Rotational Motion
A thin horizontal circular disc is rotating about a vertical axis passing through its centre. An insect is at rest at a point near the rim of disc. The insect now moves along a diameter of the disc to reach its other end. During the journey...
MCQ+1 / -0.332018
4Rotational Motion
Assertion : The total kinetic energy of a rolling solid sphere is the sum of translational and rotational kinetic energies.
Reason : For all solid bodies, total kinetic energy is always twice of translational kinetic energy.
Reason : For all solid bodies, total kinetic energy is always twice of translational kinetic energy.
MCQ+1 / -0.332017
5Rotational Motion
A boy is pushing a ring of mass \(3 \mathrm{~kg}\) and radius \(0.6 \mathrm{~m}\) with a stick as shown in figure. The stick applies a force of \(3 \mathrm{~N}\) on the ring and rolls it without slipping with an acceleration of 0.4 m/s$$^2$...
MCQ+1 / -0.332017
