Yes, friction between an object and a surface can gradually slow down the object's motion, eventually causing it to come to a stop. The amount of friction depends on the nature of the surfaces and the force pressing them together.
when an equal and opposite force is applied to it
Friction opposes the motion of an object, which can cause the object to decelerate or come to a stop. This opposes the idea in Newton's 1st Law of Motion, which states that an object will continue in its state of rest or uniform motion unless acted upon by an external force. Friction acts as a force that counters the inertial tendency of an object to remain in motion.
Static friction is the type of friction that occurs when an object is at rest and prevents it from moving when a force is applied to it.
Inertia itself does not cause objects in motion to come to rest. Objects in motion tend to continue moving in a straight line unless acted upon by an external force, in accordance with Newton's first law of motion. When external forces such as friction or air resistance act upon an object, they provide a force in the opposite direction of the object's motion, eventually causing it to come to rest.
Friction is a force that opposes motion between two surfaces in contact. When there is an unbalanced force acting on an object, it can overcome the force of friction and cause the object to accelerate. In situations where the unbalanced force is less than the force of friction, the object will remain at rest.
An object can be at rest with or without friction. An object floating in outer space can be at rest. An object that is glued to the floor can also be at rest.
Static friction.
when an equal and opposite force is applied to it
Friction opposes the motion of an object, which can cause the object to decelerate or come to a stop. This opposes the idea in Newton's 1st Law of Motion, which states that an object will continue in its state of rest or uniform motion unless acted upon by an external force. Friction acts as a force that counters the inertial tendency of an object to remain in motion.
Static friction is the type of friction that occurs when an object is at rest and prevents it from moving when a force is applied to it.
Well if you put that then yes cause they are touching by force and there at rest!!
never. according to newton 2nd law if there is no friction the body will never change its status.
Inertia itself does not cause objects in motion to come to rest. Objects in motion tend to continue moving in a straight line unless acted upon by an external force, in accordance with Newton's first law of motion. When external forces such as friction or air resistance act upon an object, they provide a force in the opposite direction of the object's motion, eventually causing it to come to rest.
Friction is a force that opposes motion between two surfaces in contact. When there is an unbalanced force acting on an object, it can overcome the force of friction and cause the object to accelerate. In situations where the unbalanced force is less than the force of friction, the object will remain at rest.
The friction force that acts on an object when it is at rest is called static friction. It is a force that opposes the initiation of sliding motion and prevents the object from moving. The magnitude of static friction is equal to the force applied to the object, up to a certain maximum value.
Static friction comes into play when an object is at rest or stationary and a force is applied to it that is not enough to overcome the force of static friction. The surfaces of the object and the surface it is in contact with must be in contact and in fact.
Perhaps you mean friction or inertia.