Structural analysis of Si-doped amorphous In<sub>2</sub>O<sub>3</sub> based on quantum beam measurements and computer simulations. [PDF]
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Regularization of electromagnetic scattering problems via the Abel integral transform. [PDF]
Vinogradova E, Smith P.
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Machine learning assisted nanobeam X-ray diffraction based analysis on hydride vapor-phase epitaxy GaN. [PDF]
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Control of Phytophthora capsici, which causes root and stem rot, using encapsulated oligonucleotide DNA. [PDF]
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A Hydrophilic Copper-Viologen Hybrid Exhibiting High Degradation Efficiency on Commercial Dye in Maritime Accidents. [PDF]
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Ultra-thin (<2 µm) silicon carbide free-standing membranes as beam position monitors for soft and tender X-ray beamlines. [PDF]
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Fast multipole method for wave diffraction/radiation problems and its applications to VLFS
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A variational method for water wave radiation and diffraction problems
Journal of Fluid Mechanics, 1989It is shown that the linear and nonlinear exciting force coefficients, the added mass and radiation damping matrices, and the far-field wave amplitude (reflection and transmission coefficients in the two-dimensional case) can all be written as stationary values of well-defined functionals.
Aranha, J. A. P., Pesce, C. P.
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A B-spline-based method for radiation and diffraction problems
Ocean Engineering, 2006An open uniform B-spline-based panel method is developed for solution of potential flow problems. In this method, both geometry as well as the field variables are represented by the same open uniform B-spline basis function. The method is initially applied for the radiation problem in unbounded fluid. Computed results for a spheroid of different aspect
Ranadev Datta, Debabrata Sen
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