Elastic friction refers to the resistance encountered when two surfaces in contact are compressed together, causing their molecules to deform slightly. This deformation results in a force acting to resist the relative motion of the surfaces. It is the frictional force present when there is an elastic deformation of the surfaces involved.
Yes, gravity, friction, and elastic forces can all act on an object simultaneously. Gravity is a force that pulls objects toward each other, friction resists the motion of objects sliding against each other, and elastic forces occur when an object is stretched or compressed and then returns to its original shape.
Rubber induces high friction because of its high coefficient of friction. The surface of rubber is rough and elastic, allowing it to deform and grip the surface it comes in contact with, resulting in increased friction. Additionally, the intermolecular forces between the rubber and the other surface further enhance the friction generated.
When you pull an elastic band, you are applying a force called tension. This force comes from the stretching of the elastic band and is directed along the length of the band, trying to restore it to its original shape. Additionally, you may also be applying a force due to friction if the elastic band is rubbing against your hand or another surface.
Rubber has lots of friction because it has a high coefficient of friction, meaning that it can grip surfaces effectively. The uneven surface of rubber molecules creates more contact points with other surfaces, resulting in greater friction. Additionally, rubber is elastic and can deform slightly to conform to the surface it is in contact with, increasing the contact area and therefore the friction.
Friction does not necessarily cause mechanical energy to be transformed into potential energy. Friction typically results in the conversion of mechanical energy into thermal energy, leading to an increase in temperature in the objects experiencing friction. Potential energy is associated with the position of an object in a gravitational field or an elastic material, and it is not directly influenced by friction.
Normal, Friction, Tension, and Elastic Forces.
Yes, gravity, friction, and elastic forces can all act on an object simultaneously. Gravity is a force that pulls objects toward each other, friction resists the motion of objects sliding against each other, and elastic forces occur when an object is stretched or compressed and then returns to its original shape.
the non fundamental forces are Tension,Torque,Elastic,Normal,Gravity,Friction.
the non fundamental forces are Tension,Torque,Elastic,Normal,Gravity,Friction.
Rubber induces high friction because of its high coefficient of friction. The surface of rubber is rough and elastic, allowing it to deform and grip the surface it comes in contact with, resulting in increased friction. Additionally, the intermolecular forces between the rubber and the other surface further enhance the friction generated.
When you pull an elastic band, you are applying a force called tension. This force comes from the stretching of the elastic band and is directed along the length of the band, trying to restore it to its original shape. Additionally, you may also be applying a force due to friction if the elastic band is rubbing against your hand or another surface.
Rubber has lots of friction because it has a high coefficient of friction, meaning that it can grip surfaces effectively. The uneven surface of rubber molecules creates more contact points with other surfaces, resulting in greater friction. Additionally, rubber is elastic and can deform slightly to conform to the surface it is in contact with, increasing the contact area and therefore the friction.
Friction does not necessarily cause mechanical energy to be transformed into potential energy. Friction typically results in the conversion of mechanical energy into thermal energy, leading to an increase in temperature in the objects experiencing friction. Potential energy is associated with the position of an object in a gravitational field or an elastic material, and it is not directly influenced by friction.
the force's involved are gavitational,normal,elastic and friction because then you sit on the horse gravity is keeping you up
The height of the bounce decreases because of many factors but two main factors are gravity and friction. * * * * * Gravity has nothing to do with the decrease in height. The two main factors are friction and the fact that the collision is not elastic.
elastic
The mechanism for stress to be released from friction along a fault is known as elastic rebound. Vibrations occur when rocks elastically return to their original shape causing damage from the seismic waves being sent out.