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Furthermore, a size effect with lower tensile strength at cracked state for large scale elements in comparison to small beam specimens is shown.
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Due to the significant expenses involved in the fabrication of very large scale elements, the nondestructive investigation of impact damage in full-scale concrete structures and structural components is an area of research severely lacking in experimental data.
The new concept of clinical lipidomics is not a simple measurement of a large scale of lipid elements in the patients, a simple performance of lipidomics plus clinic information, and a simple correlation between lipid changes and clinical measures.
In large scale discrete element simulations, on the other hand, viscoelastic or plastic material behavior is often assumed for normal contacts and combined with arbitrary tangential models.
Clinical lipidomics was recently defined "as a new integrative biomedicine to discover the correlation and regulation between a large scale of lipid elements measured and analyzed in liquid biopsies from patients with those patient phenomes and clinical phenotypes".
A new and extended concept of clinical lipidomics was recently defined "as a new integrative biomedicine to discover the correlation and regulation between a large scale of lipid elements measured and analyzed in liquid biopsies from patients with those patient phenomes and clinical phenotypes" [1].
Besides, the straightforward implementation of pressure-based fluid structure interaction utilizing a symmetric solution strategy is validated herein to be efficient for a 3-D large scale practical usage in other finite element codes even the commercial ones to avoid using un-symmetric solvers.
Think on a large scale in broad terms.
For instance, the use of large-scale graphic elements (supergraphics) in interiors has become popular and accepted, in spite of the fact that its very idea often consciously denies or destroys the visual clarity of existing architectural design features.
For improving the search accuracy, we used our recent (large scale) alignment of σ70 promoter elements in E. Coli [ 19].
The ability to predict the location of these transcriptional elements in a large scale manner will prove very useful in the search for potential regulatory sites, and will aid in future work to define gonococcal transcriptional networks.
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