The telescoping tubes of matrix that form a large part of compact bone are called "Haversian systems" or "osteons." Each osteon consists of a central canal surrounded by concentric layers of bone matrix, known as lamellae, and contains blood vessels and nerves. This structural arrangement provides strength and support to the bone while facilitating nutrient and waste exchange.
Haversian canals and osteons are the telescoping tubes of matrix that form a large part of compact bone. These structures contain blood vessels and nerves that supply nutrients and signals to the bone cells. The osteons are organized around the central Haversian canal, which allows for efficient transport throughout the bone tissue.
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A large matrix with small pixel will give a better resolution.
Osteoclasts are large multinucleated cells that can dissolve the bony matrix by secreting acids and enzymes. They play a key role in bone remodeling and resorption.
The large crystals are called phenocrysts and the finer grained matrix is known as the groundmass. This texture is known as porphyritic texture, where the rock has two distinct crystal sizes.
A sparse matrix is matrix that allows special techniques to take advantage of large number of zero element. Application of sparse matrix is classification and relationship analysis in large data base system - SPARCOM
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You have to know the answer already. The large truck is heavier of course.
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The rock is called porphyry, which forms when magma slowly cools beneath the Earth's surface. The large crystals are known as phenocrysts, and the smaller surrounding crystals are called groundmass or matrix.
Hessian matrix are used in large scale extension problems within Newton type approach. The Hessian matrix is a square matrix of second partial derivatives of a function.
A sparse matrix is one which normally contains a large proportion of elements whose value is 0. There is no exact proportion at which a matrix becomes sparse.