The bone matrix is hard due to the primary salt of calcium chloride.
if the mineral salts of bone is dissolved in an acid like HCl then the bone becomes soft and spongy like rubber.however if the same is done with base it will only become bright because the bone becomes clean but salts fail to react an dissolve.
Collagen
High mineral content (calcium salts).
ligaments
Bone is not connective tissue. Instead, connective tissue -- ligaments and tendons -- connect to the bone.
Mineral salts containing the element phosphorus include calcium phosphate, sodium phosphate, and potassium phosphate. These salts are essential for various biological processes in the body, such as bone formation, energy production, and cell signaling.
Mineral salts are not foods.
Living bone tissue is made up of three main components: collagen, mineral salts (primarily calcium and phosphate), and water. The collagen provides flexibility and support, the mineral salts give strength and hardness, and water helps maintain the bone's structure and facilitate metabolic processes within the bone cells.
Bone salts, such as calcium and phosphorus, provide hardness to bones by forming a mineralized matrix. The organic matrix, composed mainly of collagen fibers, gives bones flexibility by providing a framework for mineral deposition. Together, bone salts and the organic matrix work synergistically to make bones both strong and flexible.
The hardness of bone is primarily due to the presence of mineral salts like calcium phosphate, which form a mineralized matrix that gives bones their strength and rigidity. These mineral salts contribute to bone density and help in resisting fractures and maintaining skeletal structure. Other components like collagen fibers also play a role in providing flexibility and tensile strength to bones.
The cause is the irrational use of fertilizers.
Mineral salts that contain phosphorus include calcium phosphate, sodium phosphate, and potassium phosphate. These salts are essential for various biological processes in the body including bone formation, energy production, and cell signaling.