Exact(1)
A 3D MoS2-rGO@Mo nanohybrids, a three-dimensional MoS2 nanosheets network coated with reduced graphene oxide (rGO) on molybdenum mesh, is demonstrated as one of the best MoS2-based electrocatalysts.
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From the results, the advantages of replacing steel fibre with UHMWPE fibre or steel wire mesh were demonstrated.
Accuracy on cut-cell meshes is demonstrated by comparing solutions to those on standard, boundary-conforming meshes.
The time-programmed dual release system using the multilayered electrospun nanofiber meshes was demonstrated as a useful formulation for advanced multidrug combination therapy requiring regiospecific administration of different drugs at different times.
Mesh convergence is demonstrated on single-block C-grid structured meshes.
A new modeling method to analyze the transfer characteristics of the PLC channel of a network with arbitrary topology is proposed in this paper, and its application in the network with a ring or mesh topology is demonstrated in detail [19].
Satisfactory mesh quality is demonstrated by comparing solutions obtained using the new meshes with reference data computed on high-quality advancing-front grids.
Then the convergence of the method upon strain softening, with respect to the mesh size, is demonstrated on a notched composite ply.
Although not used in the shadow map example below, the convenience of this mesh separation is demonstrated in the irradiance mapping example.
The resulting scheme is compact, simple to implement even on unstructured meshes, and is demonstrated to work for nonconvex Hamiltonians.
The performance of the proposed discretization, error estimation and adaptive mesh refinement algorithms is demonstrated for 3d aerodynamic flows.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com