The correct option is A Ring
Let the mass of object be m kg and radius be r m
Initially,
vi=v, ωi=ω
For pure rolling⇒v=rω ...(i)
When object reaches maximum height (h=v2g), it stops completely, so vf=0, ωf=0
∴Applying mechanical energy conservation from initial to final position:
Gain in PEgravitational=Loss in KEtrans+ Loss in KErot
⇒mgh=12mv2+12ICMω2 ...(ii)
From Eq. (i) and (ii),
⇒mg(v2g)=12mv2+12ICM×(v2r2)
m=m2+ICM2r2
m2=ICM2r2
∴ICM=mr2
The moment of inertia of object passing through its centre or centre of mass matches with that of a ring.
⇒ Object in question is a ring.