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We adopted models of photoionized plasma with a cylindrical geometry, and estimated physical parameters such as density, dimension, solid angle from the source, temperature and ξ -parameter.
Structural gradient formation (i.e., density, dimension, and depth of the pores) is highly dependent on the LEF applied across the n-type silicon substrates.
The lateral electric field (LEF) applied across the silicon substrate leads to the formation of structural gradient in terms of density, dimension, and depth of the etched pores.
On the basis of empirical traffic data [14], the nodes' positions are generated according to a PPP of parameter ρs, where ρs is the vehicle (linear) spatial density (dimension: [veh/m] --the symbol "veh" it is not a realistic unit of measure, but it will be used for the sake of clarity.
On the other hand, control of the morphology is necessary when distinct structural characteristics are required on the same chip, i.e., samples with a structural gradient (in terms of density, dimension, and depth of the pores) which are widely used in biological applications as a porous media for the culturing of biological specimens [5 8].
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The ZnO nanorod array with highest density and dimension revealed the best electrowetting property with the contact angle change of 95°.
The field emission property was also optimized by changing the nanorods density and dimension.
Moreover, its field emission property was also optimized by changing the nanorods density and dimension.
Furthermore, the density and dimension of the interfacial fibers were tailored by adjusting the annealing temperatures.
Image analysis of vascularised implants assessed the vascular density, fractal dimension and diameter of blood vessels at two different scales (the whole ceramic and pores alone) and was performed on model SiHA ceramics harbouring pores of various cross-sectional geometries (circles, square, rhombus, triangles and stars).
The water contact angle measurements showed that the density and dimension of nanorods would influence the surface wettability evidently.
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CEO of Professional Science Editing for Scientists @ prosciediting.com