Home
Class 11
PHYSICS
A circular wooden hoop of mass m and rad...

A circular wooden hoop of mass `m` and radius `R` rests fiat on a frictionless surface. A bullet, also of mass `m` and moving with a velocity `v`, strikes the hoop and gets embedded in it. The thickness of the hoop is much smaller than `R`. Find the angular velocity with which the system rotates in after the bullet strikes the hoop.

Promotional Banner

Similar Questions

Explore conceptually related problems

A circular hoop of mass m and radius R rests flat on a horizontal frictionless surface A bullet also of mass m and moving with a velocity v strikes the hoop and gets embedded in it the thickness of the hoop is much smaller then R the angular velocity with which the system rotates after the bullet strikes the hoop is

A circular hoop of mass m and radius R rests flat on a horizontal smooth surface. A bullet of same mass m and moving with velocity upsilon strikes the hoop tangentially and gets embedded in it. Neglect the thickness of hoop in comparision to radius of hoop. Mark the correct option

A circular hoop of mass m and radius R rests flat on a horizontal smooth surface. A bullet of same mass m and moving with velocity upsilon strikes the hoop tangentially and gets embedded in it. Neglect the thickness of hoop in comparision to radius of hoop. What is the impulse on bullet?

A circular hoop of mass m and radius R rests flat on a horizontal smooth surface. A bullet of same mass m and moving with velocity upsilon strikes the hoop tangentially and gets embedded in it. Neglect the thickness of hoop in comparision to radius of hoop. Velocity of CM of hoop (ground frame)is

A circular hoop of mass m and radius R rests flat on a horizontal smooth surface. A bullet of same mass m and moving with velocity upsilon strikes the hoop tangentially and gets embedded in it. Neglect the thickness of hoop in comparision to radius of hoop. Velocity of bullet in ground frame, after collision is

A bullet of mass m moving with velocity v strikes a block of mass M at rest and gets embedded into it. The kinetic energy of the composite block will be

A bullet of mass m moving with velocity v strikes a block of mass M at rest and gets embedded into it. The kinetic energy of the composite block will be