Elastic potential energy. When a spring is compressed or a rubber band is stretched, work is done on the object to store potential energy that can be released when the object returns to its original shape.
Potential energy. When springs are compressed or rubber bands are stretched, they store potential energy due to their deformed state. This potential energy can be released as kinetic energy when the springs expand or the rubber bands contract.
The energy stored in compressed springs and stretched rubber bands is potential energy. This energy is stored in the objects due to their deformation and is released when they return to their original shape.
potential energy, which can be released as kinetic energy when the spring is released or the rubber band is let go.
Compressed springs store potential energy, which is energy stored in an object due to its position or state. Stretched rubber bands also store potential energy as they can release kinetic energy when they snap back to their original shape.
Elastic potential energy is associated with objects that can be stretched or compressed, such as springs, rubber bands, or elastic materials. When these objects are deformed, they store potential energy that can be released as kinetic energy when they return to their original shape.
Potential energy. When springs are compressed or rubber bands are stretched, they store potential energy due to their deformed state. This potential energy can be released as kinetic energy when the springs expand or the rubber bands contract.
The energy stored in compressed springs and stretched rubber bands is potential energy. This energy is stored in the objects due to their deformation and is released when they return to their original shape.
Yes.Yes.Yes.Yes.
potential energy, which can be released as kinetic energy when the spring is released or the rubber band is let go.
Compressed springs store potential energy, which is energy stored in an object due to its position or state. Stretched rubber bands also store potential energy as they can release kinetic energy when they snap back to their original shape.
Elastic potential energy is associated with objects that can be stretched or compressed, such as springs, rubber bands, or elastic materials. When these objects are deformed, they store potential energy that can be released as kinetic energy when they return to their original shape.
Elastic energy - which is a type of potential energy.
Elastic energy is the energy stored in an object when it is compressed, stretched, or deformed. It is a form of potential energy that can be released when the object returns to its original shape. Examples include a stretched rubber band or a compressed spring.
For materials such as rubber I would call it elastic energy. For compressed gases I would just call it mechanical energy-the compressed gas exerts a force which would move a piston against another force, and that constitutes work.
Elastic energy is the energy stored in an object when it is compressed, stretched, or deformed. It is potential energy that can be released when the object returns to its original shape. Examples include a compressed spring or a stretched rubber band.
Elastic energy can be sourced from materials that can deform and return to their original shape, such as rubber bands, springs, and elastic cords. When these materials are stretched or compressed, they store potential energy that can be released when the deforming force is removed.
There are three main types of potential energy: elastic potential energy, gravitational potential energy, and chemical potential energy. Elastic potential energy is stored in objects that can either be stretched or compressed. The more the object is stretched or compressed, the more elastic potential energy it'll have.