The velocity of mass is and velocity of mass is after elastic collision.
Further explanation:
An elastic collision is a collision where both law of conservation of momentum and law of conservation of energy followed.
Given:
Mass of first body is .
Initial speed of first body is .
Mass of second body is .
Initial speed of second body is .
Concept:
To obtain the final velocity of both the body for an elastic collision, equation of conservation given as:
1.
Equation of conservation of momentum:
Here, is the mass of first body, is the initial speed of first body, is the final speed of first body, is the mass of second body, is the initial speed of second body and is the final speed of second body.
Substitute for , for , for and for in above equation and simplify.
Rearrange the above equation for value :
…… (I)
2.
Equation of conservation of Kinetic energy:
Here, is the mass of first body, is the initial speed of first body, is the final speed of first body, is the mass of second body, is the initial speed of second body and is the final speed of second body.
Substitute for , for , for and for in above equation and simplify.
Solving the above quadratic equation, we get
Put the value of in equation (I).
Thus, the velocity of mass is and velocity of mass is after elastic collision.
Learn more:
1. Volume of gas after expansion: brainly.com/question/9979757
2. Principle of conservation of momentum: brainly.com/question/9484203
3. Average translational kinetic energy: brainly.com/question/9078768
Answer Details:
Grade: Middle School
Subject: Physics
Chapter: Energy and conservation
Keywords:
Mass m, speed 2v, mass 4m, speed v, two collide elastically, conservation, momentum, energy, 1.4v, 0.4v, first, second, initial and final.