201. A bullet of mass $$10\,g$$  and speed $$500\,m/s$$  is fired into a door and gets embedded exactly at the centre of the door. The door is $$1.0\,m$$  wide and weighs $$12\,kg.$$  It is hinged at one end and rotates about a vertical axis practically without friction. The angular speed of the door just after the bullet embeds into it will be :

A $$6.25\,rad/\sec $$
B $$0.625\,rad/\sec $$
C $$3.35\,rad/\sec $$
D $$0.335\,rad/\sec $$
Answer :   $$0.625\,rad/\sec $$
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202. A particle of mass $$m$$ is attached to a thin uniform rod of length a and mass $$4\,m.$$  The distance of the particle from the centre of mass of the rod is $$\frac{a}{4}.$$ The moment of inertia of the combination about an axis passing through $$O$$ normal to the rod is
Rotational Motion mcq question image

A $$\frac{{64}}{{48}}m{a^2}$$
B $$\frac{{91}}{{48}}m{a^2}$$
C $$\frac{{27}}{{48}}m{a^2}$$
D $$\frac{{51}}{{48}}m{a^2}$$
Answer :   $$\frac{{91}}{{48}}m{a^2}$$
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203. A disc is rolling without slipping with angular velocity $$\omega .$$   $$P$$ and $$Q$$  are two points equidistant from the centre $$C.$$  The order of magnitude of velocity is
Rotational Motion mcq question image

A $${v_Q} > {v_C} > {v_P}$$
B $${v_P} > {v_C} > {v_Q}$$
C $${v_P} = {v_C},\,{v_Q} = \frac{{{v_C}}}{2}$$
D $${v_P} < {v_C} > {v_Q}$$
Answer :   $${v_P} > {v_C} > {v_Q}$$
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204. A ball of mass $$0.25\,kg$$  attached to the end of a string of length $$1.96\,m$$  is moving in a horizontal circle. The string will break if the tension is more than $$25\,N.$$  What is the maximum speed with which the ball can be moved ?

A $$14\,m/s$$
B $$3\,m/s$$
C $$3.92\,m/s$$
D $$5\,m/s$$
Answer :   $$14\,m/s$$
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205. A thin circular ring of mass $$M$$ and radius $$r$$ is rotating about its axis with a constant angular velocity $$\omega .$$ Four objects each of mass $$m,$$ are kept gently to the opposite ends of two perpendicular diameters of the ring. The angular velocity of the ring will be

A $$\frac{{\left( {M + 4m} \right)\omega }}{M}$$
B $$\frac{{\left( {M - 4m} \right)\omega }}{{M + 4m}}$$
C $$\frac{{M\omega }}{{4m}}$$
D $$\frac{{M\omega }}{{M + 4m}}$$
Answer :   $$\frac{{M\omega }}{{M + 4m}}$$
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206. Angular momentum is

A vector (axial)
B vector (polar)
C scalar
D None of these
Answer :   vector (axial)
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207. Let $${\vec F}$$  be the force acting on a particle having position vector $$\vec r,$$  and $${\vec T}$$  be the torque of this force about the origin. Then-

A $$\vec r.\vec T = 0{\text{ and }}\vec F.\vec T \ne 0$$
B $$\vec r.\vec T \ne 0{\text{ and }}\vec F.\vec T = 0$$
C $$\vec r.\vec T \ne 0{\text{ and }}\vec F.\vec T \ne 0$$
D $$\vec r.\vec T = 0{\text{ and }}\vec F.\vec T = 0$$
Answer :   $$\vec r.\vec T = 0{\text{ and }}\vec F.\vec T = 0$$
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208. A tangential force of $$20\,N$$  is applied on a cylinder of mass $$4\,kg$$  and moment of inertia $$0.02\,kg\,{m^2}$$   about its own axis. If the cylinder rolls without slipping, then linear acceleration of its centre of mass will be
Rotational Motion mcq question image

A $$6.7\,m/{s^2}$$
B $$10\,m/{s^2}$$
C $$3.3\,m/{s^2}$$
D None of these
Answer :   $$6.7\,m/{s^2}$$
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209. Two bodies of masses $$2\,kg$$  and $$4\,kg$$  are moving with velocities $$2\,m/s$$  and $$10\,m/s$$  respectively along same direction. Then the velocity of their centre of mass will be

A $$8.1\,m/s$$
B $$7.3\,m/s$$
C $$6.4\,m/s$$
D $$5.3\,m/s$$
Answer :   $$7.3\,m/s$$
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210. A circular disc is to be made using iron and aluminium. To keep its moment of inertia maximum about a geometrical axis, it should be so prepared that

A aluminium is at the interior and iron surrounds it
B iron is at the interior and aluminium surrounds it
C aluminium and iron layers are in alternate order
D sheet of iron is used at both external surfaces and aluminium sheet as inner material
Answer :   aluminium is at the interior and iron surrounds it
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