Generally more.
Rough bumpy surfaces typically produce more friction compared to smooth surfaces. This is because the irregularities on rough surfaces create more points of contact with the opposing surface, leading to increased resistance to sliding motion. The friction generated by these irregularities can help improve grip and stability in certain applications.
Yes, rough bumpy surfaces cause more friction because they have more points of contact with the object moving over them, which creates more resistance to motion. This increased surface contact leads to greater frictional force compared to smooth surfaces.
A smooth surface will produce the least amount of friction compared to a rough surface. Friction is caused by the resistance when two surfaces slide against each other, and smoother surfaces have fewer microscopic irregularities that create friction. The coefficient of friction is lower for smooth surfaces.
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.
Two rough surfaces in contact will produce more heat due to increased friction compared to two smooth surfaces or a smooth and rough surface. Adding oil between two surfaces will reduce friction and heat generation.
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Rough bumpy surfaces typically produce more friction compared to smooth surfaces. This is because the irregularities on rough surfaces create more points of contact with the opposing surface, leading to increased resistance to sliding motion. The friction generated by these irregularities can help improve grip and stability in certain applications.
Yes, rough bumpy surfaces cause more friction because they have more points of contact with the object moving over them, which creates more resistance to motion. This increased surface contact leads to greater frictional force compared to smooth surfaces.
A bumpy, rough surface so you don't slip.
A smooth surface will produce the least amount of friction compared to a rough surface. Friction is caused by the resistance when two surfaces slide against each other, and smoother surfaces have fewer microscopic irregularities that create friction. The coefficient of friction is lower for smooth surfaces.
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.
Presence of ribosomes on the membrane of endoplasmic reticulum makes the surface look bumpy.
Because there is less traction for an object to grab onto on a smooth surface rather than when an object runs over a rough surface.
Two rough surfaces in contact will produce more heat due to increased friction compared to two smooth surfaces or a smooth and rough surface. Adding oil between two surfaces will reduce friction and heat generation.
diffuse reflection
diffuse reflection
When parallel rays of light hit a rough or bumpy surface, they get scattered in different directions due to reflection. This phenomenon is known as diffuse reflection. The surface roughness causes the light to reflect unevenly, leading to the diffusion of light in various directions.