The rubber ball will compress upon impact, absorbing some of the energy and reducing the bounce-back effect. This makes it easier to stop compared to a wooden ball, which is more rigid and will bounce back with more force due to its inability to compress.
It is generally easier to stop a rubber ball moving at the same speed as a wooden ball of the same size, due to the rubber ball's elasticity and ability to deform upon impact, absorbing some of the energy. The wooden ball, being more rigid, would transfer more energy upon impact, making it more difficult to stop.
Rubber is more elastic than wood, so it can absorb and dissipate the kinetic energy of the moving ball more effectively, causing it to come to a stop more easily. The rubber ball will deform upon impact, while the wooden ball is more rigid and will retain its shape, resulting in a greater rebound effect and less energy dissipation.
Think of it like this, if you pick up a ball that you drop on the floor, and squeeze that ball, if it is made out of a material like rubber, it is easy to squeeze, therefor it will bounce high. If the ball is made out of steel, then I personaly could not be able to squeeze it and it won't bounce very high or not bounce at all.
You can create a simple rubber band car by attaching a rubber band between the axles of a small toy car and winding it up. When released, the tension in the rubber band causes the car to move forward. This is a fun and easy way to demonstrate the energy stored in the stretched rubber band.
The transfer speed when using the Easy Transfer Cable is typically around 480 Mbps, which is the maximum speed supported by USB 2.0 connections. However, actual transfer speeds may vary depending on the devices being connected and the amount of data being transferred.
It is generally easier to stop a rubber ball moving at the same speed as a wooden ball of the same size, due to the rubber ball's elasticity and ability to deform upon impact, absorbing some of the energy. The wooden ball, being more rigid, would transfer more energy upon impact, making it more difficult to stop.
Rubber is more elastic than wood, so it can absorb and dissipate the kinetic energy of the moving ball more effectively, causing it to come to a stop more easily. The rubber ball will deform upon impact, while the wooden ball is more rigid and will retain its shape, resulting in a greater rebound effect and less energy dissipation.
Because it bounces and its not very heavy. because rubber's bouncy and stuff, oh and it like, deforms easy or whatever which makes it bouncy too. If it was something hard it would just go clunk on the floor. And wasn't leather originally used? with the bladder of air inside it. So yeah, like, ball, air, rubber, and rubber make it easy to grip and hold the ball
Speed helps like in soccer, you need speed if you want to get to the ball faster. Also in baseball, you need speed to run the bases or else you are easy to get out. Even in foot ball, to dodge,tackle , or make a touchdown.
Burn rubber
Hockey pucks are usually made of hard plastic, although some rubber ones can be found rarely; they are not generally used because they are extremely hard to use properly.
Some of the advantages of a wooden tower include easy onsite assembling, energy saving, compatible spares, and easy maintenance.
its cheap and easy to use.
cheap and easy to maintain
Bec
Its easy you get the soap and you push the soap close to the rubber ducky and you jump on the soap and the n over the rubber ducky;)
it makes aerodynamically easy