A bomb is and divides into two parts whose ratio of masses is . If the kinetic energy of a smaller part is , then the momentum of a bigger part in will be
Step 1: Given data:
Step 2: Formula Used: Law of conservation of momentum, Total initial momentum Total final momentum of the system
Step 3: Calculate the ratio of velocities of masses and :
Let the Final velocity of the first part and the final velocity of body ,
The initial momentum of the system is zero.
The final momentum of the system is the sum of momentums of and , as the mass of is three times of
The initial momentum of the system = Final momentum of the system
……
The velocity of the bigger part is one-third the velocity of the smaller part.
Step 4: Find the velocity of mass A using
As we know the kinetic energy of mass (Given)
The velocity of mass is
Step 5: Find the momentum of mass ,
The magnitude of the momentum of mass is
Hence the momentum of mass is
Option A is correct.