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Displaying entries 21-30 out of 47.
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RVE with periodic boundary conditions |
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Representative Volume Element (RVE) with periodic boundary conditions - 2D plane strain model. - Prescribe average deformation. - Calculate effective/average stress. - Perturbation method to... |
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What is wrong in this superscatterer sctructure? |
Not rated
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I read a paper about superscatterer blocking structure. [1] [1] Xudong Luo, Tao Yang, Yongwei Gu, Huanyang Chen, Hongru Ma, 'Conceal an entrance by means of superscatterer,' Applied Physics... |
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Modelling Magma Intrusion in Sills
Nick Petford, University of Northampton |
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We used COMSOL Multi physics (Pipe and Particle Tracing Modules) to simulate the lateral, pressure driven flow of viscous magma in 2 and 3D. The model uses field (digital) images of the magmatic... |
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Surface plasmon polariton excitation in Kretschmann configuration
Pavel Kliuiev, University of Zurich |
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Excitation of surface plasmon polaritions at the gold-air interface in Kretschmann configuration. |
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Tutorial models for COMSOL Webinar "Simulating Graphene-Based Photonic and Optoelectronic Devices"
Alexander Kildishev, Birck Nanotechnology Center, Purdue University |
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Basic tutorial models for COMSOL Webinar "Simulating Graphene-Based Photonic and Optoelectronic Devices" by Prof. Alexander Kildishev, Purdue University, USA Validation with a meshless method... |
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Shape of a static meniscus pinned at the contact line from Young-Laplace equation |
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This is a simple example for equation based modeling where the static Young-Laplace equation - [Delta P] = [surface tension] * [divergence of the surface normal vector] - is solved to determine the... |
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Maxwell-Wagner Model of Blood Permittivity |
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Maxwell-Wagner model is used for explanation of frequency dispersion, which takes place for permittivity at various kinds of suspensions. In particular, this phenomenon is observed in the blood. The... |
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Laserwelding
Raphael Doerichh, Fraunhofer Mainz |
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Laser Welding of PMMA with 1 W Laser. |
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Convection dominated Convection-Diffusion Equation by upwind discontinuous Galerkin (dG) method
Huashan Sheng (盛华山), Department of Mathematics, Shanghai JiaoTong University (上海交通大学数学系) |
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We consider the Convection-Diffusion Equation with very small diffusion coefficient $\mu$: \[ -mu\Delta u + \mathbf{\beta}\dot\nabla u =f \mathrm{in}~ \Omega u=g(x,y) \mathrm{on}~... |
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Microsphere resonator |
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This model reproduces the simulation results from: http://dx.doi.org/10.1063/1.4801474 Solutions were stripped so you will have to run the simulation to see the results. That may take a while... |
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