When elastic is pulled, it stretches due to the rearrangement of its long polymer chains. This stretching allows the material to store potential energy, which it releases when the pulling force is removed, causing the elastic to return to its original shape.
A catapult has elastic potential energy when the elastic has been pulled back. This potential energy is stored in the stretched elastic material. When the catapult is released, this potential energy is converted into kinetic energy as the projectile is launched forward.
When the elastic of a catapult is pulled back, it stores potential energy in the form of elastic potential energy. This potential energy is converted into kinetic energy when the catapult is released, launching the projectile forward.
Tension. The force itself is not elastic, but the material being pulled may be.
The energy in a pulled bow is potential energy, specifically elastic potential energy. This energy is stored in the flexed limbs of the bow as it is stretched, ready to be released when the arrow is fired.
Well, elastic potential energy is energy that is released from an object by stretching or pulling. The formula for EPE is : EPE= 1/2 spring constant x extensions (squared) The rubber band is related to EPE because when you bend it back and release it, you are releasing elastic potential energy. (Note: EPE refers to "elastic potential energy".
A catapult has elastic potential energy when the elastic has been pulled back. This potential energy is stored in the stretched elastic material. When the catapult is released, this potential energy is converted into kinetic energy as the projectile is launched forward.
When the elastic of a catapult is pulled back, it stores potential energy in the form of elastic potential energy. This potential energy is converted into kinetic energy when the catapult is released, launching the projectile forward.
Elastic solids stretch when pulled, get smaller when compressed/squeezed, and return to normal when no force is upon them.
Tension. The force itself is not elastic, but the material being pulled may be.
The energy in a pulled bow is potential energy, specifically elastic potential energy. This energy is stored in the flexed limbs of the bow as it is stretched, ready to be released when the arrow is fired.
Being made from elastic, the length of the tape would increase dramatically the harder the tape is pulled. Therefore, elastic is not used in the manufacture of measuring tapes!
Well, elastic potential energy is energy that is released from an object by stretching or pulling. The formula for EPE is : EPE= 1/2 spring constant x extensions (squared) The rubber band is related to EPE because when you bend it back and release it, you are releasing elastic potential energy. (Note: EPE refers to "elastic potential energy".
An elastic force that stretches or pulls on the molecules in matter is known as tension. This force occurs when an object is being stretched or pulled in opposite directions.
A catapult has potential energy stored in the elastic material when it is pulled back. This potential energy is released when the catapult is triggered, converting into kinetic energy as the projectile is launched.
The two kinds of elastic forces are tension, which occurs in a material being pulled or stretched, and compression, which occurs in a material being compressed or squeezed. These forces are responsible for restoring the material to its original shape when the deforming force is removed.
elastic
suffix for elastic