Its length, linear density, thickness, and temperature all change.
The mass of the rubber band will stay the same when it is stretched.
The rubber band was resilient after being stretched the rubber band was resilient after being stretched the rubber band was resilient after being stretched the rubber band was resilient after being stretched
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.
If a rubber band is stretched, it has elastic energy.
A stretched rubber band has elastic potential energy, which is stored when the rubber band is stretched and can be released when it is allowed to contract back to its original shape.
When a rubber band is stretched, it possesses potential energy. This potential energy is stored in the rubber band due to its stretched position, and it can be released when the rubber band is allowed to return to its original, unstretched state.
The modulus of elasticity of a normal rubber band is typically around 0.01-0.1 GPa. This property represents the stiffness of the rubber band and its ability to return to its original shape after being stretched.
A stretched rubber band is potential energy because the energy is stored.
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.
Astretched rubber band has potential energy.
A rubber band is an elastic material, meaning it can regain its original shape after being stretched. This property is due to the polymer chains within the rubber band being able to rearrange when force is applied and return to their original positions when the force is removed.
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.