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Two different ceramic concrete matrices were studied, containing either sand or lightweight expanded clay aggregates.
Water structures in polymeric matrices were studied using Fourier transform infra-red (FTi.r).r
The interference of various organic acids and inorganic ions commonly present in different food and water sample matrices were studied.
Dynamic nanomechanical properties of bovine bone marrow stromal cells (BMSCs) and their newly synthesized cartilage-like matrices were studied at nanometer scale deformation amplitudes.
Specifically, the cell number, morphology, and metabolic activity of the adhered and proliferated cells on the polyethylene matrices were studied in vitro.
The influence of variables such as cement content, curing age, and accelerating admixture on compressive strength and abrasion resistance of the selected matrices were studied.
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General properties of the scattering matrices are studied.
In this paper, a new class of Fourier-based matrices is studied for deterministic compressed sensing.
The creep behaviour of these matrices was studied in the temperature interval ranging from 1000 to 1400 °C.
Rank two parametric perturbations of operators and matrices are studied in various settings.
Adhesion, spreading and proliferation of human bone marrow stromal cells (BMSCs) on these silk matrices was studied.
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