981 resultados para Force-Extension Relationship


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Resumen: Este ensayo teológico comprende y expone el pensamiento pastoral del Papa Francisco, primer obispo de Roma y Papa latinoamericano, elegido desde las periferias del orbe para guiar al Pueblo de Dios en el corazón de la urbe. Francisco es un pastor misionero y un pastoralista lúcido, que ha enseñado teología pastoral y, lo sigue haciendo, de otra forma, desde el ministerio petrino. La exhortación Evangelii gaudium (2013) condensa de una forma orgánica su mirada a la evangelización en la huella de la exhortación Evangelii nuntiandi de Pablo VI (1975) y del Documento Conclusivo de Aparecida del Episcopado latinoamericano y caribeño (2007). La novedad de su pontificado reformador y misionero hunde sus raíces en la figura singular del jesuita argentino Jorge Mario Bergoglio; en su arraigo en la Iglesia latinoamericana y en el proyecto misionero de Aparecida; y en la incipiente pero promisoria teología argentina postconciliar. El autor hace un pormenorizado estudio sistemático y contextualizado de la exhortación La alegría del Evangelio desde el propio documento y en relación a otros textos de Jorge Bergoglio y, ahora, del Papa Francisco. Articula su discurso en dos momentos mostrando sus interrelaciones. El primero, breve, presenta al sucesor de Pedro como un icono de la fisonomía regional y la reflexión pastoral de la Iglesia latinoamericana. El segundo analiza nueve claves de la Evangelii gaudium: la alegría de evangelizar, síntesis de la mística misionera; la figura de la Iglesia centrada en la misión; la influencia del proyecto misionero de Aparecida; la conversión misionera para la reforma eclesial desde el Concilio Vaticano II; la Iglesia, Pueblo de Dios y Madre de los pueblos, como sujeto de la misión; la fuerza evangelizadora de la piedad católica popular; la revolución de la ternura comunicada en el Evangelio de la misericordia; la dimensión social del Evangelio y de la evangelización; la opción por los pobres desde el corazón de Dios.

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In this paper, equations calculating lift force of a rigid circular cyclinder at lock-in uniform flow are deduced in detail. Besides, equations calculating the lift force on a long flexible circular cyclinder at lock-in are deduced based on mode analysis of a multi-degree freedom system. The simplified forms of these equations are also given. Furthermore, an approximate method to predict the forces and response of rigid circular cyclinders and long flexible circular cyclinders at lock-in is introduced in the case of low mass-damping ratio. A method to eliminate one deficiency of these equations is introduced. Comparison with experimental results show the effectiveness of this approximate method.

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The curvature-stress relation is studied for a film-substrate bilayer with the effect of interfacial slip and compared with that of an ideal interface without interfacial slip. The interfacial slip together with the dimensions, elastic and interfacial properties of the film and substrate layers can cause a significant deviation of curvature-stress relation from that with an ideal interface. The interfacial slip also results in the so-called free edge effect that the stress, constraint force, and curvature vary dramatically around the free edges. The constant curvature as predicted by Stoney's formula and the Timoshenko model of an ideal interface is no longer valid for a bilayer with a nonideal interface. The models with the assumption of an ideal interface can also lead to an erroneous evaluation on the true stress state inside a bilayer with a nonideal interface. The extended Stoney's formula incorporating the effects of both the layer dimensions and interfacial slip is presented.

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The influence of the indenter shapes and various parameters on the magnitude of the capillary force is studied on the basis of models describing the wet adhesion of indenters and substrates joined by liquid bridges. In the former, we consider several shapes, such as conical, spherical and truncated conical one with a spherical end. In the latter, the effects of the contact angle, the radius of the wetting circle, the volume of the liquid bridge, the environmental humidity, the gap between the indenter and the substrate, the conical angle, the radius of the spherical indenter, the opening angle of the spherical end in the truncated conical indenter are included. The meniscus of the bridge is described using a circular approximation, which is reasonable under some conditions. Different dependences of the capillary force on the indenter shapes and the geometric parameters are observed. The results can be applicable to the micro- and nano-indentation experiments. It shows that the measured hardness is underestimated due to the effect of the capillary force. (c) 2008 Elsevier Ltd. All rights reserved.

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The natural frequencies of a cantilever probe can be tuned with an attached concentrated mass to coincide with the higher harmonics generated in a tapping-mode atomic force microscopy by the nonlinear tip-sample interaction force. We provide a comprehensive map to guide the choice of the mass and the position of the attached particle in order to significantly enhance the higher harmonic signals containing information on the material properties. The first three eigenmodes can be simultaneously excited with only one carefully positioned particle of specific mass to enhance multiple harmonics. Accessing the interaction force qualitatively based on the high-sensitive harmonic signals combines the real-time material characterization with the imaging capability. (C) 2008 American Institute of Physics.