924 resultados para Fluidisation interface


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Nous nous intéressons, dans le cadre de cette recherche, à l’accès à l’internet des personnes malvoyantes. Plusieurs types d’outils destinés à ce public sont disponibles sur le marché, comme les lecteurs et les agrandisseurs d’écran, en fonction de l’acuité visuelle de la personne. Bien que ces outils soient utiles et régulièrement utilisés, les malvoyants (ainsi que les aveugles) évoquent souvent leur aspect frustrant. Plusieurs raisons sont citées, comme le manque d’organisation spatiale du contenu lu avec les lecteurs d’écran ou le fait de ne solliciter qu’un seul sens. La présente recherche consiste à adapter pour les malvoyants un système en développement le TactoWeb (Petit, 2013) qui permet une exploration audio-tactile du Web. TactoWeb a été conçu pour les handicapés ayant une cécité complète et n’offre donc aucune propriété visuelle. Nous proposons ici une adaptation du système pour les handicapés n’ayant qu’une déficience visuelle partielle. Nous espérons fournir à cette population des outils performants qui leur permettront de naviguer sur l’internet de façon efficace et agréable. En effet, grâce à une exploration non-linéaire (qui devrait améliorer l’orientation spatiale) et une interface multimodale (qui sollicite la vue, l’ouïe et le toucher), nous pensons réduire fortement le sentiment de frustration qu’évoquent les malvoyants. Nous avons posé l’hypothèse qu’une exploration non-linéaire et trimodale d’un site internet avec TactoColor est plus satisfaisante et efficace qu’une exploration non-linéaire bimodale avec TactoWeb (sans retour visuel). TactoColor a été adapté pour les malvoyants en ajoutant des indices visuels traduisant les composantes de la page (liens, menus, boutons) qui devraient rendre l’exploration plus aisée. Pour vérifier notre hypothèse, les deux versions du logiciel ont été évaluées par des malvoyants. Ainsi, les participants ont commencé soit avec TactoWeb, soit avec TactoColor afin de ne pas favoriser une des versions. La qualité de la navigation, son efficacité et son efficience ont été analysées en se basant sur le temps nécessaire à l’accomplissement d’une tâche, ainsi que la facilité ou la difficulté évoquée par le participant. Aussi, à la fin de chaque session, nous avons demandé leur avis aux participants, grâce à un questionnaire d’évaluation, ce qui nous a permis d’avoir leur retour sur notre logiciel après leur brève expérience. Tous ces relevés nous ont permis de déterminer que l’ajout des couleurs entraine une exploration plus rapide des pages web et une meilleure orientation spatiale. Par contre les performances très différentes des participants ne permettent pas de dire si la présence des couleurs facilite la complétion des tâches.

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L'oxydoréduction des monocouches auto-assemblées («Self-assembled monolayers ou SAMs) de ferrocenyldodecanethiolates sur une surface d'or (Fc(CH2)12SAu) dans des solutions aqueuses de n-alkyle sulfate de sodium (6, 8, 10 et 12 atomes de carbone) est étudiée par spectroscopie de résonance des plasmons de surface («Surface Plasmons Resonance ou SPR) couplée avec de la voltampérométrie cyclique (VC). La technique SPR est utilisée pour suivre en temps réel l'adsorption des tensioactifs en fonction du potentiel appliqué. Elle permet de quantifier l'épaisseur et le recouvrement des molécules adsorbées pour déterminer l'organisation des tensioactifs anioniques sur la SAM. La VC est utilisée afin de caractériser l'oxydation du groupement ferrocène en présence des n-alkyle sulfate de sodium qui s'associent à la SAM grâce à l'appariement entre le ferrocénium et le groupement sulfate. Des mélanges binaires d'alkylesulfates de différentes compositions sont utilisés dans le but de déterminer l'organisation induite par une réaction d'oxydoréduction. L'effet de la longueur de la chaîne d'hydrocarbures sur la quantité de tensioactifs anioniques adsorbés ainsi que les affinités relatives d'appariement des anions alkyle sulfate aux ferrocéniums sont rapportés dans ce mémoire. Ces surfaces électrosensibles permettront la détection de molécules amphiphiles et la compréhension du comportement de mélanges binaires de tensioactifs. Ainsi, ces travaux apporteront une avancée sur la modulation électrochimique de l'organisation de matériaux sur des substrats solides basée sur l'appariement d'ions.

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The quantum yields of singlet oxygen production and lifetimes at the gas–solid interface in silica gel material are determined. Different photosensitizers (PS) are encapsulated in parallelepipedic xerogel monoliths (PS-SG). PS were chosen according to their known photooxidation properties: 9,10-dicyanoanthracene (DCA), 9,10-anthraquinone (ANT), and a benzophenone derivative, 4-benzoyl benzoic acid (4BB). These experiments are mainly based on time-resolved 1O2 phosphorescence detection, and the obtained FD and tD values are compared with those of a reference sensitizer for production, 1H-phenalen-1- one (PN), included in the same xerogel. The trend between their ability to oxidize organic pollutants in the gas phase and their efficiency for production is investigated through photooxidation experiments of a test pollutant dimethylsulfide (DMS). The FD value is high for DCA-SG relative to the PN reference, whereas it is slightly lower for 4BB-SG and for ANT-SG. FD is related to the production of sulfoxide and sulfone as the main oxidation products for DMS photosensitized oxidation. Additional mechanisms, leading to C!S bond cleaveage, appear to mainly occur for the less efficient singlet oxygen sensitizers 4BB-SG and ANTSG.

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An Ising-like model, with interactions ranging up to next-nearest-neighbor pairs, is used to simulate the process of interface alloying. Interactions are chosen to stabilize an intermediate "antiferromagnetic" ordered structure. The dynamics proceeds exclusively by atom-vacancy exchanges. In order to characterize the process, the time evolution of the width of the intermediate ordered region and the diffusion length is studied. Both lengths are found to follow a power-law evolution with exponents depending on the characteristic features of the model.

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We show that, at high densities, fully variational solutions of solidlike types can be obtained from a density functional formalism originally designed for liquid 4He . Motivated by this finding, we propose an extension of the method that accurately describes the solid phase and the freezing transition of liquid 4He at zero temperature. The density profile of the interface between liquid and the (0001) surface of the 4He crystal is also investigated, and its surface energy evaluated. The interfacial tension is found to be in semiquantitative agreement with experiments and with other microscopic calculations. This opens the possibility to use unbiased density functional (DF) methods to study highly nonhomogeneous systems, like 4He interacting with strongly attractive impurities and/or substrates, or the nucleation of the solid phase in the metastable liquid.

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The interface of MgO/Ag(001) has been studied with density functional theory applied to slabs. We have found that regular MgO films show a small adhesion to the silver substrate, the binding can be increased in off-stoichiometric regimes, either by the presence of O vacancies at the oxide film or by a small excess of O atoms at the interface between the ceramic to the metal. By means of theoretical methods, the scanning tunneling microscopy signatures of these films is also analyzed in some detail. For defect free deposits containing 1 or 2 ML and at low voltages, tunnelling takes place from the surface Ag substrate, and at large positive voltages Mg atoms are imaged. If defects, oxygen vacancies, are present on the surface of the oxide they introduce much easier channels for tunnelling resulting in big protrusions and controlling the shape of the image, the extra O stored at the interface can also be detected for very thin films.

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Friction welding is a solid state joining process that produces coalescence in materials, using the heat developed between surfaces through a combination of mechanical induced rubbing motion and applied load. In rotary friction welding technique heat is generated by the conversion of mechanical energy into thermal energy at the interface of the work pieces during rotation under pressure. Traditionally friction welding is carried out on a dedicated machine because of its adaptability to mass production. In the present work, steps were made to modify a conventional lathe to rotary friction welding set up to obtain friction welding with different interface surface geometries at two different speeds and to carry out tensile characteristic studies. The surface geometries welded include flat-flat, flat-tapered, tapered-tapered, concave-convex and convex-convex. A comparison of maximum load, breaking load and percentage elongation of different welded geometries has been realized through this project. The maximum load and breaking load were found to be highest for weld formed between rotating flat and stationary tapered at 500RPM and the values were 19.219kN and 14.28 kN respectively. The percentage elongation was found to be highest for weld formed between rotating flat and stationary flat at 500RPM and the value was 21.4%. Hence from the studies it is cleared that process parameter like “interfacing surface geometries” of weld specimens have strong influence on tensile characteristics of friction welded joints

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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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Presentation at the 1997 Dagstuhl Seminar "Evaluation of Multimedia Information Retrieval", Norbert Fuhr, Keith van Rijsbergen, Alan F. Smeaton (eds.), Dagstuhl Seminar Report 175, 14.04. - 18.04.97 (9716). - Abstract: This presentation will introduce ESCHER, a database editor which supports visualization in non-standard applications in engineering, science, tourism and the entertainment industry. It was originally based on the extended nested relational data model and is currently extended to include object-relational properties like inheritance, object types, integrity constraints and methods. It serves as a research platform into areas such as multimedia and visual information systems, QBE-like queries, computer-supported concurrent work (CSCW) and novel storage techniques. In its role as a Visual Information System, a database editor must support browsing and navigation. ESCHER provides this access to data by means of so called fingers. They generalize the cursor paradigm in graphical and text editors. On the graphical display, a finger is reflected by a colored area which corresponds to the object a finger is currently pointing at. In a table more than one finger may point to objects, one of which is the active finger and is used for navigating through the table. The talk will mostly concentrate on giving examples for this type of navigation and will discuss some of the architectural needs for fast object traversal and display. ESCHER is available as public domain software from our ftp site in Kassel. The portable C source can be easily compiled for any machine running UNIX and OSF/Motif, in particular our working environments IBM RS/6000 and Intel-based LINUX systems. A porting to Tcl/Tk is under way.

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This thesis defines Pi, a parallel architecture interface that separates model and machine issues, allowing them to be addressed independently. This provides greater flexibility for both the model and machine builder. Pi addresses a set of common parallel model requirements including low latency communication, fast task switching, low cost synchronization, efficient storage management, the ability to exploit locality, and efficient support for sequential code. Since Pi provides generic parallel operations, it can efficiently support many parallel programming models including hybrids of existing models. Pi also forms a basis of comparison for architectural components.

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We present an immersed interface method for the incompressible Navier Stokes equations capable of handling rigid immersed boundaries. The immersed boundary is represented by a set of Lagrangian control points. In order to guarantee that the no-slip condition on the boundary is satisfied, singular forces are applied on the fluid at the immersed boundary. The forces are related to the jumps in pressure and the jumps in the derivatives of both pressure and velocity, and are interpolated using cubic splines. The strength of singular forces is determined by solving a small system of equations at each time step. The Navier-Stokes equations are discretized on a staggered Cartesian grid by a second order accurate projection method for pressure and velocity.

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A quick word about abstract How a class interfaces Making Pets The Deadly Diamond of Death Interfaces (not interfaces)

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El objetivo de este trabajo es el diseño de una interface entre un programa de cálculo simbólico y uno de CAD y su aplicación al caso de modelado geométrico y modelado de caras. El libro, se divide en tres capítulos: curvas en 2D, curvas en 3D y superficies. Dado que existen programas de cálculo simbólico que representan sus curvas, resultará favorable captar el fichero de puntos producido por dicho programa y, con los tratamientos convenientes, transformarlo en una lista susceptible de ser leída desde un programa CAD, los puntos trasvasados serán los vértices de una polilínea que posteriormente adaptada representará la curva en cuestión. Y, siguiendo un proceso análogo, también será posible obtener el fichero de puntos de una superficie. Para desarrollar esta aplicación, se ha elegido como programa de cálculo simbólico Maple V2, y como programa CAD, AUTOCAD V12.

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Nueve paquetes de actividades para Windows para ciclo superior de Primaria. Se trabajan medidas de capacidad y longitud y masa, fracciones, enteros y porcentajes entre otros contenidos. Las actividades se basan en ejercicios visuales y problemas. Permite instalar el programa o hacer una copia en un disquete.