963 resultados para General Motors Corporation. Oldsmobile Division


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We derive a relationship between the initial unloading slope, contact depth, and the instantaneous relaxation modulus for indentation in linear viscoelastic solids by a rigid indenter with an arbitrary axisymmetric smooth profile. Although the same expression is well known for indentation in elastic and in elastic-plastic solids, we show that it is also true for indentation in linear viscoelastic solids, provided that the unloading rate is sufficiently fast. Furthermore, the same expression holds true for both fast loading and unloading. These results should provide a sound basis for using the relationship for determining properties of viscoelastic solids using indentation techniques.

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In this paper, construction of hybrid device by integrating nanowires with F1-ATPase motors is described. The nickel nanowires and multi-segment nanowires, including gold and nickel, were fabricated by electrochemical deposition in nanoporous templates. The nickel nanowires functionalized by biotinylated peptide can be assembled directly onto F1-ATPase motors to act as the propellers. If the multicomponent nanowires, including gold and nickel, were selectively functionalized by the thiol group modified ssDNA and the synthetic peptide, respectively, the biotinylated F1- ATPase motors can be attached to the biotinylated peptide on nickel segment of the nanowires. Then, the multi-component nanowires can also be used as the propellers, and one may observe the rotations of the multi-component nanowires driven by F1-ATPase motors. Therefore, introduction of multiple segments along the length of a nanowire can lead to a variety of multiple chemical functionalities, which can be selectively bound to cells and special biomolecules. This method provides an insight for the construction of other hybrid devices with its controlling arrangement of different biomolecule on designed nanometer scale structures.

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In this paper, a generalized JKR model is investigated, in which an elastic cylinder adhesively contacts with an elastic half space and the contact region is assumed to be perfect bonding. An external pulling force is acted on the cylinder in an arbitrary direction. The contact area changes during the pull-off process, which can be predicted using the dynamic Griffith energy balance criterion as the contact edge shifts. Full coupled solution with an oscillatory singularity is obtained and analyzed by numerical calculations. The effect of Dundurs' parameter on the pull-off process is analyzed, which shows that a nonoscillatory solution can approximate the general one under some conditions, i.e., larger pulling angle (pi/2 is the maximum value), smaller a/R or larger nondimensional parameter value of Delta gamma/E*R. Relations among the contact half width, the external pulling force and the pulling angle are used to determine the pull-off force and pull-off contact half width explicitly. All the results in the present paper as basic solutions are helpful and applicable for experimenters and engineers.

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An understanding of within-host dynamics of pathogen interactions with eukaryotic cells can shape the development of effective preventive measures and drug regimes. Such investigations have been hampered by the difficulty of identifying and observing directly, within live tissues, the multiple key variables that underlay infection processes. Fluorescence microscopy data on intracellular distributions of Salmonella enterica serovar Typhimurium (S. Typhimurium) show that, while the number of infected cells increases with time, the distribution of bacteria between cells is stationary (though highly skewed). Here, we report a simple model framework for the intensity of intracellular infection that links the quasi-stationary distribution of bacteria to bacterial and cellular demography. This enables us to reject the hypothesis that the skewed distribution is generated by intrinsic cellular heterogeneities, and to derive specific predictions on the within-cell dynamics of Salmonella division and host-cell lysis. For within-cell pathogens in general, we show that within-cell dynamics have implications across pathogen dynamics, evolution, and control, and we develop novel generic guidelines for the design of antibacterial combination therapies and the management of antibiotic resistance.

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En Nicaragua existen leyes, requisitos, y procedimientos que se aplican, para llevar a cabo la protección agropecuaria a nivel de los puestos fronterizos del país, por eso se propuso este trabajo monográfico que lleva por título "Estudio de las políticas vigentes en cuarentena animal de Nicaragua en los puestos fronterizo El Espino y Peñas Blancas en el periodo de Enero a Mayo del 2009", el cual se baso en los procedimientos de inspección en cuarentena animal, productos y subproductos según la Ley Básica de Salud Animal y Sanidad Vegetal (Ley 291). Este estudio se realizo en un periodo de cinco meses mediante la estadía en dichos puestos, los datos recopilados se obtuvieron de formatos oficiales de la Dirección General de protección agropecuaria (DGPSA) dentro de ellos tenemos los certificados zoosanitarios, permisos de importación, formatos de inspección, actas de retención, decomiso, destrucción y rechazo. Se confirmo que los puestos cumplen con los procedimientos de inspección cuarentenaria tomando en cuenta la ley 291 y manuales de inspección. Durante la etapa de investigación constatamos que existe una gran discrepancia entre el Puesto de El Espino y Peñas Blancas, tanto en el trabajo a realizar como en instalaciones, no obstante. ambos puestos carecen de instalaciones adecuadas para la inspección, cuentan con bajo presupuesto y poco personal, pero a pesar de las condíciones en que se encuentran los inspectores realizan un arduo esfuerzo por efectuar su trabajo. Se recomienda que todos los puestos cuarentenarios del país cumplan con las condiciones adecuadas, infraestructuras seguras y personal profesionalmente capacitado y debidamente actualizado con las enfermedades exóticas que puedan ingresar al país.

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The scattering of general SH plane wave by an interface crack between two dissimilar viscoelastic bodies is studied and the dynamic stress,intensity factor at the crack-tip is computed. The scattering problem can be decomposed into two problems: one is the reflection and refraction problem of general SH plane waves at perfect interface (with no crack); another is the scattering problem due to the existence of crack. For the first problem, the viscoelastic wave equation, displacement and stress continuity conditions across the interface are used to obtain the shear stress distribution at the interface. For the second problem, the integral transformation method is used to reduce the scattering problem into dual integral equations. Then, the dual integral equations are transformed into the Cauchy singular integral equation of first kind by introduction of the crack dislocation density function. Finally, the singular integral equation is solved by Kurtz's piecewise continuous function method. As a consequence, the crack opening displacement and dynamic stress intensity factor are obtained. At the end of the paper, a numerical example is given. The effects of incident angle, incident frequency and viscoelastic material parameters are analyzed. It is found that there is a frequency region for viscoelastic material within which the viscoelastic effects cannot be ignored.

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An understanding of within-host dynamics of pathogen interactions with eukaryotic cells can shape the development of effective preventive measures and drug regimes. Such investigations have been hampered by the difficulty of identifying and observing directly, within live tissues, the multiple key variables that underlay infection processes. Fluorescence microscopy data on intracellular distributions of Salmonella enterica serovar Typhimurium (S. Typhimurium) show that, while the number of infected cells increases with time, the distribution of bacteria between cells is stationary (though highly skewed). Here, we report a simple model framework for the intensity of intracellular infection that links the quasi-stationary distribution of bacteria to bacterial and cellular demography. This enables us to reject the hypothesis that the skewed distribution is generated by intrinsic cellular heterogeneities, and to derive specific predictions on the within-cell dynamics of Salmonella division and host-cell lysis. For within-cell pathogens in general, we show that within-cell dynamics have implications across pathogen dynamics, evolution, and control, and we develop novel generic guidelines for the design of antibacterial combination therapies and the management of antibiotic resistance.

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En 1985, Alfonso Guerra, entonces vicepresidente del gobierno español encabezado por Felipe González, pronunció una frase destinada a hacerse famosa: “Montesquieu ha muerto”. Fue vertida cuando el partido socialista (PSOE) aprovechó la mayoría parlamentaria recién alcanzada para reformar la Ley Orgánica del Poder Judicial. De acuerdo con esa reforma, los vocales del Consejo General del Poder Judicial (equivalente a nuestro Consejo de la Magistratura) debían en adelante ser elegidos por el parlamento y no, como hasta entonces, mayoritariamente por los mismos jueces, fórmula a la que se tachaba de “corporativista”2. Los críticos advirtieron allí un intento de manejar los tres órganos clásicos del Estado para un proyecto de gobierno a largo plazo. Nada mejor, para eso, que enterrar de una buena vez por todas al viejo y quizás molesto señor de la Brède y barón de Montesquieu. Como buen político, Guerra, en sus memorias3, negó haber pronunciado literalmente aquella fórmula, aduciendo haber sido sus declaraciones tomadas fuera de contexto, etc...

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Integran este número de la revista ponencias presentadas en Studia Hispanica Medievalia VIII : Actas de las X Jornadas Internacionales de Literatura Española Medieval, 2011, y de Homenaje al Quinto Centenario del Cancionero General de Hernando del Castillo.

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Contenido: Índice general de autores y materias. Año I, 1946 - Año X, 1955

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This paper proposes an analytical approach that is generalized for the design of various types of electric machines based on a physical magnetic circuit model. Conventional approaches have been used to predict the behavior of electric machines but have limitations in accurate flux saturation analysis and hence machine dimensioning at the initial design stage. In particular, magnetic saturation is generally ignored or compensated by correction factors in simplified models since it is difficult to determine the flux in each stator tooth for machines with any slot-pole combinations. In this paper, the flux produced by stator winding currents can be calculated accurately and rapidly for each stator tooth using the developed model, taking saturation into account. This aids machine dimensioning without the need for a computationally expensive finite element analysis (FEA). A 48-slot machine operated in induction and doubly-fed modes is used to demonstrate the proposed model. FEA is employed for verification.