When objects interact, their total momentum before interaction is the same as after interaction
The momentum conservation law is logically equivalent to Newton's third motion rule (behavior reaction rule).
Backflush occurs when an object suddenly moves backwards in response to pressing or pushing another object.
Since the two objects are initially in contact with each other, they are stationary with respect to each other (Σp = 0).
To keep the total momentum at zero, the momentum of the object is equal and opposite (+ p 1 '= - p 2').
Although momentum conservation and momentum conservation merely show that the momentum of the system is the same, even if there are collisions and interactions in the system, the overall force does not change. Since the momentum is mass velocity again, the mass is usually a kilogram, a speed of several meters per second. Well, if you have seen the ball on the billiard table, you will observe this. Yes, if you have a ball and it moves to a certain momentum and hit another ball, the ball will keep the same momentum. As the ball has the same quality, it will keep moving at the same speed
Like Newton's law, conservation of momentum is a fundamental principle of physics, an essential part of everyday life. However, unlike Newton's law, conservation of momentum seems to be completely intuitive. When the ball is thrown into the air, it seems that air is lost with some momentum. By doing this, we can prove the conservation of momentum in real environments where caution is necessary and difficult. To measure the momentum conservation in the laboratory, two carts are used along a frictionless orbit. Because the vector moves only along one axis, this makes calculation easier. Therefore, the positive direction can be moved to the right and the negative direction can be moved to the left. The cart has a spring pop plunger that converts its position energy into the kinetic energy of the cart. It hits another car and its power is transferred partly or completely. These speeds of two carts are measured by the drawing device.