Home
Class 12
PHYSICS
A uniform rod of mass 3 m and length l i...


A uniform rod of mass 3 m and length `l` is lying on a smooth horizontal surface. Two particle of mass `m` and 2 m moving with speed `2v_(0)` and `v_(0)` in the opposite directly hit the rod perpendicularly at a distance `(l)/(3)` and `(l)/(6)` from the midpoint O of the rod ad stick to it after collision. if the loss in kinetic energy of the system due to collision is `(n)/(5)mv_(0)^(2)` find the value of n.

Text Solution

Verified by Experts

The correct Answer is:
9


From censervation of momentum
`2mv_(0)-2mv_(0)=6mv_(cm)`
`impliesv_(cm)=0`
`I_(cm)=(3ml^(2))/(12)+(2ml^(2))/(36)+(ml^(2))/(9)=(5)/(12)ml^(2)`
From conservation of angular momentum
`2mv_(0)(l)/(6)+2mv_(0)(l)/(3)=(5)/(12)ml^(2)omega`
`omega=(12v_(0))/(5l)`
loss in kinetic energy of system `k_(i)-k_(f)`
`=(1)/(2)mv_(0)^(2)+(1)/(2)mxx4v_(0)^(2)-(1)/(2)(5)/(12)ml^(2)((12v_(0))/(5l))^(2)=(9)/(5)mv_(0)^(2)`
Promotional Banner

Similar Questions

Explore conceptually related problems

A rod of mass m and length l is lying on a horizontal table. Work done in making it stand on one end will be

A uniform rod of length 8 a and mass 6 m lies on a smooth horizontal surface. Two point masses m and 2 m moving in the same plane with speed 2 v and v respectively strike the rod perpendicular at distances a and 2a from the mid point of the rod in the opposite directions and stick to the rod. The angular velocity of the system immediately after the collision is

A uniform rod of mass m and length L is at rest on a smooth horizontal surface. A ball of mass m, moving with velocity v_0 , hits the rod perpendicularly at its one end and sticks to it. The angular velocity of rod after collision is

A uniform rod AB of mass m and length l is at rest on a smooth horizontal surface. An impulse J is applied to the end B , perpendicular to the rod in the horizontal direction. Speed of particlem P at a distance (l)/(6) from the centre towards A of the rod after time t = (pi m l)/(12 J) is.

A uniform rod of length L lies on a smooth horizontal table. The rod has a mass M . A particle of mass m moving with speed v strikes the rod perpendicularly at one of the ends of the rod sticks to it after collision. Find the velocity of the particle with respect to C before the collision

A uniform rod of mass M and length a lies on a smooth horizontal plane. A particle of mass m moving at a speed v perpendicular to the length of the rod strikes it at a distance a/4 from the centre and stops after the collision. Find a. the velocity of the cente of the rod and b. the angular velocity of the rod abut its centre just after the collision.

A uniform rod of mass m and length l is lying on a smooth table. An impulse J acts on the rod momentarily as shown in figure at point R. Just after that:

A thin uniform rod of mass m and length l is kept on a smooth horizontal surface such that it can move freely. At what distance from centre of rod should a particle of mass m strike on the rod such that the point P at a distance l/3 from the end of the rod is instantaneously at rest just after the elastic collision?

A uniform rod of mass m=2 kg and length l is kept on a smooth horizontal plane. If the ends A and B of the rod move with speeds v and 2v respectively perpendicular to the rod, find the: a. angulr velocity of CM of the rod. b. Kinetic energy of the rod (in Joule).

A thin, uniform rod of mass M and length L is at rest on a smooth horizontal surface. A particle of same mass M collides with the rod at one end perpendicular to its length with velocity V_(@) and sticks to it. C is the middle point of the rod and D is a point at a distance of L/4 from end A. the time taken by the rod turn through 90^(@) after collisions.