993 resultados para application moment


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The Organization for Security and Cooperation in Europe (OSCE) is the first and currently the only international body to have a monitoring mission deployed in Ukraine. This is as it should be, argues Erwan Fouéré. Today, with EU members making up half the membership of the OSCE, the EU needs to show greater responsibility and far-sightedness in its dealings with the OSCE. In the run-up to the 40th anniversary of the Helsinki Final Act, and faced with its most serious security crisis since the fall of the Berlin Wall, the EU should take the lead once again in fostering collective responsibility on the part of all Participating States to ensure a meaningful and effective role for the OSCE.

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On 7 June, Turks will head to the polls to elect a new parliament. This election is a pivotal moment for Turkey’s future, with two battles being played out. While the first is about securing a majority in parliament, the second is related to President Recep Tayyip Erdoğan and his goal of creating a presidential system of governance. Furthermore, the future of the Kurdish Peace Process and the stability in the southeast of the country will almost certainly hinge on the outcome. Hence, this election is a battle for Turkey's future.

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More than two years in the making, the agreement concluded by China, the EU, France, Germany, Russia, the UK and the US with Iran to prevent the ‘weaponisation’ of the latter’s nuclear programme is a big deal. But, cautions Steven Blockmans in this CEPS Commentary, it is not the silver bullet to the normalisation of relations. Implementation will be a tortuous process, fraught with suspicion and friction. Although Europe has been called upon to seize the moment and to shift to a relationship with Iran based on engagement, not containment, the EU and its member states would be better advised not to move beyond their nuclear focus too quickly, but rather to show a sense of duty and loyal cooperation with their international partners by supporting the effective execution of the accord.

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P systems or Membrane Computing are a type of a distributed, massively parallel and non deterministic system based on biological membranes. They are inspired in the way cells process chemical compounds, energy and information. These systems perform a computation through transition between two consecutive configurations. As it is well known in membrane computing, a configuration consists in a m-tuple of multisets present at any moment in the existing m regions of the system at that moment time. Transitions between two configurations are performed by using evolution rules which are in each region of the system in a non-deterministic maximally parallel manner. This work is part of an exhaustive investigation line. The final objective is to implement a HW system that evolves as it makes a transition P-system. To achieve this objective, it has been carried out a division of this generic system in several stages, each of them with concrete matters. In this paper the stage is developed by obtaining the part of the system that is in charge of the application of the active rules. To count the number of times that the active rules is applied exist different algorithms. Here, it is presents an algorithm with improved aspects: the number of necessary iterations to reach the final values is smaller than the case of applying step to step each rule. Hence, the whole process requires a minor number of steps and, therefore, the end of the process will be reached in a shorter length of time.

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A debate is currently prevalent among the structural engineers regarding the use of cracked versus un-cracked moment of inertia of the structural elements in analyzing and designing tall concrete buildings. (The basic definition of a tall building, according to the Journal of Structural Design of Tall Buildings Vol. 13. No. 5, 2004 is a structure that is equal to or greater than 160 feet in height, or 6 stories or greater.) The controversy is the result of differing interpretations of certain ACI (American Concrete Institute) code provisions. The issue is whether designers should use cracked moment of inertia in order to estimate lateral deflection and whether the computed lateral deflection should be used to carry out subsequent second-order analysis (analysis considering the effect of first order lateral deflections on bending moment and shear stresses). On one hand, bending moments and shear forces estimated based on un-cracked moment of inertia of the sections may result in conservative designs by overestimating moments and shears. On the other hand, lateral deflections may be underestimated due to the same analyses resulting in unsafe designs.

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Cette thèse propose une lecture anthropologique de la consommation d’alcool. Elle met de l’avant une approche novatrice qui repose sur le concept de « métaphysique du quasi- arrêt ». Cette approche a été développée à la suite d’une recherche ethnographique réalisée dans la région de la Beauce, au Québec. Au lieu de considérer la consommation d’alcool comme un problème social ou de santé publique, j’ai cherché à comprendre comment et pourquoi l’on boit, en Beauce, en me laissant guider par les buveurs et les buveuses côtoyés sur place. En prenant part à de nombreuses soirées où la bière est omniprésente, que ce soit dans les garages, les bars ou l’aréna local, je me suis laissé affecter par les sensations ressenties et par les paroles prononcées lorsque les buveurs éprouvent ce qu’ils appellent le « feeling du moment ». En prenant du recul, j’ai constaté que les Beaucerons qui boivent ont développé des stratégies défensives pour échapper à la tentative de contrôle de la société québécoise sur leurs conduites alcooliques et, plus largement, sur l’alcoolisme. En effet, dans la perspective de la « métaphysique du quasi-arrêt », la quantité de verres consommés n’a d’importance qu’eu égard au « feeling du moment »; les normes culturelles ou médicales liées à la consommation d’alcool ne tiennent pas, et c’est pourquoi cette approche permet d’expliquer des discours et des pratiques liés à la consommation d’alcool qui, à première vue, semblent paradoxaux, voire complètement absurdes. Pour bien montrer en quoi l’approche mise de l’avant se distingue, mais surtout pour expliquer comment la consommation excessive d’alcool en est venue à représenter, en anthropologie comme dans d’autres disciplines, une pratique problématique qu’il faut comprendre pour la combattre, une première partie de la thèse consiste en une mise en perspective historique de l’alcoolisme en tant que concept scientifique et enjeu de société. Y sont passées en revue les approches et concepts développés, depuis la fin du XVIIe siècle, par des médecins, des psychologues, des économistes, des sociologues et des anthropologues euro-américains pour aborder ce genre de consommation. Je suggère que ces scientifiques mènent, depuis plus de deux siècles, une véritable croisade contre les « buveurs excessifs ». Collaborant avec l’État, les mouvements de tempérance et les entreprises privées, ils ont contribué à contenir les abus d’alcool en Occident. Dans la seconde partie de la thèse, l’ethnographie sert de support au déploiement de la perspective théorique développée à l’issue du travail de terrain. Il s’agit d’analyser comment les buveurs d’alcool vivent et font durer le « feeling du moment » au cours du boire social. Sur le terrain, j’ai découvert que les buveurs d’alcool ont inventé onze stratégies pour vivre et faire durer le « feeling du moment » en consommant de l’alcool avec les autres. Ces stratégies constituent une forme de résistance face à une société qui cherche à contrôler les conduites alcooliques.

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We implement conditional moment closure (CMC) for simulation of chemical reactions in laminar chaotic flows. The CMC approach predicts the expected concentration of reactive species, conditional upon the concentration of a corresponding nonreactive scalar. Closure is obtained by neglecting the difference between the local concentration of the reactive scalar and its conditional average. We first use a Monte Carlo method to calculate the evolution of the moments of a conserved scalar; we then reconstruct the corresponding probability density function and dissipation rate. Finally, the concentrations of the reactive scalars are determined. The results are compared (and show excellent agreement) with full numerical simulations of the reaction processes in a chaotic laminar flow. This is a preprint of an article published in AlChE Journal copyright (2007) American Institute of Chemical Engineers: http://www3.interscience.wiley.com/

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This document introduces the planned new search for the neutron Electric Dipole Moment at the Spallation Neutron Source at the Oak Ridge National Laboratory. A spin precession measurement is to be carried out using Ultracold neutrons diluted in a superfluid Helium bath at T = 0.5 K, where spin polarized 3He atoms act as detector of the neutron spin polarization. This manuscript describes some of the key aspects of the planned experiment with the contributions from Caltech to the development of the project.

Techniques used in the design of magnet coils for Nuclear Magnetic Resonance were adapted to the geometry of the experiment. Described is an initial design approach using a pair of coils tuned to shield outer conductive elements from resistive heat loads, while inducing an oscillating field in the measurement volume. A small prototype was constructed to test the model of the field at room temperature.

A large scale test of the high voltage system was carried out in a collaborative effort at the Los Alamos National Laboratory. The application and amplification of high voltage to polished steel electrodes immersed in a superfluid Helium bath was studied, as well as the electrical breakdown properties of the electrodes at low temperatures. A suite of Monte Carlo simulation software tools to model the interaction of neutrons, 3He atoms, and their spins with the experimental magnetic and electric fields was developed and implemented to further the study of expected systematic effects of the measurement, with particular focus on the false Electric Dipole Moment induced by a Geometric Phase akin to Berry’s phase.

An analysis framework was developed and implemented using unbinned likelihood to fit the time modulated signal expected from the measurement data. A collaborative Monte Carlo data set was used to test the analysis methods.