A:In Basketball
A down hill smooth surface is the best surface to roll a ball on.
no honey u wrong who Eva this is it roll better on the ground im smart right i no
The ball with the least amount of friction will roll the farthest. This typically means a ball with a smooth and spherical surface. The surface on which the ball is rolling will also affect its distance.
A ball with less friction, such as a smooth, hard ball like a metal ball or a marble, will typically roll the farthest down a ramp compared to a ball with more friction, such as a rubber ball or a soft foam ball.
A smooth and flat surface with minimal friction, such as a polished marble floor, will allow a ball to roll the fastest. The lack of friction will reduce resistance and enable the ball to maintain its speed for longer distances.
a ball would roll better on one surface vs the other because one surface may have more friction the the other surface. For example a smooth surface like a polished wooden floor would have a ball roll better than a carpet where the hairs are stopping the progression of the ball.
yes
When you roll a ball on a rough surface, the friction between the ball and the surface will slow it down more than if it was on a smooth surface. The rough surface causes the ball to lose some of its kinetic energy as heat due to friction, resulting in a shorter overall distance traveled compared to rolling on a smooth surface.
ON a slanted surface
Yes, the surface of grass or dirt can affect the distance a ball can roll. Grass typically offers more resistance to the ball, causing it to slow down quicker compared to rolling on dirt, which can result in less distance covered. Additionally, the condition of the surface and its firmness also play a role in how far a ball can roll.
It is impossible to create a frictionless surface upon which a ball will roll without stopping. This is firstly because no two surfaces have a fritional constant of zero in that there is no surface which is perfectly smooth. Also, even if there were a true frictionless surface, a ball would not be able to roll along it forever due to air resistance.
It is impossible to create a frictionless surface upon which a ball will roll without stopping. This is firstly because no two surfaces have a fritional constant of zero in that there is no surface which is perfectly smooth. Also, even if there were a true frictionless surface, a ball would not be able to roll along it forever due to air resistance.
it will leave the surface of the other ball roughly 1/4 of the way down to the other end.
The distance a ball rolls on tile would depend on factors such as the initial velocity, surface friction, and angle of inclination. In general, the smoother the tile surface and the greater the initial velocity, the farther the ball will roll.