kinetic energy
The stretched rubber band has potential energy due to its stretched position. This potential energy can be converted into kinetic energy when the rubber band is released and returns to its unstretched state.
A stretched rubber band has potential energy due to its stretched state. When released, this potential energy is converted into kinetic energy as the rubber band returns to its original shape by moving quickly.
Yes, a stretched rubber band has potential energy because it possesses energy due to its position or condition (stretched state) that can be converted into kinetic energy when released.
A stretched spring has potential energy stored in it, specifically elastic potential energy. This energy is a result of the deformation of the spring from its equilibrium position. When released, this potential energy is converted into kinetic energy as the spring returns to its original shape.
When a stretched string is released, the potential energy is converted into kinetic energy as the string vibrates. The string's vibrations create sound waves, which carry energy away in the form of sound.
kinetic energy
Kinetic energy and then to heat.
The stretched rubber band has potential energy due to its stretched position. This potential energy can be converted into kinetic energy when the rubber band is released and returns to its unstretched state.
A stretched rubber band has potential energy due to its stretched state. When released, this potential energy is converted into kinetic energy as the rubber band returns to its original shape by moving quickly.
Yes, a stretched rubber band has potential energy because it possesses energy due to its position or condition (stretched state) that can be converted into kinetic energy when released.
A stretched spring has potential energy stored in it, specifically elastic potential energy. This energy is a result of the deformation of the spring from its equilibrium position. When released, this potential energy is converted into kinetic energy as the spring returns to its original shape.
When a stretched string is released, the potential energy is converted into kinetic energy as the string vibrates. The string's vibrations create sound waves, which carry energy away in the form of sound.
When a rubber band is stretched, it gains potential energy due to the elastic deformation of the material. This potential energy can be converted into kinetic energy if the rubber band is released and allowed to snap back to its original shape.
Yes, a slinky has potential energy when it is stretched or compressed. This potential energy is stored in the slinky due to the elastic properties of the material. When released, this potential energy is converted into kinetic energy as the slinky moves.
A spring in a pinball machine stores potential energy when compressed or stretched. When released, this potential energy is converted into kinetic energy as the spring expands and propels the pinball.
When a rubber band is being stretched, it contains potential energy. This potential energy is due to the elastic potential energy stored in the rubber band, which is ready to be converted into kinetic energy when the rubber band is released and allowed to snap back.
A stretched rubber band is an example of potential energy. When the rubber band is released, the potential energy is converted into kinetic energy.