Explained using the Big Idea Of Particles:the faster you go, the more air you have bashing into your surface.
Imagine the molecules comprising air were the size of basket-balls.
at walking speed, you'd only have 5 or 6 basket balls hitting you in the face every minute or so and they'd only hit you at walking pace. When you move up to running speed, you suddenly have 15 or so basket balls hitting you in the face every minute at running pace. Riding on a bicycle, you have between 30 and 40 basket balls hitting you in the face every minute at a very high speed.
So the faster you go, the more basket balls you have hitting you at a higher speed. These two factors multiply together to give the friction force which increases as a square factor of your speed, (i.e. increase speed by 2, you have 2x the basketballs hitting you 2x as fast which equals 2x2 = 4 times the friction force).
because the faster something is, the greater the friction is. like, here's an example. get your stubby little hand and start to rub it across the carpet. well don't just sit there actually do it you lazy homosapien! start to rub it softly, and then start to rub it all fast! as you can see, the faster you rub, the hotter your hand is, because of friction. but you weren't supposed to do it that hard and that's why your hand burns so badly.
Friction increases as speed increases because at higher speeds, there are more collisions between the moving surfaces, leading to greater resistance. This results in more heat being generated, which in turn increases friction. Additionally, higher speeds can cause deformation of the surfaces, creating more contact points and thus increasing friction.
As speed increases, the particles in the surfaces of objects rub against each other more vigorously, generating greater frictional forces. This increased interaction leads to more resistance against the motion of the objects, causing a rise in friction as speed increases.
As speed increases, the kinetic energy of an object increases. Additionally, the force required to overcome air resistance and friction also increases with speed. Finally, the likelihood of accidents or collisions also tends to increase as speed increases.
Friction can increase as the contact area between two surfaces increases, or if the surfaces are rougher or stickier. Additionally, an increase in force pressing the surfaces together can also increase friction.
Friction will generally increase as the incline increases. This is because the normal force acting on the object will also increase with the angle of the incline, resulting in greater friction between the surfaces in contact.
Friction increases as speed increases because at higher speeds, there are more collisions between the moving surfaces, leading to greater resistance. This results in more heat being generated, which in turn increases friction. Additionally, higher speeds can cause deformation of the surfaces, creating more contact points and thus increasing friction.
As speed increases, the particles in the surfaces of objects rub against each other more vigorously, generating greater frictional forces. This increased interaction leads to more resistance against the motion of the objects, causing a rise in friction as speed increases.
As speed increases, the kinetic energy of an object increases. Additionally, the force required to overcome air resistance and friction also increases with speed. Finally, the likelihood of accidents or collisions also tends to increase as speed increases.
Friction can increase as the contact area between two surfaces increases, or if the surfaces are rougher or stickier. Additionally, an increase in force pressing the surfaces together can also increase friction.
Friction will generally increase as the incline increases. This is because the normal force acting on the object will also increase with the angle of the incline, resulting in greater friction between the surfaces in contact.
Friction increases as a function of velocity.
The size of a friction force increases with an increase in the normal force pressing the surfaces together. It also increases with a rougher surface texture and an increase in the coefficient of friction between the surfaces.
As speed increases, the magnitude of fluid friction also increases. This is because at higher speeds, there is more interaction between the moving object and the fluid, resulting in greater resistance and friction.
heat
You may be thinking of drag instead of friction. Friction between the floor and your foot increases your speed.
Air offers fluid friction, known as air resistance. It is the force that opposes the motion of an object moving through the air. This friction increases as the speed and surface area of the object increase.
Relative to its surface, friction is constant (this is known as the friction constant). The speed is decreasing on an object because friction is acting on it over a period of time, not because friction is getting stronger.