how does increasing the height of a ramp affect how far a ball rolls down the ramp
yes
no it actuly helps im 9 5 feet1/5 and i throw hard and far
How there jump or how they throw the ball
If the collision involving the ball hitting the ground was perfectly elastic (the system's energy is conserved) then the ball would return to it's original height. However, this is a "perfect world" situation, since no collision can be completely elastic (except for on the atomic scale, but that is another topic). Energy is lost by the friction of the ground, sound, air resistance etc...
a ball can never bounce over the height from which it was bounced unless u aplly a force. The factors that affect the bounce of a dropped ball include the height from which it is dropped; the force applied to it, if any, when dropped; the acceleration of gravity, which is different depending upon what planet you're one; the elasticity of the ball; the density of the atmosphere, which affects "air resistance"; and the rigidity and elasticity of the surface on which the ball bounces. weight also affect the bounce height.
No because mass doesn't means how it affect far it rolls
The size of a ball does affect how fast it rolls. Surface also play a major role in how fast a ball will move.
Yes, the type of ball can affect how fast it rolls. Factors such as the material, weight, and surface texture of the ball can all influence its speed and how it interacts with the playing surface. Additionally, the shape and size of the ball can also impact its rolling speed.
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Yes, the mass of a ball can affect how it rolls. A ball with more mass will typically have more inertia and require more force to start and stop rolling compared to a lighter ball. Additionally, the mass can affect how the ball interacts with the surface it is rolling on, such as the amount of friction experienced.
Increasing the height from which a ball is dropped will result in a higher bounce because the ball gains more potential energy as it falls from a greater height. This increase in potential energy translates to a greater kinetic energy upon impact with the ground, leading to a higher bounce.
When a ball rolls down a hill, potential energy is converted into kinetic energy. As the ball moves downhill, its potential energy due to its height is converted into the energy of motion, which is kinetic energy.
Yes, the mass of a ball does affect how fast it rolls down a ramp. In general, a heavier ball will roll faster down a ramp compared to a lighter ball, assuming everything else is held constant. This is due to the increased gravitational force acting on the heavier ball as it moves downhill.
Yes, the height from which a ball is dropped affects how high it bounces back. The higher the drop height, the higher the bounce due to the increased potential energy the ball gains from the greater height.
Yes it does as the type of ball effects how it interects with the world. That is how it reacts with the surface it is on or how it reacts with the air around it.
Variables that might affect the height to which a dropped ball will bounce include the material of the ball, the surface it bounces on, the height from which it is dropped, and the elasticity of the ball. Other factors may include air resistance, temperature, and any external forces acting on the ball during the bounce.
The height you drop the ball from will affect the bounce height this is because as the drop height increases so does the bounce height it is all to do with energy transfers. Also the waste energy is the sound and heat energy hope this helps.