Calcium
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The proportion of collagen to hydroxyapatite in bones determines their flexibility and strength. Collagen provides flexibility and tensile strength, while hydroxyapatite contributes to the bones' hardness and compressive strength. This balance is critical for the overall structural integrity and function of bones.
Yes, you can use a hardness testing machine or a penetrometer to measure the hardness of chicken bones. By testing before and after soaking in liquid, you can observe how the moisture affects the bone's hardness. The results can help understand the impact of soaking on the bone's structural integrity.
Mineral salts from calcium and phosphorus compounds are essential for making bones hard and strong. calcium is the most essential mineral to make bones strong but not all bones are as hard as you think some bones are "Spongy" but we just dont notice it. hope this helps if you need to know this....
Collagen fibers within the bone matrix.
Bones and cartilage are specialized tissues because they provide structural support and protection to the body. Bones are rigid and provide a framework for the body, while cartilage is flexible and acts as a cushion between bones to reduce friction and absorb shock. Both tissues have unique properties that make them well-suited for their specific roles in the body.
Calcium
The most abundant protein in the extracellular matrix of animal cells is collagen. It provides structural support and strength to tissues and is crucial for maintaining the integrity of skin, tendons, bones, and other connective tissues.
Bones can resist compression because it is made up of extracellular matrix and cells. Bones are also flexible and strong.
Bones are primarily composed of collagen, a protein that provides strength and flexibility, and minerals such as calcium and phosphorus, which contribute to the bone's hardness and resistance to compression. Together, these components give bones their structure and support the body's skeletal system.
The hardness of bone is due to the calcium salts deposited in it.The exceptional hardness of bone, which allows it to resist compression, is attributed to the presence of inorganic hydroxyapatites. Hydroxyapatites such as calcium phosphates are particularly important for bone hardness. Organic substances such as collagen fibers contribute to tensile strength, but not to hardness.the presence of inorganic hydroxyapatites.
Yes, oak tree wood is harder than human bones. Oak wood is a dense hardwood with a higher level of hardness compared to human bones, which are composed of living tissue and are not as hard as wood.