When a ball bounces, it loses some energy as heat and sound due to impact and friction with the surface it bounces on. This loss of energy reduces its ability to reach the same height in subsequent bounces. Additionally, the ball may deform slightly upon impact, which can also reduce its elasticity and ability to return to its original height.
The ball will bounce back to a height less than its original drop height of 50 cm due to energy loss during each bounce. The exact height the ball will bounce to depends on the ball's elasticity and the surface it bounces on.
Yes, the height of a bounce is affected by the height from which the ball is dropped. The higher the ball is dropped from, the higher it will bounce back due to the transfer of potential energy to kinetic energy during the bounce.
When a ball is dropped, some of its energy is lost to other forms like sound and heat upon impact with the ground. This energy loss results in a decrease in the ball's upward velocity, preventing it from returning to its original height during the bounce.
This is because...when a ball is dropped onto the ground, some of its energy and momentom is lost due to friction from the surface and when it bounces back....the gravitaton force pulls it downwards.... so it does not bounce back to its original height.if the ball is dropped onto an arena where there is zero gravitaion and friction, it will keep on bouncing back to thr same height.Aakash Dangaakash.dang@gmail.comB.tech - IT (3rd Year).
When a ball is dropped, some of its energy is lost to the surroundings in the form of heat and sound, causing the ball to not bounce back to its original height. This loss of energy is due to factors like air resistance, deformation of the ball upon impact, and friction with the surface it bounces on.
The ball will bounce back to a height less than its original drop height of 50 cm due to energy loss during each bounce. The exact height the ball will bounce to depends on the ball's elasticity and the surface it bounces on.
Yes, the height of a bounce is affected by the height from which the ball is dropped. The higher the ball is dropped from, the higher it will bounce back due to the transfer of potential energy to kinetic energy during the bounce.
When a ball is dropped, some of its energy is lost to other forms like sound and heat upon impact with the ground. This energy loss results in a decrease in the ball's upward velocity, preventing it from returning to its original height during the bounce.
This is because...when a ball is dropped onto the ground, some of its energy and momentom is lost due to friction from the surface and when it bounces back....the gravitaton force pulls it downwards.... so it does not bounce back to its original height.if the ball is dropped onto an arena where there is zero gravitaion and friction, it will keep on bouncing back to thr same height.Aakash Dangaakash.dang@gmail.comB.tech - IT (3rd Year).
When a ball is dropped, some of its energy is lost to the surroundings in the form of heat and sound, causing the ball to not bounce back to its original height. This loss of energy is due to factors like air resistance, deformation of the ball upon impact, and friction with the surface it bounces on.
Yes, a super ball can rebound to a height greater than its original height. This is because super balls are made of elastic materials that store and release energy upon impact, allowing them to bounce back with increased velocity. The rebound height will depend on factors such as the initial drop height, the surface it bounces off, and the elasticity of the ball.
The higher the drop height of the ball, the higher it will bounce due to increased potential energy. When the ball is dropped from a greater height, it gains more energy as it falls, resulting in a higher rebound height.
Yes, as the bungee cord gets longer, the bounce height will become greater. The object attached to the bungee cord will fall longer before being snapped back up by the bungee cord, and in turn the object will bounce higher before being pulled back down by the bungee cord.
As long as the tennis ball is not thrust downward, yes, the tennis ball will bounce back to the same proportion of its original height, no matter how far it's dropped, as long as the height is small enough that air resistance can be ignored. The ball will eventually come to rest due to this air resistance.
When you bounce a ball, it compresses against the surface it hits, storing potential energy. As it then moves back up, that potential energy is converted into kinetic energy, causing the ball to bounce back up. The height of the bounce is determined by the elasticity of the ball and the surface it hits.
A bounce ball needs elasticity to bounce. When it hits a surface, the material compresses and stores energy. As the material expands back to its original shape, it releases the stored energy and propels the ball upwards.
The higher the ball is dropped from, the higher it will bounce back. This is due to potential energy converting to kinetic energy upon impact with the ground, propelling the ball higher when dropped from greater heights. Ultimately, the bounce height depends on factors like gravity, air resistance, and the material of the ball.