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Longitudinal wave contact transducers (500 kHz) were used in direct contact with the solutions.
These results are then used to explain the scattering effects seen in Lamb wave contact scanning tomographic reconstructions.
The artificial diffusivity is dynamically localized in space to capture different types of discontinuities such as a shock wave, contact surface or material discontinuity.
The approach is based on shear wave contact measurements and analyses shear wave birefringence to estimate variation of the attenuation coefficient and shear moduli ratio between warp and weft directions.
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Four other scientists Next Wave contacted couldn't name a single example.
Next Wave contacted the Steve Irwin Wildlife Fund at Australia Zoo and found out that Irwin (a.k.a. The Crocodile Hunter) recently established the Steve Irwin Conservation Foundation, an environmental organisation registered in Australia and the United States.
In this work, a numerical method for computing the ground state of the two-component dipolar BEC is considered, where one equation has dipole-dipole interactions and the other has only the usual s-wave contact interaction.
A two-component Bose-Einstein condensate described by two coupled Gross-Pitaevskii (GP) equations in three dimensions is considered, where one equation has dipole-dipole interactions while the other one has only the usual s-wave contact interaction, in a harmonic trap.
An efficient numerical method is presented for computing the ground states of dipolar Bose-Einstein condensates based on two coupled three-dimensional Gross-Pitaevskii equations, where one equation has a dipole-dipole interaction potential and the other one has only the usual s-wave contact interaction.
A relatively wide spectrum of detection functions (sensors) is employed for representative flow cases which include boundary layers, vortices, jets, wakes, shock waves, contact discontinuities, and expansions.
Flows with shock waves, contact surfaces, slip streams, phase-change interfaces, and boundary layers can be modelled with great precision by these methods.
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