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groove shapes
Gratings having arbitrary groove shapes are considered and explicit formulae are given for the leakage parameters of gratings with symmetric profiles.
      
Thrombus formation in the bearing was examined with in vitro thrombogenesis tests and was reduced by changing the groove shapes to increase the bearing-gap flow to 3% of the external flow.
      
Groove guides with various groove shapes, such as rectangular, triangular, parabolic, elliptic and cosine functions, are investigated systematically.
      
The "hot" dispersion equation is obtained by means of the self-consistent field theory, and the small signal analysis is carried out including the effects of the dielectric-rod parameters and the groove shapes.
      
The equilibrated grain boundary groove shapes for Succinonitrile (SCN) solid solution in equilibrium with the Succinonitrile (SCN)-D Camphor (DC) eutectic liquid were directly observed.
      
The grain boundary energy of SCN rich phase of the SCN-DC eutectic system has been determined to be (14.95 ± 1.79) × 10-3 J m-2 from the observed grain boundary groove shapes.
      
The equilbrated grain boundary groove shapes for the Zn solid solution in equilibrium with the Zn-Al eutectic liquid were observed by rapid quenching.
      
The grain boundary energy for the same material has been calculated to be (182.302±18.23)×10-3 Jm-2 from the observed grain boundary groove shapes.
      
Validation of the experimentally observed groove shapes involved developing two-dimensional (2-D) and three-dimensional (3-D) finite-element (FE) models that employed a probabilistic distribution diagram (PDD).
      
The numerically predicted groove openings are in good agreement with the experimentally observed groove shapes, particularly for the 2-D case.
      
Validation of the experimentally observed groove shapes involved developing two-dimensional (2-D) and three-dimensional (3-D) finite-element (FE) models that employed a probabilistic distribution diagram (PDD).
      
The numerically predicted groove openings are in good agreement with the experimentally observed groove shapes, particularly for the 2-D case.
      
The equilibrated grain boundary groove shapes for solid Zn in equilibrium with the ZnMg eutectic liquid were observed on rapidly quenched samples.
      
The grain boundary energy for the solid Zn has also been calculated to be (172.97 ± 20.76) × 10-3J m-2 from the observed grain boundary groove shapes.
      
A comparison of the exact and approximate steady state groove shapes.
      
 

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