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Elastic potential energy is stored in a stretched spring. When the spring is compressed or stretched, it gains potential energy that can be released when the spring returns to its original shape.
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 spring is compressed or stretched, potential energy is stored in the spring. When the spring is released, this potential energy is transformed into kinetic energy as the spring moves. This energy transformation happens because the stored potential energy in the spring is converted into the motion of the spring as it returns to its original shape.
When a spring is compressed or stretched, potential energy is stored in the spring. This potential energy is transformed into kinetic energy when the spring is released and returns to its original shape. The process of energy transformation in a spring involves the conversion of potential energy to kinetic energy as the spring moves back and forth.
a spring possesses elastic potential energy when compressed or stretched.
Elastic potential energy is stored in a stretched spring. When the spring is compressed or stretched, it gains potential energy that can be released when the spring returns to its original shape.
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 spring is compressed or stretched, potential energy is stored in the spring. When the spring is released, this potential energy is transformed into kinetic energy as the spring moves. This energy transformation happens because the stored potential energy in the spring is converted into the motion of the spring as it returns to its original shape.
Potential elastic energy
When a spring is compressed or stretched, potential energy is stored in the spring. This potential energy is transformed into kinetic energy when the spring is released and returns to its original shape. The process of energy transformation in a spring involves the conversion of potential energy to kinetic energy as the spring moves back and forth.
a spring possesses elastic potential energy when compressed or stretched.
The types of energy stored in a stretched spring are elastic potential energy and mechanical energy. Elastic potential energy is stored in the spring due to its deformation, while mechanical energy accounts for both potential and kinetic energy present in the system.
The energy stored in the spring of a clock is potential energy. As the spring is wound up, it is compressed or stretched, storing potential energy. This potential energy is then slowly released as the spring unwinds, powering the clock mechanism.
The work done by a spring when it is compressed or stretched is the energy stored in the spring due to the deformation. This energy is potential energy that can be released when the spring returns to its original shape.
Potential energy occurs in a spring when it is stretched because it now has the potential to bounce back with kinetic energy it is said to have elastic potential energy (EPE)
The stored energy in a stretched-out slinky spring toy is potential energy. As the coils are pulled apart, work is done to stretch the spring, and this work is stored in the spring as potential energy. When the spring is released, this potential energy is converted back into kinetic energy as the coils snap back together.
A spring contains potential energy, specifically elastic potential energy. As the spring is compressed or stretched, potential energy is stored within it. This energy is released when the spring returns to its rest position.