Chapter 11 – Rotational Motion
A solid ring, sphere and a disc are rolling down from the top of the same height, then the sequence to reach on the surface is
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Nov
A solid ring, sphere and a disc are rolling down from the top of the same height, then the sequence to reach on the surface is A solid ring sphere and a disc are rolling down from the top of the same height then the sequence to reach on the surface is November 27, 2020 [...]
A solid sphere, disc and solid cylinder all of the same mass are allowed to roll down (from rest) on an inclined plane, then
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Nov
A solid sphere, disc and solid cylinder all of the same mass are allowed to roll down (from rest) on an inclined plane, then A solid sphere disc and solid cylinder all of the same mass are allowed to roll down (from rest) on an inclined plane then November 27, 2020 Category: Cengage NEET by [...]
A solid sphere, a hollow sphere and a ring are released from top of an inclined plane (frictionless) so that they slide down the plane. Then maximum acceleration down the plane is for (no rolling) :
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Nov
A solid sphere, a hollow sphere and a ring are released from top of an inclined plane (frictionless) so that they slide down the plane. Then maximum acceleration down the plane is for (no rolling) : a hollow sphere and a ring are released from top of an inclined plane (frictionless) so that they slide [...]
A solid cylinder rolls down an inclined plane of height 3 m and reaches the bottom of plane with angular velocity, of 2 2–√rads^−1 . The radius of cylinder must be (Take g = 10 ms^−2 )
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Nov
A solid cylinder rolls down an inclined plane of height 3 m and reaches the bottom of plane with angular velocity, of 2 2–√rads^−1 . The radius of cylinder must be (Take g = 10 ms^−2 ) A solid cylinder rolls down an inclined plane of height 3 m and reaches the bottom of plane [...]
A hollow sphere (i) rolls and (ii) slides down an inclined plane. The ratio of the accelerations in the two cases is
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Nov
A hollow sphere (i) rolls and (ii) slides down an inclined plane. The ratio of the accelerations in the two cases is A hollow sphere (i) rolls and (ii) slides down an inclined plane. The ratio of the accelerations in the two cases is November 27, 2020 Category: Cengage NEET by C.P Singh , Chapter [...]
A thin uniform circular ring is rolling down an inclined plane of inclination 30^∘ without slipping. Its linear acceleration along the inclined plane will be
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Nov
A thin uniform circular ring is rolling down an inclined plane of inclination 30^∘ without slipping. Its linear acceleration along the inclined plane will be A thin uniform circular ring is rolling down an inclined plane of inclination 30∘ without slipping. Its linear acceleration along the inclined plane will be November 27, 2020 Category: Cengage [...]
A body of mass m slides down an incline and reaches the bottom with a velocity v. If the same mass was in the form of a ring which rolls down this incline, the velocity of the ring at the bottom would have been:
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Nov
A body of mass m slides down an incline and reaches the bottom with a velocity v. If the same mass was in the form of a ring which rolls down this incline, the velocity of the ring at the bottom would have been: A body of mass m slides down an incline and reaches [...]
A solid cylinder of mass M and radius R rolls without slipping down an inclined plane of length L and height h. What is the speed of its centre of mass when the cylinder reaches its bottom ?
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Nov
A solid cylinder of mass M and radius R rolls without slipping down an inclined plane of length L and height h. What is the speed of its centre of mass when the cylinder reaches its bottom ? A solid cylinder of mass M and radius R rolls without slipping down an inclined plane of [...]
A disc of mass M and radius R is rolling with angular speed ω on a horizontal plane as shown in figure. The magnitude of angular momentum of the disc about the origin O is:
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Nov
A disc of mass M and radius R is rolling with angular speed ω on a horizontal plane as shown in figure. The magnitude of angular momentum of the disc about the origin O is: A disc of mass M and radius R is rolling with angular speed ω on a horizontal plane as shown [...]
A small object of uniform density rolls up a curved surface with an initial velocity v. It reaches up to a maximum height of 3v^2/4g with respect to the initial position. The object is
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Nov
A small object of uniform density rolls up a curved surface with an initial velocity v. It reaches up to a maximum height of 3v^2/4g with respect to the initial position. The object is A small object of uniform density rolls up a curved surface with an initial velocity v. It reaches up to a [...]