Elastic potential energy is stored in an elastic band when it is stretched or compressed. This energy is potential energy that can be released when the band returns to its original shape, causing it to move back to its natural position.
Potential energy is stored in an elastic band when it is stretched or compressed. This potential energy is due to the work done in deforming the band from its rest position. When released, this potential energy is converted into kinetic energy as the band returns to its original shape.
When a wound-up elastic band is released, the potential energy stored in the band is converted into kinetic energy as the band moves. This conversion occurs as the elastic potential energy stored in the stretched band is transformed into the energy of motion.
A stretched rubber band has potential energy stored in the form of elastic energy. This energy is stored when the rubber band is stretched and can be released when the band is allowed to return to its original shape.
Elastic potential energy is stored in stretched or compressed elastic materials, such as a rubber band or a spring. When the material is deformed, this energy is stored in the material and can be released when the material returns to its original shape.
Potential energy is stored in a stretched rubber band. This potential energy is a result of the elastic potential energy stored in the rubber band due to its stretched state.
Potential energy is stored in an elastic band when it is stretched or compressed. This potential energy is due to the work done in deforming the band from its rest position. When released, this potential energy is converted into kinetic energy as the band returns to its original shape.
When a wound-up elastic band is released, the potential energy stored in the band is converted into kinetic energy as the band moves. This conversion occurs as the elastic potential energy stored in the stretched band is transformed into the energy of motion.
A stretched rubber band has potential energy stored in the form of elastic energy. This energy is stored when the rubber band is stretched and can be released when the band is allowed to return to its original shape.
Elastic potential energy is stored in stretched or compressed elastic materials, such as a rubber band or a spring. When the material is deformed, this energy is stored in the material and can be released when the material returns to its original shape.
Potential energy is stored in a stretched rubber band. This potential energy is a result of the elastic potential energy stored in the rubber band due to its stretched state.
Elastic Potential Energy
Elastic Potential Energy
The energy stored in the rubber band of the rolling toy is elastic potential energy. This energy is stored as the rubber band is stretched and can be released to propel the toy forward when it is let go.
The energy in a catapult is stored as potential energy, specifically elastic potential energy. This energy is stored in the stretched material of the catapult, such as a spring or elastic band, ready to be converted into kinetic energy when the catapult is released.
There are many types of potential energy. If the potential energy in question is stored in the form of a stretched elastic band, then there is some type of movement that the elastic band will restrict. But if the energy is stored in an electric battery, then no restriction of movement results.
When a rubber band is stretched, it has elastic potential energy. This energy is stored in the rubber band as a result of the deformation of its shape.
I think the answer you are looking for is the stored energy (elastic potential energy) in the twisted rubber band becomes kinetic energy.