Part three follows when the procedure, which was explained in the first half of this subsection, is applied to the continuously differentiable parameterization of a choice of Floquet exponents of part two and to the continuously differentiable parameterization of a choice of eigenspaces of part one....
We study the transport properties on honeycomb networks motivated by graphene structures by using the continuous-time quantum walk (CTQW) model. For various relevant topologies we consider the average return probability and its long-time average as measures for the transport efficiency. These quantities...
The workflow of the model is explained in three stages: micromechanical model, simulation experiments under external macro-stresses and boundary conditions, and analysis of the experiment results. In the micromechanical model, the heterogeneous nature of the material is described with the geometrical ...
4.9B,D), which can be explained as due to the relaxation of the in plane strain induced by the slight mismatch between honeycomb borophene and the Al(111) surface (0.286 nm). The density functional theory (DFT) calculations confirmed stability of honeycomb borophene lattice on Al(111), and...
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This is explained by the aforementioned unevenness and variation of thickness and fiber volume fraction of the faces in the sandwich structure. Flexure tests (DIN 53293) were conducted on 15 mm thick GFRP/Nomex® sandwich specimens. The LS-DYNA simulation led to a corresponding representation of...
(2) Communications do not need specific node information for addressing (e.g., uid or static IP) and only need to record the local communication ports of neighbor nodes (specifically explained in the next subsection). Arbitrary nodes’ changes (increase/decrease/replacement) do not require ...
The possible interaction between the polymer with a cationic chain end and the negatively charged surface of the mica, which might have explained the difference of ordering between mica and glass substrates, cannot be applied to the PVC substrate [34]. The influence of the substrate on the pore...
Next, there will be explained an example of the method of producing the honeycomb structure according to the present invention: First, a material paste containing mainly he aforementioned material (one kind for a normal honeycomb unit while an inorganic material as the base material, inorganic mater...
Next, there will be explained an example of the method of producing the honeycomb structure according to the present invention: First, a material paste containing mainly he aforementioned material (one kind for a normal honeycomb unit while an inorganic material as the base material, inorganic mater...