6 resultados para Critère de Hilbert-Mumford

em Universidade Federal do Rio Grande do Norte(UFRN)


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Prétendant contribuer au progrès sur le champ épistémologique de l éducation environnementale, nous avons défini l objetif principal de cette recherche visant construire et évaluer initialement des structures éco-vécues appliquées aux sentiers écologiques interprétatifs dans des zones de protection environnementale. Pour conduire la tâche de l investigation écophénoménologique, l objectif présent a été déplié spécifiquement de la façon suivante: 1. Approfondir la discussion sur le rôle de l émotion et du sentiment dans l éducation. 2. Démarquer un trajet de sentier écologique du Parque das Dunas en identifiant des aires éco-sensorielles pour le développement du vécu écologique. 3. Construire des structures des vécus écologiques pour les environnements préalablement définis dans un sentier du Parque das Dunas. 4. Vivre l expérience des structures éco-vécues en tant qu éducateurs, visant leur validation méthodologique. 5. Présenter la conception de l éducation environnementale corpororalisée qui valorise les émotions et les sentiments dans les structures des éco-vécus. Pour orienter notre investigation écophénoménologique à fin de construire et évaluer des structures des éco-vécues appliquées aux sentiers écologiques interprétatifs, quelques présupposés ont été définis pour agir comme une boussole pendant toute notre promenade écologique: Du point de vue biologique, l amour est l émotion qui constitue le domaine des actions dans lequel l autre est accepté comme il est dans le présent, sans attente par rapport aux conséquences de l intimité, même si c est légitime de les attendre (Maturana e Verden-Zöller, 2004). Éduquer dans la biologie de l amour est s occuper du développement, de la pensée et des intelligences et, au même temps, éduquer l écoute du sentiment et l ouverture du coeur (Moraes, 2003). La corporéité est le siège radiant, le premier et le principal le critère éducationnel (Assmann, 1995). Les activités qui fluent, proportionnent la sensation de découverte, un sentiment créatif qui transpose l individu vers une nouvelle réalité (Csikszntmihalyi, 1992). Ressentir le sentiment fait exalter la portée des émotions (Damásio, 2004). L ethnographie et l écophénoménologie ont été les approches méthodologiques utilisées dans l étude. Onze éducateurs ont participé du processus de l expérience vécue et de l évaluation des structures éco-vécues construites dans la perspective d une Education Environnementale Corporalisée. Le développement de la conception d une Education Environnementale Corporalisée à partir du vécu sur les sentiers écologiques du Parque das Dunas, à Natal-RN, nous a amenés à structurer un système autopoïétique pour proposer des propriétés ou des principes configurant les intentions fondamentales d une Éducation Environnementale Corporalisée. Telle conception considère la métaphore de la Toile de la Corporéité vécue dans la Base de Recherche Corporéité et Éducation BACOR/UFRN et le phénomène de la ludopoïèse capable de faire émerger la joie de vivre la vie avec le sens de luminescence humaine. Associés à la Biologie de l amour, nous espérons pouvoir contribuer à la présence des émotions et des sentiments pour une perspective transdisciplinaire et corporalisée pour l Education Environnementale. Nous présentons cinq principes de guidage pour la concrétisation d une Education Environnementale Corporalisée: Ecopréservation, Ecoterritorialité, Ecoconectivité, Ecovaleur, Ecojouissance

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The occurrence of transients in electrocardiogram (ECG) signals indicates an electrical phenomenon outside the heart. Thus, the identification of transients has been the most-used methodology in medical analysis since the invention of the electrocardiograph (device responsible for benchmarking of electrocardiogram signals). There are few papers related to this subject, which compels the creation of an architecture to do the pre-processing of this signal in order to identify transients. This paper proposes a method based on the signal energy of the Hilbert transform of electrocardiogram, being an alternative to methods based on morphology of the signal. This information will determine the creation of frames of the MP-HA protocol responsible for transmitting the ECG signals through an IEEE 802.3 network to a computing device. That, in turn, may perform a process to automatically sort the signal, or to present it to a doctor so that he can do the sorting manually

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In this dissertation, after a brief review on the Einstein s General Relativity Theory and its application to the Friedmann-Lemaitre-Robertson-Walker (FLRW) cosmological models, we present and discuss the alternative theories of gravity dubbed f(R) gravity. These theories come about when one substitute in the Einstein-Hilbert action the Ricci curvature R by some well behaved nonlinear function f(R). They provide an alternative way to explain the current cosmic acceleration with no need of invoking neither a dark energy component, nor the existence of extra spatial dimensions. In dealing with f(R) gravity, two different variational approaches may be followed, namely the metric and the Palatini formalisms, which lead to very different equations of motion. We briefly describe the metric formalism and then concentrate on the Palatini variational approach to the gravity action. We make a systematic and detailed derivation of the field equations for Palatini f(R) gravity, which generalize the Einsteins equations of General Relativity, and obtain also the generalized Friedmann equations, which can be used for cosmological tests. As an example, using recent compilations of type Ia Supernovae observations, we show how the f(R) = R − fi/Rn class of gravity theories explain the recent observed acceleration of the universe by placing reasonable constraints on the free parameters fi and n. We also examine the question as to whether Palatini f(R) gravity theories permit space-times in which causality, a fundamental issue in any physical theory [22], is violated. As is well known, in General Relativity there are solutions to the viii field equations that have causal anomalies in the form of closed time-like curves, the renowned Gödel model being the best known example of such a solution. Here we show that every perfect-fluid Gödel-type solution of Palatini f(R) gravity with density and pressure p that satisfy the weak energy condition + p 0 is necessarily isometric to the Gödel geometry, demonstrating, therefore, that these theories present causal anomalies in the form of closed time-like curves. This result extends a theorem on Gödel-type models to the framework of Palatini f(R) gravity theory. We derive an expression for a critical radius rc (beyond which causality is violated) for an arbitrary Palatini f(R) theory. The expression makes apparent that the violation of causality depends on the form of f(R) and on the matter content components. We concretely examine the Gödel-type perfect-fluid solutions in the f(R) = R−fi/Rn class of Palatini gravity theories, and show that for positive matter density and for fi and n in the range permitted by the observations, these theories do not admit the Gödel geometry as a perfect-fluid solution of its field equations. In this sense, f(R) gravity theory remedies the causal pathology in the form of closed timelike curves which is allowed in General Relativity. We also examine the violation of causality of Gödel-type by considering a single scalar field as the matter content. For this source, we show that Palatini f(R) gravity gives rise to a unique Gödeltype solution with no violation of causality. Finally, we show that by combining a perfect fluid plus a scalar field as sources of Gödel-type geometries, we obtain both solutions in the form of closed time-like curves, as well as solutions with no violation of causality

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I thank to my advisor, João Marcos, for the intellectual support and patience that devoted me along graduate years. With his friendship, his ability to see problems of the better point of view and his love in to make Logic, he became a great inspiration for me. I thank to my committee members: Claudia Nalon, Elaine Pimentel and Benjamin Bedregal. These make a rigorous lecture of my work and give me valuable suggestions to make it better. I am grateful to the Post-Graduate Program in Systems and Computation that accepted me as student and provided to me the propitious environment to develop my research. I thank also to the CAPES for a 21 months fellowship. Thanks to my research group, LoLITA (Logic, Language, Information, Theory and Applications). In this group I have the opportunity to make some friends. Someone of them I knew in my early classes, they are: Sanderson, Haniel and Carol Blasio. Others I knew during the course, among them I’d like to cite: Patrick, Claudio, Flaulles and Ronildo. I thank to Severino Linhares and Maria Linhares who gently hosted me at your home in my first months in Natal. This couple jointly with my colleagues of student flat Fernado, Donátila and Aline are my nuclear family in Natal. I thank my fiancée Luclécia for her precious a ective support and to understand my absence at home during my master. I thank also my parents Manoel and Zenilda, my siblings Alexandre, Paulo and Paula.Without their confidence and encouragement I wouldn’t achieve success in this journey. If you want the hits, be prepared for the misses Carl Yastrzemski

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