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What is the scientific definition of friction?

Friction is a force that resists the relative motion or tendency of motion between two surfaces in contact. It arises from the interactions between molecules on the surfaces and can affect the movement of objects.


What opposes the sliding motion of two surfaces that are in contact?

The friction between the two surfaces opposes the sliding motion by creating a resistance force. Factors such as surface roughness, materials, and applied force affect the amount of friction generated.


How does friction affect an oject's motion?

Friction is a force that opposes motion between surfaces in contact. It can slow down an object's motion by converting kinetic energy into heat. The amount of friction depends on the nature of the surfaces and the force pressing them together.


What is the force that opposes the motion of two surfaces?

the force that opposes the motion of two touching surfaces is velocity.


How does the surface type affect the friction force?

The surface type affects the friction force by altering the roughness and texture of the surfaces in contact. Smoother surfaces generally have lower friction as they allow for easier sliding motion, while rougher surfaces create more resistance to motion, leading to higher friction forces. Additionally, the surface materials can also affect friction due to differences in their coefficients of friction.


What are the factors that may affect the motion of objects?

Factors that may affect the motion of objects include the object's mass, the force acting upon it, friction with the surrounding surfaces, and external influences such as air resistance or buoyancy. Additionally, the shape and surface area of the object can also impact its motion.


Does friction oppose motion or relative motion of surfaces in contact?

Relative motion


Does friction oppose motion or relative motion of surface in contact?

Friction opposes the relative motion of surfaces in contact. It acts in the direction opposite to the direction of motion or tendency of motion between two surfaces.


In what way are friction and motion related?

Friction and motion are related because friction is a force that resists motion between two surfaces in contact. When there is friction between objects, it can affect how easily they can move past each other, slowing down or stopping their motion.


What do the different forms of friction have in common?

Different forms of friction, such as static, kinetic, and rolling friction, all involve resistance to motion when two surfaces are in contact. They are caused by microscopic irregularities on the surfaces that interact and oppose relative motion. In all cases, friction converts mechanical energy into heat.


What are some examples of force and motion questions that can help students understand the relationship between force and motion?

Here are some examples of force and motion questions that can help students understand the relationship between force and motion: How does the force of gravity affect the motion of objects? What is the relationship between the force applied to an object and its resulting acceleration? How does friction impact the motion of objects on different surfaces? Can you explain how Newton's laws of motion help us understand the relationship between force and motion? How does air resistance affect the motion of objects moving through the air? What role does inertia play in the relationship between force and motion? How does the mass of an object influence the amount of force needed to move it? Can you describe how different types of forces, such as tension and compression, affect the motion of objects? How do balanced and unbalanced forces impact the motion of an object? Can you provide examples of everyday situations where force and motion are at play?


What is force that opposes motion between two surfaces that are in contract?

The force that opposes motion between two surfaces in contact is called friction. Friction occurs as a result of the interactions between the surfaces at a micro level, causing resistance to the relative motion between the surfaces.