we can reduce it by providing lubrication means using oil between 2 surfaces as lubricant.
Frictional force is the force that opposes motion between two surfaces.
Frictional force always acts in the opposite direction to the relative motion between two surfaces in contact. If there is no relative motion, the frictional force resists the impending motion between the surfaces.
The two factors that affect frictional force between two surfaces are the type of material of the surfaces and the force pressing the surfaces together.
The factors that affect frictional force between objects include the roughness of the surfaces in contact, the force pressing the surfaces together (normal force), and the type of material from which the surfaces are made. Additionally, the presence of any lubricants or contaminants between the surfaces can also influence the frictional force.
The factors that affect the frictional force between two objects are the nature of the surfaces in contact, the normal force pressing the surfaces together, the roughness of the surfaces, and the presence of any lubricants or contaminants between the surfaces.
Frictional force is the force that opposes motion between two surfaces.
Frictional force always acts in the opposite direction to the relative motion between two surfaces in contact. If there is no relative motion, the frictional force resists the impending motion between the surfaces.
The two factors that affect frictional force between two surfaces are the type of material of the surfaces and the force pressing the surfaces together.
The factors that affect frictional force between objects include the roughness of the surfaces in contact, the force pressing the surfaces together (normal force), and the type of material from which the surfaces are made. Additionally, the presence of any lubricants or contaminants between the surfaces can also influence the frictional force.
The factors that affect the frictional force between two objects are the nature of the surfaces in contact, the normal force pressing the surfaces together, the roughness of the surfaces, and the presence of any lubricants or contaminants between the surfaces.
The strength of the frictional force between two objects depends on the nature of the surfaces in contact, the normal force pressing the surfaces together, and the coefficient of friction between the surfaces. Additionally, the presence of any lubricants or contaminants on the surfaces can also affect the strength of the frictional force.
The factors affecting the amount of frictional force include the nature of the surfaces in contact, the roughness of the surfaces, the force pressing the surfaces together, and the presence of any lubricants or contaminants between the surfaces. Additionally, the coefficient of friction between the two surfaces plays a significant role in determining the amount of frictional force.
Frictional force is the force that opposes motion between two surfaces.
maybe it could be something related to the universe
Increasing the roughness or texture of the surfaces will typically increase the frictional force between them by providing more contact points for interlocking. Applying a lubricant or reducing the roughness of the surfaces can decrease the frictional force by allowing the surfaces to slide past each other more easily.
The frictional force increases because there are more contact points between the surfaces as the force pushing them together increases, leading to a larger frictional force being generated. This results in a stronger resistance to the relative motion of the surfaces.
No, velocity does not directly affect frictional force. Frictional force is primarily dependent on the nature of the surfaces in contact and the normal force acting between them. However, velocity can indirectly impact frictional force by generating heat due to more rapid motion, which can affect the coefficient of friction between the surfaces.