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This method is also employed to compute the scattering of acoustic waves by scatterers, such as rigid wall acoustic liner splices, with width smaller than the computational mesh size.
Based on the study, a reasonable design of the processing path for micromachining of a finer embedded step with 24±2 μm width (smaller than the 60 μm focused spot size) around the inner-wall of a 2×2 mm2 cavity was developed.
But this steady doubling (known as Moore's law after Gordon Moore, the engineer who first pointed it out in 1965) cannot go on for ever, and nearly five decades later the limits may finally be within sight.Transistors now measure as little as 22 nanometres (billionths of a metre) in width, smaller than the wavelength of light with which they are etched, and just a few tens of atoms across.
Any pore with a width smaller than 0.6 nm does not hold any ion.
Both the two scattering mechanisms are applicable to the scattering from a general spherical scatter [93], whereas subsurface cracks are generally with the length of tens of microns and the width smaller than one micron in complex shapes.
It can be concluded that automated stacking cranes outperform straddle carriers in a stack with a span width smaller than nine containers.
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The side-to-side width of the groove from the top to the bottom is calculated with an in-house written image analysis code (see Methods section) and ranges from 320 nm down to widths smaller than 5 nm, thus confirming the ultra-sharp shape of the grooves.
The occurrence of water sorption hysteresis associated with the filling of micro and narrow mesopores (particularly for pores of widths smaller than ca. 3 nm, where nitrogen and argon isotherms at their boiling temperatures, i.e. 77 K and 87 K, respectively, are known to be reversible) provides additional opportunities for textural characterization.
Most of small islands with widths smaller than approximately 15 nm have an elliptical shape, although a small number of them are circular.
As the limits of resolution of the FQA did not allow us to quantify fibers with lengths and widths smaller than 50 μm and 6 μm, respectively, we used scanning electron microscopy to confirm that only the SPDF F 100 fraction contained any particles that were less than 50 μm in length and 6 μm in width.
It follows that, at candidate widths smaller than the true width (that is, { w min,…,w∗ - 1}), only a portion of the true motif is discovered while at candidate widths larger than the true width (that is, { w∗ + 1,…, w max }), the full motif is discovered, along with a number of background positions.
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