It has potential energy that can be released by starting it rolling down the hill so that the potential energy is converted into kinetic energy and friction with the surface.
the answer is that you have to have the good gravity.
A stretched rubber band is an example of potential energy. When the rubber band is released, the potential energy is converted into kinetic energy.
The energy of position for a rock on a hill is potential energy, specifically gravitational potential energy. This energy is stored in the rock due to its position above the ground and can be converted into kinetic energy if the rock rolls down the hill.
If it's not moving it doesn't have any energy
Yes, a rock on a hill has gravitational potential energy due to its position above the ground. This potential energy can be converted into kinetic energy if the rock rolls down the hill.
the answer is that you have to have the good gravity.
A stretched rubber band is an example of potential energy. When the rubber band is released, the potential energy is converted into kinetic energy.
The energy of position for a rock on a hill is potential energy, specifically gravitational potential energy. This energy is stored in the rock due to its position above the ground and can be converted into kinetic energy if the rock rolls down the hill.
If it's not moving it doesn't have any energy
A rock on top of a hill has potential energy, not kinetic energy. If it starts rolling down the hill then the potential energy transforms to kinetic energy.
Yes, a rock on a hill has gravitational potential energy due to its position above the ground. This potential energy can be converted into kinetic energy if the rock rolls down the hill.
A rock on the top of a hill has potential energy. When it falls it has kinetic energy. You are probably in 6th grade to be learning this. :) Hope this helped you!
Potential energy is the energy stored in a rock before its fall from a hill.
A car sitting at the top of a hill possesses gravitational potential energy. This energy is due to its elevated position relative to the ground, which gives it the potential to convert this stored energy into kinetic energy if it rolls down the hill. The amount of gravitational potential energy depends on the car's mass and the height of the hill.
Gravitational potential energy is the type of energy stored in an object if it is raised in a gravitational field. A rock on top of a hill is a good example of this as it has a higher potential energy than a rock at the bottom of a hill.
Gravitational Energy(:
When a rock rolls down a hill, the potential energy of the rock is gradually converted into kinetic energy as it gains speed. Some energy is also lost as heat and sound due to friction between the rock and the surface of the hill.