I'm guessing when their at the top of a mountain when their about to start going down, sorry i couldn't give you a better answer.
Chemical energy is a form of potential energy stored in the bonds of chemicals. When these bonds are broken, the potential energy is converted into other forms of energy, such as kinetic energy.
A moving truck is not a form of potential energy. Potential energy refers to the energy that is stored in an object due to its position or condition, such as gravitational potential energy or elastic potential energy.
I would say potential and kinetic true true
Nuclear energy is a kind of potential energy.
jupiter
A skydiver loses potential energy as they fall, which is converted to kinetic energy as their velocity increases. The loss of potential energy is due to the decrease in height as the skydiver descends towards the ground.
She loses gravitational potential energy.
Potential energy is converted to kinetic energy when skydiving. As the skydiver jumps from the plane, they have a high potential energy due to their height above the ground. This potential energy is then converted into kinetic energy as the skydiver accelerates towards the ground.
As the skydiver falls, the moving air around them causes the conversion of the skydiver's gravitational potential energy into kinetic energy. This is because the air resistance exerts a force on the skydiver, causing work to be done and energy to be transferred from potential to kinetic.
The gravitational potential energy of the skydiver can be calculated using the formula: GPE = mass * gravity * height. Plugging in the values, GPE = 60 kg * 9.8 m/s2 * 5000 m = 2,940,000 J. So, the gravitational potential energy of the skydiver is 2,940,000 Joules.
As the skydiver falls, the air resistance forces kinetic energy to be transformed into thermal energy due to friction between the air and the skydiver's body. This reduces the speed of the skydiver as they fall towards the ground.
A skydiver falling uses kinetic energy, which is the energy associated with its motion. As the skydiver descends, the potential energy stored in the height from which they jumped is converted into kinetic energy.
Potential energy is determined by the mass of an object and its distance from the ground. Therefore, the skydiver with greater mass will have greater potential energy when they are the same distance from the ground.
A skydiver have the greatest kinetic energy as he/she wants to hit the water.
During skydiving, potential energy is transformed into kinetic energy as the person descends towards the ground. As the skydiver falls, gravitational potential energy is gradually converted into motion, increasing their speed until they reach terminal velocity.
We get most of our energy directly or indirectly from the Sun.
The gravitational potential energy of the skydiver can be calculated using the formula: Potential energy = mass x gravity x height. Plugging in the values (m = 93 kg, g = 9.81 m/s^2, h = 550 m), the potential energy would be 496,804.5 Joules.