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The mean aperture angle decreases from 14.4° without HCl to 2.7° with P HCl = 160 mTorr.
The NW are more or less cone shaped, and the mean aperture angle (formed by the sidewalls of the NW) has been measured on each sample.
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Mean aperture angles (A) have been measured at the tip of the NW for each sample: (a) A = 14.4°, (b) A = 6.6°, (c) A = 3.4°, and (d) A = 2.7°.
In this case, the aperture angle is 53.13 ^circ).
Rose diagrams scaled for mean aperture for 10° bins.
Rose diagrams scaled for mean aperture in 10° bins.
Entry pressure correlates well to the mean aperture in these simulations when using a Gaussian distribution of fracture aperture.
The aperture angle is a measurement of the tapering of the NW.
This transducer possesses a focal length of 2.38 mm and an aperture angle of 84°.
Méheust and Schmittbuhl (2001) determined that three parameters are required to model the flow, the mean aperture, the root mean square of the aperture, and the Hurst coefficient.
The aperture angle decreases when P HCl increases, which implies that the tapering effect is considerably reduced using gaseous HCl.
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