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These computations were repeated for all cell sizes ranging from 1,000 to 5,000 m.
Via-holes with cell sizes ranging from 1 μm to 50 nm were completed.
Interdigitated and serpentine designs, and cell sizes ranging from 10 cm2 to 400 cm2, are simulated.
Controllable cell sizes ranging from 280 nm to 760 nm were obtained, matching the diameters of the silica nanobead molds used.
Due to the self-supported feature of the diamond unit cell, low volume fraction (7.5 15%) AlSi10Mg periodic cellular lattice structures can be fabricated by the DMLS process with the unit cell sizes ranging from 3 mm to 7 mm.
We hypothesized that due to the high homogeneity of this type of plantation, LiDAR data with a density of 5 pulses m−2 would provide AGC prediction accuracies similar to those from LiDAR data with a density of 10 pulses m−2, at grid cell sizes ranging from 5 to 20 m.
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PLA bead foams with 3- to 30-fold expansion ratios and average cell sizes ranged from 350 nm to 15 μm were prepared.
The cell size ranging from 45 to 176 μm could be modulated by changing solid loading in the initial slurry and freezing temperatures.
The cell temperature was found to have a linear dependence on the geometric concentration with a characteristic slope that increases with cell size (ranging from 10 to 0.25 mm).
Therefore, in this study, ultra-low density ZTA foams having single strut wall thickness, cell size ranging from 80 μm to 200 μm, and above 90% porosity were successfully fabricated via the particle-stabilized direct foaming method.
By saturating the polycarbonate nanocomposites reinforced with 1 wt% of MWNTs at 100 bar and 100 °C during 16 h, microcellular foams were generated, with a density of 0.62, a cell size ranging from 0.6 to 4 μm, and a cellular density of 4.1 × 1011 cells cm−3.
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CEO of Professional Science Editing for Scientists @ prosciediting.com