Elastic cartilage is a type of connective tissue found in the body that is highly flexible and provides shape and support to certain structures, such as the external ear and the epiglottis in the throat. It contains a higher proportion of elastic fibers compared to other types of cartilage, making it more resilient and able to return to its original shape after being bent or compressed.
The elastic spring force is given by Hooke's Law, which states that the force is directly proportional to the displacement from the equilibrium position. The formula is F = -kx, where F is the force, k is the spring constant, and x is the displacement from the equilibrium position.
Yes, elastic force and spring force are closely related but not exactly the same. Elastic force is a general term that describes the force exerted by any elastic material when it is deformed. Spring force specifically refers to the force exerted by a spring when it is stretched or compressed. Springs are a common example of materials that exhibit elastic behavior and produce elastic forces.
"Flexibility" is one word that encompasses both elastic and non-elastic properties.
An Elastic Affair was created in 1930.
Elastic force is the force exerted by a stretched or compressed elastic material to return to its original shape. Elastic potential energy is the energy stored in an elastic material when it is stretched or compressed. The elastic force is responsible for restoring the material to its original shape, converting the stored elastic potential energy back to kinetic energy.
Loose Areolar CT: gel-like matrix with fibroblasts, macrophages, mast cells and collagen and elastic fibers, beneath epithelium, covering ventral organs, wraps & cushions organs.Adipose Tissue: closely packed adipocytes (fat-cells) Location = under skin (as subcutaneous layer), around kidneys and eyeballs, breasts, Functions = energy store, insulation, protection.Reticular CT: network of reticular fibers within loose ground substance and reticulocytes, Function = support.Dense Regular CT (White Fibrous CT), primarily collagen Location = tendons, ligaments, Poor blood supply = slow to no healing.Dense Irregular CT: primarily collagen fibers randomly arranged, Function = provides tensile strength.Elastic CT: primarily elastin fibers, Function = durability with stretch.Plus bone and blood are also considered as tissues.
Allow arteries to expand
use of CT
perfectly elastic demand function.
Intervertebral discs are the fibrous, elastic tissue that lie between each of the bones in the spine. They function as shock absorbers.
Elastic cartilage is found predominately in the external ear and as well as around the epiglottis. Elastic cartilage is similar to hyaline cartilage, but its matrix contains many elastic fibers along with the delicate collagen fibrils. This cartilage is more elastic than hyaline cartilage and better able to tolerate repeated bending. The epiglottis, which bends down to cover the glottis (opening) of the larynx each time we swallow, is made of elastic cartilage, as is the highly bendable cartilage in the outer ear.
The elastic spring force is given by Hooke's Law, which states that the force is directly proportional to the displacement from the equilibrium position. The formula is F = -kx, where F is the force, k is the spring constant, and x is the displacement from the equilibrium position.
Yes, elastic force and spring force are closely related but not exactly the same. Elastic force is a general term that describes the force exerted by any elastic material when it is deformed. Spring force specifically refers to the force exerted by a spring when it is stretched or compressed. Springs are a common example of materials that exhibit elastic behavior and produce elastic forces.
It has elastic walls to allow it to fill and muscles to help it to empty.
Smooth muscle is not as elastic as skeletal muscle, but it does possess some degree of elasticity. This allows smooth muscle to stretch and contract in response to various stimuli, maintaining organ function and blood flow regulation.
elastic
Longitudinal elastic fibers enable the trachea to stretch and descend with the roots of the lungs during inspiration.