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30 Οκτ 2024 · Elasticity, ability of a deformed material body to return to its original shape and size when the forces causing the deformation are removed. A body with this ability is said to behave (or respond) elastically. Most solid materials exhibit elastic behavior.
- Elastic Limit
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- Young's Modulus
This is a specific form of Hooke’s law of elasticity. The...
- Bulk Modulus
The value of the bulk modulus for steel is about 2.3 × 10 7...
- Hooke's Law
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- Stress
Physics and Natural Law Reaction to stresses within elastic...
- Skin Graft
skin graft, transplantation of healthy skin from one area of...
- Displacement
Displacement, in mechanics, distance moved by a particle or...
- Plasticity
Plasticity, ability of certain solids to flow or to change...
- Elastic Limit
Elasticity is the ability of materials to return to their original shape after a deforming (stretching, compressing, shearing, bending) force has been removed.
What are some examples of bulk compression of solids and liquids? One practical example is the manufacture of industrial-grade diamonds by compressing carbon with an extremely large force per unit area. The carbon atoms rearrange their crystalline structure into the more tightly packed pattern of diamonds.
In physics and materials science, elasticity is the ability of a body to resist a distorting influence and to return to its original size and shape when that influence or force is removed.
Explain the limit where a deformation of material is elastic. Describe the range where materials show plastic behavior. Analyze elasticity and plasticity on a stress-strain diagram. We referred to the proportionality constant between stress and strain as the elastic modulus.
22 Σεπ 2019 · Examples: Rubber bands and elastic and other stretchy materials display elasticity. Modeling clay, on the other hand, is relatively inelastic and retains a new shape even after the force that caused it to change is no longer being exerted.
Elasticity is a measure of the deformation of an object when a force is applied. Objects that are very elastic like rubber have high elasticity and stretch easily. Stress is force over area. Strain is change in length over original length. Most objects behave elastically for small strains and return to their original shape after being bent.