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The organizational capabilities of structural DNA nanotechnology are just beginning to be explored, and the field is expected ultimately to be able to organize a variety of species that will lead to exciting and possibly revolutionary materials.
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In this paper, Rivet Element capability of structural behaviour simulation is investigated for different geometries of riveted lap-shear specimen.
This paper studies the ability of the fuselage's lower lobe to absorb the energy during a crash landing, where the introduction of the composite materials can improve the crash survivability thanks to the crushing capability of structural parts to limit the effects of deceleration on the occupants.
The multi-objective control formulation permits the decision maker to shift the weight of the control to the minimization of any one of the quantities of interest and explore the optimum capabilities of the structural element.
Medium and high levels of protection categories require the use of the Alternate Path (AP) method to investigate the capability of the structural system to transfer loads safely from a notionally removed column to the remaining structural elements.
More importantly, due to the capability of programmable structural design and fabrication, a variety of nanostructures, including nanopillar arrays, nanotower arrays, and nanocone arrays, have been successfully fabricated using nanoengineered AAM templates.
Due to the capability of programmable structural design and fabrication, a variety of nanostructures, including nanopillar arrays, nanotower arrays, and nanocone arrays, have been successfully fabricated using nanoengineered AAM templates.
Among the various kinds of electrospun materials, electrospun carbon nanofibers (ECNFs) represent one of the most interesting research directions in nanoscience and nanotechnology, with the capability of realizing structural and functional features through tailored designs and controlled synthesis.
The article aims at presenting a perspective on the noticeable trends in the following aspects: (a) extending the limits of capability of selected structural and functional materials, (b) resorting to multicomponent compositions, (c) exploiting the benefits of fine-scale microstructure and (d) employing extreme temperature, pressure and strain rate for materials processing.
R osetta shows the capability of supplying structural detail in regions of the models underdetermined by the experimental data.
In order to tune the H2S release capability of GYY4137, structural modifications on the phosphorodithioate moiety were made to GYY4137 to afford a series of O-substituted phosphorodithioate-based H2S donors (Fig. 3).
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