13 resultados para STRATIFIED ANISOTROPIC MEDIA

em Universitätsbibliothek Kassel, Universität Kassel, Germany


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We deal with the numerical solution of heat conduction problems featuring steep gradients. In order to solve the associated partial differential equation a finite volume technique is used and unstructured grids are employed. A discrete maximum principle for triangulations of a Delaunay type is developed. To capture thin boundary layers incorporating steep gradients an anisotropic mesh adaptation technique is implemented. Computational tests are performed for an academic problem where the exact solution is known as well as for a real world problem of a computer simulation of the thermoregulation of premature infants.

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Singularities of elastic and electric fields are investigated at the tip of a crack on the interface of two anisotropic piezo-electric media under various boundary conditions on the crack surfaces. The Griffith formulae are obtained for increments of energy functionals due to growth of the crack and the notion of the energy release matrix is introduced. Normalization conditions for bases of singular solution are proposed to adapt them to the energy, stress, and deformation fracture criteria. Connections between these bases are determined and additional properties of the deformation basis related to the notion of electric surface enthalpy are established.

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The present dissertation is devoted to the construction of exact and approximate analytical solutions of the problem of light propagation in highly nonlinear media. It is demonstrated that for many experimental conditions, the problem can be studied under the geometrical optics approximation with a sufficient accuracy. Based on the renormalization group symmetry analysis, exact analytical solutions of the eikonal equations with a higher order refractive index are constructed. A new analytical approach to the construction of approximate solutions is suggested. Based on it, approximate solutions for various boundary conditions, nonlinear refractive indices and dimensions are constructed. Exact analytical expressions for the nonlinear self-focusing positions are deduced. On the basis of the obtained solutions a general rule for the single filament intensity is derived; it is demonstrated that the scaling law (the functional dependence of the self-focusing position on the peak beam intensity) is defined by a form of the nonlinear refractive index but not the beam shape at the boundary. Comparisons of the obtained solutions with results of experiments and numerical simulations are discussed.

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Diese Arbeit beschäftigt sich mit der grafischen Gestaltung von Mathematiklehrwerken und der damit verbundenen Wirkungen auf die SchülerInnen. Es wurde untersucht, welche Art von Gestaltungsaspekten in Schulbüchern eine positive Auswirkung auf die Lernmotivation hat. Im theoretischen Teil dieser Arbeit wird zunächst erläutert, wie der menschliche Wahrnehmungsapparat nach theoretischen Erkenntnissen aus der Wahrnehmungspsychologie visuelle Elemente wie Farbe und Form verarbeitet. Anhand gestaltpsychologischer und motivationspsychologischer Theorien werden mögliche Einflüsse und in diesem Zusammenhang bedeutungsvolle Aspekte aufgezeigt. Einzelne Funktionen und Wirkungsaspekte der einzelnen Medienbausteine wie Bild, Typografie und Bild-Text-Kombinationen werden anhand von Beispielen aus Mathematiklehrwerken dargestellt. Ein Exkurs über den vermehrten Einfluss der neuen Medien bei Kindern und Jugendlichen verdeutlicht, welche visuellen Medienerfahrungen Kinder und Jugendliche bei der Betrachtung eines Schulbuches mitbringen. Anschließend werden die erarbeiteten theoretischen Grundlagen in einer praktischen Arbeit genutzt. Eine exemplarisch ausgewählte Seite eines Mathematiklehrwerks werde unter verschiedenen gestalterischen Gesichtspunkten umgestaltet, so dass mehreren Varianten entstehen. Diese Entwürfe werden in einer qualitativen Studie mit einzelnen SchülerInnen diskutiert. Die Ergebnisse der aufgezeichneten Interviews wurden durch die Auswertungsmethode des zirkulären Dekonstruierens auf die aufgeworfenen Forschungsfragen untersucht und ausgewertet.

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Interatomic coulombic decay (ICD), a radiationless transition in weakly bonded systems, such as solutes or van der Waals bound aggregates, is an effective source for electrons of low kinetic energy. So far, the ICD processes could only be probed in ultra-high vacuum by using electron and/or ion spectroscopy. Here we show that resonant ICD processes can also be detected by measuring the subsequently emitted characteristic fluorescence radiation, which makes their study in dense media possible.