171. A thin wire of length $$L$$  and uniform linear mass density $$\rho $$  is bent into a circular loop with centre at $$O$$  as shown. The moment of inertia of the loop about the axis $$XX’$$  is
Rotational Motion mcq question image

A $$\frac{{\rho {L^3}}}{{8{\pi ^2}}}$$
B $$\frac{{\rho {L^3}}}{{16{\pi ^2}}}$$
C $$\frac{{5\rho {L^3}}}{{16{\pi ^2}}}$$
D $$\frac{{3\rho {L^3}}}{{8{\pi ^2}}}$$
Answer :   $$\frac{{3\rho {L^3}}}{{8{\pi ^2}}}$$
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172. From a disc of radius $$R$$ and mass $$M,$$ a circular hole of diameter $$R,$$ whose rim passes through the centre is cut. What is the moment of inertia of the remaining part of the disc about a perpendicular axis, passing through the centre?

A $$\frac{{13\,M{R^2}}}{{32}}$$
B $$\frac{{11\,M{R^2}}}{{32}}$$
C $$\frac{{9\,M{R^2}}}{{32}}$$
D $$\frac{{15\,M{R^2}}}{{32}}$$
Answer :   $$\frac{{13\,M{R^2}}}{{32}}$$
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173. When a mass is rotating in a plane about a fixed point, its angular momentum is directed along

A a line perpendicular to the plane of rotation
B the line making an angle of $${45^ \circ }$$ to the plane of rotation
C the radius
D the tangent to the orbit
Answer :   a line perpendicular to the plane of rotation
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174. The moment of inertia of a uniform circular disc (figure) is maximum about an axis perpendicular to the disc and passing through
Rotational Motion mcq question image

A $$B$$
B $$C$$
C $$D$$
D $$A$$
Answer :   $$B$$
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175. From a solid sphere of mass $$M$$ and radius $$R$$ a cube of maximum possible volume is cut. Moment of inertia of cube about an axis passing through its center and perpendicular to one of its faces is:

A $$\frac{{4M{R^2}}}{{9\sqrt 3 \pi }}$$
B $$\frac{{4M{R^2}}}{{3\sqrt 3 \pi }}$$
C $$\frac{{M{R^2}}}{{32\sqrt 2 \pi }}$$
D $$\frac{{M{R^2}}}{{16\sqrt 2 \pi }}$$
Answer :   $$\frac{{4M{R^2}}}{{9\sqrt 3 \pi }}$$
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176. $$ABC$$  is a right angled triangular plate of uniform thickness. The sides are such that $$AB > BC$$   as shown in figure. $${I_1},{I_1},{I_3}$$   are moments of inertia about $$AB,\,BC$$  and $$AC$$ respectively. Then, which of the following relations is correct?
Rotational Motion mcq question image

A $${I_1} = {I_1} = {I_3}$$
B $${I_2} > {I_1} > {I_3}$$
C $${I_3} < {I_2} < {I_1}$$
D $${I_3} > {I_1} > {I_2}$$
Answer :   $${I_2} > {I_1} > {I_3}$$
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177. A mass $$m$$ hangs with the help of a string wrapped around a pulley on a frictionless bearing. The pulley has mass $$m$$ and radius $$R.$$ Assuming pulley to be a perfect uniform circular disc, the acceleration of the mass $$m,$$ if the string does not slip on the pulley, is:

A $$g$$
B $$\frac{2}{3}g$$
C $$\frac{g}{3}$$
D $$\frac{3}{2}g$$
Answer :   $$\frac{2}{3}g$$
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178. A rod $$PQ$$  of mass $$M$$ and length $$L$$ is hinged at end $$P.$$ The rod is kept horizontal by a massless string tied to a point $$Q$$ as shown in figure. When string is cut, the initial angular acceleration of the rod is
Rotational Motion mcq question image

A $$\frac{{3g}}{{2L}}$$
B $$\frac{g}{L}$$
C $$\frac{{2g}}{L}$$
D $$\frac{{2g}}{{3L}}$$
Answer :   $$\frac{{3g}}{{2L}}$$
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179. If $${I_{xy}}$$ is the moment of inertia of a ring about a tangent in the plane of the ring and $${I_{x'y'}}$$ is the moment of inertia of a ring about a tangent perpendicular to the plane of the ring then

A $${I_{xy}} = {I_{x'y'}}$$
B $${I_{xy}} = \frac{1}{2}{I_{x'y'}}$$
C $${I_{x'y'}} = \frac{3}{4}{I_{xy}}$$
D $${I_{xy}} = \frac{3}{4}{I_{x'y'}}$$
Answer :   $${I_{xy}} = \frac{3}{4}{I_{x'y'}}$$
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180. A circular platform is free to rotate in a horizontal plane about a vertical axis passing through its centre. A tortoise is sitting at the edge of the platform. Now, the platform is given an angular velocity $${\omega _0}.$$  When the tortoise move along a chord of the platform with a constant velocity (with respect to the platform), the angular velocity of the platform $$\omega \left( t \right)$$  will vary with time $$t$$  as-

A Rotational Motion mcq option image
B Rotational Motion mcq option image
C Rotational Motion mcq option image
D Rotational Motion mcq option image
Answer :   Rotational Motion mcq option image
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