if the mass is more than the friction is high. and if the surface is rough then also the friction is more. thus we can say that both mass and surface type affects friction.
Surface types can affect the force of friction because as the surface gets rough and rougher it has more friction and smooth surface has less friction. if we compare the affect of friction force on a ice and road. Road is much more rough than the ice chunk and if we slide a ice hockey puck on each of the surfaces, we get that smoother surfaces has less friction.
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.
Changing the type of surface area can affect sliding friction because different materials have different levels of smoothness and roughness. A smoother surface will typically have less sliding friction as there is less resistance between the two surfaces. In contrast, a rougher surface will create more friction due to increased contact points and resistance.
Surface area does not directly affect friction; rather, friction is related to the roughness of the surfaces in contact. An increase in surface area may lead to an increase in friction if there are more contact points between the surfaces. However, the type and condition of the surfaces, as well as the force pressing them together, also play a significant role in determining friction.
Friction typically increases when the mass increases because there is more force pressing the surfaces together. However, the type of surfaces and the force pressing them together also affect friction levels.
friction depends on type of surface and force applied its not dependent on the mass till gravitation is taken into account
Surface types can affect the force of friction because as the surface gets rough and rougher it has more friction and smooth surface has less friction. if we compare the affect of friction force on a ice and road. Road is much more rough than the ice chunk and if we slide a ice hockey puck on each of the surfaces, we get that smoother surfaces has less friction.
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.
Changing the type of surface area can affect sliding friction because different materials have different levels of smoothness and roughness. A smoother surface will typically have less sliding friction as there is less resistance between the two surfaces. In contrast, a rougher surface will create more friction due to increased contact points and resistance.
Surface area does not directly affect friction; rather, friction is related to the roughness of the surfaces in contact. An increase in surface area may lead to an increase in friction if there are more contact points between the surfaces. However, the type and condition of the surfaces, as well as the force pressing them together, also play a significant role in determining friction.
Friction typically increases when the mass increases because there is more force pressing the surfaces together. However, the type of surfaces and the force pressing them together also affect friction levels.
Surface and material affect friction by changing the amount of contact between objects and the roughness of the surfaces. Smoother surfaces with less friction will have less resistance to motion, while rougher surfaces with higher friction will have more resistance. The type of material can also impact friction, as some materials have a higher coefficient of friction and will create more resistance when in contact.
No, however mass and or density is directly related to the amount of friction
The factors that can affect the friction of a car while driving include the type and condition of the tires, the road surface, the weight of the car, and the speed at which the car is traveling.
The friction that occurs is Rolling Friction
speed
Friction can affect a mousetrap car in several ways. Higher friction between the wheels and the surface can reduce its speed and efficiency. Properly managing friction through wheel alignment, tire type, and surface smoothness can help improve the performance of a mousetrap car.