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Displaying entries 61-69 out of 69.
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Finite Elements to Computational Engineering Sciences
AJ Baker, University of Tennessee, Knoxville |
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This site develops discrete implementations of WS theory for diverse variety of problem statements in the computational engineering sciences. Unique to the FE discrete development, the resulting... |
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Mie scattering off plasmonic nanoparticles |
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This is a general model to simulate light scattering off plasmonic or dielectric nano-particles or spherical nano-structures. I computed the total scattering cross-section (SCS), absorption... |
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Modeling of Binder Removal by Diffusion from Ceramic Green Body
David Retzloff, University of Missouri |
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Modeling of Binder Removal by Diffusion from Ceramic Green Bodies David G. Retzloff and Stephen J. Lombardo, University of Missouri This presentation delves into the fabrication of... |
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Electromagnetic and hydrodynamic transient coupling |
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In this model transient electromagnetics and hydrodynamics are coupled in a so-called strong MHD coupling in a 2D axisymmetric geometry, with k-epsilon RANS turbulence equations for the fluid... |
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Domain decomposition for hyperbolic equations
mikhael balabane, universite paris 13 |
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Domain decomposition for hyperbolic equations Mikhael Balabane , Université Paris 13 Stephan Savarese, COMSOL France This model shows how to solve an iterative algorithm using domain... |
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1D resonant quantum tunneling
Per Sundqvist, ABB Corporate Research AB |
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The model sets up boundary conditions for the Schrödinger equation in order to achive tunneling solutions. A resonant barrier potential is created with 1nm separation-width and 0.2nm oxide... |
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Zernike Polynomial extraction of deformed optical surface |
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You will find hereby a COMSOL Multiphysics v4.2a Solid + Optimisation model extracting the first dozen Zernike polynomials from a deformed circular surface, expressed in RMS values. In optics,... |
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Pyramidal Horn Antenna |
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We provide a convenient 3D RF model of a generic pyramidal microwave horn, with a simple user-adjustable (parameterized) geometry. The model was prepared with Comsol Multiphysics v4.2a with the RF... |
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Loudspeaker Driver Electromagnetic v4.1 |
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This model is the electromagnetic part of the Loudspeaker Driver model (http://www.comsol.com/showroom/gallery/1369/). The acoustic module is NOT required to open this model. |