what starts to move an object is force because it's pushing on the object and what stop's the obect from moveing is force too because if the force is going the oppisit way its going to stop the object.
The phenomenon where friction decreases as an object starts moving is called "kinetic friction." It is lower than static friction, which acts to resist the initial motion of an object at rest.
Static friction stops an object from moving. It is the force between two surfaces that are not moving relative to each other. Once the object starts moving, kinetic friction comes into play.
what starts to move an object is force because it's pushing on the object and what stop's the obect from moveing is force too because if the force is going the oppisit way its going to stop the object.
An object begins moving when a force is exerted on it, whether it is a push, pull, or some other interaction. To stop an object that is already moving, a force in the opposite direction is applied to slow it down or bring it to a halt.
kenetic friction
When you push something heavy, the resistance you feel decreases as the object starts moving because static friction transitions to kinetic friction. Static friction is the force that keeps an object at rest, while kinetic friction is the force that opposes motion once the object starts moving. As the object overcomes static friction and transitions to kinetic friction, the resistance you feel decreases.
what starts to move an object is force because it's pushing on the object and what stop's the obect from moveing is force too because if the force is going the oppisit way its going to stop the object.
Potential energy is stored energy that an object possesses due to its position or condition. This energy can be converted into kinetic energy when the object starts moving. Examples of potential energy include gravitational potential energy and elastic potential energy.
kinetic energy is the energy possessed by a moving object e.i. a boy kicking a ball and it starts moving
he starts stripping
the energy due to position potiential energy