68 resultados para Discretos
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Pós-graduação em Matematica Aplicada e Computacional - FCT
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Synchronization in nonlinear dynamical systems, especially in chaotic systems, is field of research in several areas of knowledge, such as Mechanical Engineering and Electrical Engineering, Biology, Physics, among others. In simple terms, two systems are synchronized if after a certain time, they have similar behavior or occurring at the same time. The sound and image in a film is an example of this phenomenon in our daily lives. The studies of synchronization include studies of continuous dynamic systems, governed by differential equations or studies of discrete time dynamical systems, also called maps. Maps correspond, in general, discretizations of differential equations and are widely used to model physical systems, mainly due to its ease of computational. It is enough to make iterations from given initial conditions for knowing the trajectories of system. This completion of course work based on the study of the map called ”Zaslavksy Web Map”. The Zaslavksy Web Map is a result of the combination of the movements of a particle in a constant magnetic field and a wave electrostatic propagating perpendicular to the magnetic field. Apart from interest in the particularities of this map, there was objective the deepening of concepts of nonlinear dynamics, as equilibrium points, linear stability, stability non-linear, bifurcation and chaos
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Em ambiente natural, as moscas-varejeiras depositam seus ovos geralmente em grupos de 100 a 300 ovos, freqüentemente na presença de ovos de outras espécies. Estes ovos são depositados em substratos discretos e efêmeros, que constituem unidades pequenas e separadas espacialmente, tais como carcaças, fezes, frutos, fungos e vegetais em decomposição, nas quais ocorrem mudanças sucessivas e rápidas. Em condições naturais, tais substratos apresentam-se saturados de indivíduos, de uma única ou mais espécies de insetos, principalmente em estágio larval, caracterizando uma intensa competição por recursos durante o desenvolvimento pós embrionário. Vários autores tentaram explicar a coexistência de moscas-varejeiras em substratos efêmeros, sugerindo que cada espécie pode ter seu próprio nicho dentro do substrato, uma especialização em diferentes partes do recurso alimentar ou comportamentos distintos de dispersão larval pós alimentar, que podem permitir a coexistência de espécies. No gênero Chrysomya, as similaridades nos nichos ecológicos, como por exemplo, no requerimento alimentar de suas larvas, podem acirrar a competição por recursos, e a espécie C. albiceps pode tornar-se predadora, apresentando comportamento de predação intra-guilda e canibalismo, interferindo na coexistência, no tamanho populacional das espécies presentes e podendo até excluir alguma delas. O nível de competição por espaço e alimento que os imaturos irão enfrentar relaciona-se com o padrão de distribuição espacial destes no substrato, decorrentes da escolha do sítio de oviposição pelas fêmeas adultas. Assim, o comportamento de oviposição é um processo biológico fundamental para as moscas, pois pode determinar a sobrevivência e o tamanho populacional nas sucessivas gerações. Por este motivo, o objetivo deste trabalho ...(Resumo completo, clicar acesso eletrônico abaixo)
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The main objective is to create a software, using C++ language, for reading and exhibiting in a graphic an Electrocardiogram (ECG) wave. The data is recorded as a FM modulated signal and compressed using Adaptive Differential Pulse Code Modulation (ADPCM). The signal have this characteristics because it was acquired using an experimental equipment, this equipment is the result of research made by the professor who supervised this work. FM demodulation techniques in discrete time, discrete filters and digital signal processing are some of the topics that can be found in this essay. Some concepts about the human heart and about ECG waves are also briefly introduced. These concepts are necessary for understanding the final evaluation of the software performance. The development is partly made using MATLAB. Most of the functions that are used on the software are first tested and designed in MATLAB environment. In the end, an evaluation is done comparing the results that are expected with the ones that MATLAB presents and the ones that the developed software presents
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In this work, it is presented a novel method for calculating some intrinsic parameters such as capture mean time, thermic emission mean time, capture probability and noise gain on quantum well infrared photodetectors. Such devices are built by depositing layers of semiconductors of different energy gap, forming quantum wells. The present method uses rate equations to describe the occupation of discrete states of the quantum wells, that together with noise gain equations given in literature, are solved self consistently. The input data of the method is experimental measurement of dark current (current measured with no relevant incident photon) versus applied bias. In order to validate this approach, the values obtained were compared with results from literature
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Pós-graduação em Engenharia Elétrica - FEIS
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We investigate in this work the behaviour of the decay to the fixed points, in particular along the bifurcations, for a family of one-dimensional logistic-like discrete mappings. We start with the logistic map focusing in the transcritical bifurcation. Next we investigate the convergence to the stationary state at the cubic map. At the end we generalise the procedure for a mapping of the logistic-like type. Near the fixed point, the dynamical variable varies slowly. This property allows us to approximate/rewrite the equation of differences, hence natural from discrete mappings, into an ordinary differential equation. We then solve such equation which furnishes the evolution towards the stationary state. Our numerical simulations confirm the theoretical results validating the above mentioned approximation