![]() ![]() The compression of the ball's material causes some energy to be transformed into heat, sound, and deformation of the ball. The force of the ball hitting the ground is called the impact force, and it is distributed over a small area on the ball’s surface. The amount of compression depends on how hard the ball hits the ground and what surface it is hitting. ![]() When the ball hits the ground, it compresses slightly. This can be seen as the ball loses some of its energy as it collides with the ground. This is because some of the energy that was stored in the ball in the form of potential energy has been converted into another form of energy. The ball bounces back up, but not to its original height. Elasticity And Energy Lossĭiscover how to effortlessly find affordable energy providers by checking out these 5 easy ways to find your next cheap electricity supplier.When the ball hits the ground, something else happens. As the ball falls, its potential energy is converted into kinetic energy, which makes the ball move faster and faster until it hits the ground. Kinetic energy is the energy possessed by an object due to its motion. ![]() Once the ball is released, it begins to transform its potential energy into kinetic energy. In this case, the ball has more gravitational potential energy when it is higher up in the air. Gravitational potential energy is the energy that an object has due to its position relative to the ground. As the ball moves downwards, it gains gravitational potential energy. When you lift a ball and let go, gravity pulls it back down to the ground. Gravity is the main force affecting the ball's behavior when it is dropped. ![]()
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