969 resultados para Energia livre superficial
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Neste trabalho desenvolvemos um modelo efetivo para a descrição da matéria nuclear, que incorpora os resultados obtidos, para a descrição de um núcleon, pelo modelo de sacola difusa. O sistema nuclear será descrito via uma função de energia interna, que compreende um termo livre e outro que leva em conta a interação entre os núcleons. A parte livre, por se tratar de um sistema de férmions, corresponderá à energia de um gásde Fermi livre. Além disso, para evitar a superposição de dois ou mais núcleons, introduzimos um volume de exclusão a la Van der Waals. Na parte integrante, a troca de píons entre os núcleons será levada em conta via um potêncial efetivo. A função energia interna dependerá da densidade da matéria nuclear e também de um parâmetro que determinará o volume esperado de cada núcleon na matéria nuclear. O valor deste parâmetro será um pouco diferente do valor encontrado para um núcleons isolado, devido à interação entre eles. Obtém-se então resultados para a energia de ligação por núcleon para a matéria nuclear simétrica e para a matéria de nêutrons, bem como para a equação de estado da matéria de nêutrons.
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Apresentamos aqui o modelo esférico quântico de vidro de spin usando a aproximação de recozimento. São calculadas a energia livre, bem como a temperatura crítica em função do momentum de inércia e a entropia. São consideradas interações aleatórias de longo alcance (campo médio) com distribuição normal de média zero, e a energia cinética de cada spin. O cálculo é feito utilizando o formalismo funcional de Feynman de integrais de caminhos. O limite clássico é apresentado e coincide com o limite conhecido de teorias anteriores.
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Seguindo o trabalho de S. Gudder, fazemos uma construção de cadeias de Markov quânticas a partir de matrizes complexas, unitárias, estocásticas e analisamos o conceito de interferência nesse contexto, dando atenção para uma cadeia que chamamos de moeda quântica. Estamos interessados na entropia de cadeias de Markov reais, no princípio variacional para energia livre associado e em uma possível construção análoga no caso complexo. Este trabalho visa também dar uma introdução matematicamente rigorosa de certos aspectos de mecânica quântica
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O presente trabalho relata a parametrização do modelo de contínuo IEF-PCM para o estudo da solvatação de ânions monovalentes em acetonitrila e N,N-dimetilformamida. Nós propomos duas metodologias de parametrização do modelo de contínuo polarizável para este estudo teórico. A primeira proposta é baseada unicamente no cálculo do termo eletrostático da energia livre e na equiparação deste termo com a energia livre de solvatação experimental. Na segunda proposta de metodologia, a parametrização do modelo de contínuo polarizável foi realizada com o auxílio das simulações de dinâmica molecular e dentro desta segunda proposta nós calculamos todos os termos que contribuem para a energia livre de solvatação, a energia de cavitação. a energia eletrostática e a energia de van der Waals. Com a aplicação da primeira metodologia, é obtido um erro médio absoluto de 2,1 kcal/mol nas energias de solvatação dos ânions em acetonitrila enquanto que o erro médio absoluto calculado para energias de solvatação dos ânions em N,N-dimetilformamida é 2,8 kcal/mol. A aplicação da segunda metodologia resulta num erro médio absoluto de 1,4 kcal/mol nas energias de solvatação dos ânions em acetonitrila e um erro médio absoluto de 1,2 kcal/mol nas energias de solvatação calculadas para os ânions em N,N-dimetilformamida. Estes resultados indicam que o modelo de contínuo polarizável IEF-PCM é adequado para o estudo dos efeitos termodinâmicos nas soluções de ânions nos solventes acetonitrila e N,N-dimetilformamida.
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This thesis aimed to assess the increase in solubility of simvastatin (SINV) with solid dispersions using techniques such as kneading (MA), co-solvent evaporation (ES), melting carrier (FC) and spray dryer (SD). Soluplus (SOL), PEG 6000 (PEG), PVP K-30 (PVP) e sodium lauryl sulphate (LSS) were used as carriers. The solid dispersions containing PEG [PEG-2(SD)], Soluplus [SOL-2(MA)] and sodium lauryl sulphate [LSS-2(ES)] were presented with a greater increase in solubility (5.02, 5.60 and 5.43 times respectively); analyses by ANOVA between the three groups did not present significant difference (p<0.05). In the phase solubility study, the calculation of the Gibbs free energy (ΔG) revealed that the spontaneity of solubilisation of SINV occurred in the order SOL>PEG >PVP 75%>LSS, always 80%. The phase diagrams of PEG and LSS presented solubilization stoichiometry of type 1:1 (type AL). The diagrams with PVP and SOL tend to 1:2 stoichiometry (type AL + AP). The stability coefficients (Ks) of the phase diagrams revealed that the most stable reactions occurred with LSS and PVP. The solid dispersions were characterized by Fourier transform infrared (FTIR), differential scanning calorimetry (DSC), scanning electron microscopy (SEM), particle size distribution (PSD), near-infrared spectroscopy imaging (NIR-CI) and X-ray diffraction of the powder using the Topas software (PDRX-TOPAS). The solid dispersion PEG-2(SD) presented the greatest homogeneity and the lowest degree of crystallinity (18.2%). The accelerated stability study revealed that the solid dispersions are less stable than SINV, with PEG-2(SD) being the least stable, confirmed by FTIR and DSC. The analyses by PDRX-TOPAS revealed the amorphous character of the dispersions and the mechanism of increasing solubility
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Discussions about pollution caused by vehicles emission are old and have been developed along the years. The search for cleaner technologies and frequent weather alterations have been inducing industries and government organizations to impose limits much more rigorous to the contaminant content in fuels, which have an direct impact in atmospheric emissions. Nowadays, the quality of fuels, in relation to the sulfur content, is carried out through the process of hydrodesulfurization. Adsorption processes also represent an interesting alternative route to the removal of sulfur content. Both processes are simpler and operate to atmospheric temperatures and pressures. This work studies the synthesis and characterization of aluminophosphate impregnate with zinc, molybdenum or both, and its application in the sulfur removal from the gasoline through the adsorption process, using a pattern gasoline containing isooctane and thiophene. The adsorbents were characterized by x-ray diffraction, differential thermal analysis (DTG), x-ray fluorescence and scanning electron microscopy (SEM). The specific area, volume and pore diameter were determined by BET (Brunauer- Emmet-Teller) and the t-plot method. The sulfur was quantified by elementary analysis using ANTEK 9000 NS. The adsorption process was evaluated as function of the temperature variation and initial sulfur content through the adsorption isotherm and its thermodynamic parameters. The parameters of entropy (ΔS), enthalpy variation (ΔH) and free Gibbs energy (ΔG) were calculated through the graph ln(Kd) versus 1/T. Langmuir, Freundlich and Langmuir-Freundlich models were adjusted to the experimental data, and the last one had presented better results. The thermodynamic tests were accomplished in different temperatures, such as 30, 40 and 50ºC, where it was concluded the adsorption process is spontaneous and exothermic. The kinetic of adsorption was studied by 24 h and it showed that the capability adsorption to the adsorbents studied respect the following order: MoZnPO > MoPO > ZnPO > AlPO. The maximum adsorption capacity was 4.91 mg/g for MoZnPO with an adsorption efficiency of 49%.
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In this work, we investigated the magnetic properties of a monocrystalline Fe thin film and of Fe(80 Å)/Cr(t)/Fe(80 Å) tri-layers, with the nonmagnetic metallic Cr spacer layer thickness varying between 9 Å < t < 40 Å. The samples were deposited by the DC Sputtering on Magnesium Oxide (MgO) substrates, with (100) crystal orientation. For this investigation, experimental magneto-optical Kerr effect (MOKE) magnetometry and ferromagnetic resonance (FMR) techniques were employeed. In this case, these techniques allowed us to study the static and dynamical magnetization properties of our tri-layers. The experimental results were interpreted based on the phenomenological model that takes into account the relevant energy terms to the magnetic free energy to describe the system behavior. In the case of the monocrystalline Fe film, we performed an analytical discussion on the magnetization curves and developed a numerical simulation based on the Stoner-Wohlfarth model, that enables the numerical adjustment of the experimental magnetization curves and obtainment of the anisotropy field values. On the other hand, for the tri-layers, we analyzed the existence of bilinear and biquadratic couplings between the magnetizations of adjacent ferromagnetic layers from measurements of magnetization curves. With the FMR fields and line width angular dependencies, information on the anisotropy in three layers was obtained and the effects of different magnetic relaxation mechanisms were evidenced. It was also possible to observe the dependence of the epitaxy of the multilayers with growth and sputtering parameters. Additionally it was developed the technique of AC magnetic susceptibility in order to obtain further information during the investigation of magnetic thin films
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The research behind this master dissertation started with the installation of a DC sputtering system, from its first stage, the adaptation of a refrigerating system, passing by the introduction of a heating system for the chamber using a thermal belt, until the deposition of a series of Fe/MgO(100) single crystal nanometric film samples. The deposition rates of some materials such as Fe, Py and Cu were investigated through an Atomic Force Microscope (AFM). For the single crystal samples, five of them have the same growth parameters and a thickness of 250Å, except for the temperature, which varies from fifty degrees from one to another, from 100ºC to 300ºC. Three other samples also have the same deposition parameters and a temperature of 300ºC, but with thickness of 62,5Å, 150Å, and 250Å. Magneto-optical Kerr Effect (MOKE) of the magnetic curves measurements and Ferromagnetic Resonance (FMR) were made to in order to study the influence of the temperature and thickness on the sample s magnetic properties. In the present dissertation we discuss such techniques, and the experimental results are interpreted using phenomenological models, by simulation, and discussed from a physical point of view, taking into account the system s free magnetic energy terms. The results show the growth of the cubic anisotropy field (Hac) as the sample s deposition temperature increases, presenting an asymptotic behavior, similar to the characteristic charging curve of a capacitor in a RC circuit. A similar behavior was also observed for the Hac due to the increase in the samples thicknesses. The 250˚A sample, growth at 300°C, presented a Hac field close to the Fe bulk value
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Textile activity results in effluents with a variety of dyes. Among the several processes for dye-uptaking from these wastewaters, sorption is one of the most effective methods, chitosan being a very promising alternative for this end. The sorption of Methyl Orange by chitosan crosslinked particles was approached using equilibrium and kinetic analyses at different pH s. Besides the standard pseudo-order analysis normally effectuated (i.e. pseudo-first-order and pseudo-second-order), a novel approach involving a pseudo-nth-order kinetics was used, nbeing determined via non-linear regression, using the Levenberg-Marquardt method. Zeta potential measurements indicated that electrostatic interactions were important for the sorption process. Regarding equilibrium experiments, data were well fitted to a hybrid Langmuir-Freundlich isotherm, and estimated Gibbs free energy of adsorption as a function of mass of dye per area of chitosan showed that the process of adsorption becomes more homogeneous as the pH of the continuous phase decreased. Considering the kinetics of sorption, although a pseudo-nth-order description yielded good fits, a kinetic equation involving diffusion adsorption phenomena was found to be more consistent in terms of a physicochemical description of the sorption process
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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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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)