A solid non uniform sphere of mass M and radius R is released on smooth horizontal surface from the situation shown in the figure. In given situation centre of mass (C) and geometric centre (0) are on same horizontal line. The distance OC is 2. The moment of inertia about axis passing through C and perpendicular to the plane of the MR² Acceleration of centre of mass is a and angular acceleration of the 2 paper is lo sphere is a.

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R. The
2
A solid non uniform sphere of mass M and radius R is released on smooth horizontal
surface from the situation shown in the figure. In given situation centre of mass (C)
and geometric centre (O) are on same horizontal line. The distance OC is
moment of inertia about axis passing through C and perpendicular to the plane of the
Acceleration of centre of mass is a and angular acceleration of the
MR²
2
paper is lo
sphere is a.
(A)
Just after release a=₁
(B) Just after release a =
√5α
2
aR
aR
2
0
R
NIJ
2
(C) At the moment when centre of mass is at the lowest point, angular
2g
velocity of the sphere is
R
(D) At the moment when centre of mass is at the lowest point, angular
g
velocity of the sphere is
2R
Transcribed Image Text:R. The 2 A solid non uniform sphere of mass M and radius R is released on smooth horizontal surface from the situation shown in the figure. In given situation centre of mass (C) and geometric centre (O) are on same horizontal line. The distance OC is moment of inertia about axis passing through C and perpendicular to the plane of the Acceleration of centre of mass is a and angular acceleration of the MR² 2 paper is lo sphere is a. (A) Just after release a=₁ (B) Just after release a = √5α 2 aR aR 2 0 R NIJ 2 (C) At the moment when centre of mass is at the lowest point, angular 2g velocity of the sphere is R (D) At the moment when centre of mass is at the lowest point, angular g velocity of the sphere is 2R
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