974 resultados para Interação fluido-estrutura


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O presente trabalho tem por objetivo estudar e apresentar as viabilidades técnica e econômica da interação entre cana e soja/amendoim, nas áreas de rotação de cultura, em usina de açúcar e etanol. Para isso, apresenta um estudo de caso, realizado em uma usina localizada no interior do Estado de São Paulo, que possui área de aproximadamente 4.500 ha destinada anualmente à rotação de cultura (sendo 50% desta área utilizada para o plantio de soja e 50%, para o cultivo de amendoim). A análise da viabilidade técnica do projeto baseia-se em dados fornecidos pelo Sistema de Monitoramento Agrometeorológico (Agritempo), da Embrapa, empregado para o cálculo do risco climático para a cultura a ser plantada na região considerada. Com o emprego desses dados meteorológicos e agrometeorológicos fornecidos pelo Agritempo, é possível que se obtenha 80% de sucesso com as culturas, se realizado o referido plantio nos períodos indicados. Para demonstrar a viabilidade econômica, esta pesquisa recorre ao modelo clássico de Engenharia Econômica, com a observação de índices e taxas, como: Taxa Mínima de Atratividade (TMA), Valor Presente Líquido (VPL), Taxa Interna de Retorno (TIR), Período de Recuperação do Capital Investido (Payback) e Análise de Sensibilidade. Este estudo de caso demonstra que, com a prática da rotação de culturas nas áreas canavieiras, além de ganhos agronômicos, há ganhos econômicos e sociais. Dentre os benefícios sociais identificados, destacam-se: a sustentabilidade do setor rural, por meio da produção de mais alimentos; a geração de mais renda na cadeia produtiva do agronegócio; a melhora para a imagem do setor sucroalcooleiro na sociedade urbana e rural; a maior geração de empregos; a redução da competitividade por terras; o aumento na arrecadação de impostos; dentre outros. No âmbito dos ganhos econômicos, são importantes a diversificação da renda e a redução dos custos de produção da cana-de-açúcar, possibilitados pela rotação de culturas; a promoção de ganhos de escala de produção, em consequência da sinergia com a estrutura já existente na área de cultivo de cana; dentre outros.

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Diversos estudos evidenciam as vantagens da presença de líderes autênticos nas organizações. O presente estudo visa identificar as prioridades, em termos de valores, que impactam na autenticidade de um líder, ou seja, investigar quais as prioridades, em termos de valores, de uma pessoa, que podem influenciar no seu desempenho como líder autêntico. Mais propriamente, quais os Valores – considerando a estrutura de valores propostas por Schwartz (2005) – estão relacionados à expressão das dimensões que compõem as características descritas, na literatura, como sendo o perfil do líder autêntico. Para tanto, foi realizada uma pesquisa quantitativa, com questionário aplicado a 295 indivíduos de organizações com natureza e atuação diversas. Os dados foram analisados a partir de técnicas estatíticas multivariadas, utilizando análise fatorial e regressões lineares múltiplas e hierárquicas. Os resultados apontam que, de todos os valores propostos por Schwartz, apenas a Auto Transcendência relaciona-se positiva e significantemente com a Liderança Autêntica. Não foram identificados quaisquer efeitos de moderação ou interação, na expressão de Liderança, em relação aos pares de variáveis que representam os quadrantes da estrutura de valores. Assim, o estudo aponta para a Auto transcendência, traduzidos nos tipos motivacionais da benevolência e do universalismo, como principal fator preditor da autenticidade de um líder, esta sendo potencializada na medida em que o mesmo amplia suas experiências de coordenação e avança em idade ou tempo de vida.

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A interação sexual no sentido de ação conjunta ou recíproca supõe a existência de parceiros dimorficamente caracterizados a partir da estrutura cromossomial X-X ou X-Y. A diferenciação do sexo, entretanto, não depende apenas da condição cromossomial, podendo mesmo ser invertida quando a ação hormonal for alterada. Os dados disponíveis apontam os andrógenos como um dos principais agentes de diferenciação, afetando o organismo "básico" feminino num sentido masculinizante. A medida que se progride na escala animal, contudo, os aspectos estritamente biológicos perdem em importância e as condições ambientais aos poucos se impõem . Nos primatas superiores, caso não se estabeleçam condições adequadas de aprendizagem, o desenvolvimento sexual não se completa e a cópula se torna inviável. No ser humano, além dessa aprendizagem, fatores socio-culturais respondem pelo comportamento considerado masculino ou feminino que supostamente será exibido por cada parceiro da interação. Também as noções de estética são seriamente determinadas pela tradição cultural, com cada povo tendendo a valorizar os próprios traços raciais como ideal de beleza. Do ponto de vista físico, entretanto, pode-se tentar estabelecer algumas constantes, como as formas arredondadas para a mulher e o porte atl6tico ou capacidades gerais , para o homem. Uma vez estabelecida a atração e encontrado local e momento adequado, a interação sexual tende a uma progressiva intensificação e genitalização, que, nas sociedades de tradição judaico-cristã se reflete numa sequência, mais ou menos previsível, envolvendo carícias gerais, beijos, acariciamento de seios e genitais até a união genito-genital o significado e a forma como cada cultura desenvolve os contatos físicos de intercambio erógeno revelam tão grande variedade que já se apontou essa polimorfismo corno aquisição típica do ser humano. Assim, ao contrário do que faz supor o ideal de abstinência, é na capacidade de buscar e estender o prazer além da s1mples atividade orgânico-sexual que o homem, em sexo, se liberta da limitação animal.

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In this dissertation, the theoretical principles governing the molecular modeling were applied for electronic characterization of oligopeptide α3 and its variants (5Q, 7Q)-α3, as well as in the quantum description of the interaction of the aminoglycoside hygromycin B and the 30S subunit of bacterial ribosome. In the first study, the linear and neutral dipeptides which make up the mentioned oligopeptides were modeled and then optimized for a structure of lower potential energy and appropriate dihedral angles. In this case, three subsequent geometric optimization processes, based on classical Newtonian theory, the semi-empirical and density functional theory (DFT), explore the energy landscape of each dipeptide during the search of ideal minimum energy structures. Finally, great conformers were described about its electrostatic potential, ionization energy (amino acids), and frontier molecular orbitals and hopping term. From the hopping terms described in this study, it was possible in subsequent studies to characterize the charge transport propertie of these peptides models. It envisioned a new biosensor technology capable of diagnosing amyloid diseases, related to an accumulation of misshapen proteins, based on the conductivity displayed by proteins of the patient. In a second step of this dissertation, a study carried out by quantum molecular modeling of the interaction energy of an antibiotic ribosomal aminoglicosídico on your receiver. It is known that the hygromycin B (hygB) is an aminoglycoside antibiotic that affects ribosomal translocation by direct interaction with the small subunit of the bacterial ribosome (30S), specifically with nucleotides in helix 44 of the 16S ribosomal RNA (16S rRNA). Due to strong electrostatic character of this connection, it was proposed an energetic investigation of the binding mechanism of this complex using different values of dielectric constants (ε = 0, 4, 10, 20 and 40), which have been widely used to study the electrostatic properties of biomolecules. For this, increasing radii centered on the hygB centroid were measured from the 30S-hygB crystal structure (1HNZ.pdb), and only the individual interaction energy of each enclosed nucleotide was determined for quantum calculations using molecular fractionation with conjugate caps (MFCC) strategy. It was noticed that the dielectric constants underestimated the energies of individual interactions, allowing the convergence state is achieved quickly. But only for ε = 40, the total binding energy of drug-receptor interaction is stabilized at r = 18A, which provided an appropriate binding pocket because it encompassed the main residues that interact more strongly with the hygB - C1403, C1404, G1405, A1493, G1494, U1495, U1498 and C1496. Thus, the dielectric constant ≈ 40 is ideal for the treatment of systems with many electrical charges. By comparing the individual binding energies of 16S rRNA nucleotides with the experimental tests that determine the minimum inhibitory concentration (MIC) of hygB, it is believed that those residues with high binding values generated bacterial resistance to the drug when mutated. With the same reasoning, since those with low interaction energy do not influence effectively the affinity of the hygB in its binding site, there is no loss of effectiveness if they were replaced.

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Currently, computational methods have been increasingly used to aid in the characterization of molecular biological systems, especially when they relevant to human health. Ibuprofen is a nonsteroidal antiinflammatory or broadband use in the clinic. Once in the bloodstream, most of ibuprofen is linked to human serum albumin, the major protein of blood plasma, decreasing its bioavailability and requiring larger doses to produce its antiinflamatory action. This study aimes to characterize, through the interaction energy, how is the binding of ibuprofen to albumin and to establish what are the main amino acids and molecular interactions involved in the process. For this purpouse, it was conducted an in silico study, by using quantum mechanical calculations based on Density Functional Theory (DFT), with Generalized Gradient approximation (GGA) to describe the effects of exchange and correlation. The interaction energy of each amino acid belonging to the binding site to the ligand was calculated the using the method of molecular fragmentation with conjugated caps (MFCC). Besides energy, we calculated the distances, types of molecular interactions and atomic groups involved. The theoretical models used were satisfactory and show a more accurate description when the dielectric constant ε = 40 was used. The findings corroborate the literature in which the Sudlow site I (I-FA3) is the primary binding site and the site I-FA6 as secondary site. However, it differs in identifying the most important amino acids, which by interaction energy, in order of decreasing energy, are: Arg410, Lys414, Ser 489, Leu453 and Tyr411 to the I-Site FA3 and Leu481, Ser480, Lys351, Val482 and Arg209 to the site I-FA6. The quantification of interaction energy and description of the most important amino acids opens new avenues for studies aiming at manipulating the structure of ibuprofen, in order to decrease its interaction with albumin, and consequently increase its distribution

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Observações com microscopia eletrônica de transmissão em secções ultrafinas de células de caules de feijoeiros (Phaseolus vulgaris L.), inoculados com Curtobacterium flaccumfaciens pv. flaccumfaciens (Cff), mostraram alterações nos vasos de xilema em genótipos de feijoeiros altamente resistentes, como formação de estrutura semelhante a tilose e presença de fibrilas ao redor das células bacterianas. em genótipos suscetíveis, Cff colonizou além de vasos de xilema, células parenquimáticas e metaxilema.

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This work aims at under the cognitive-functional perspective describing, inside the vast domain of the linguistic prefabs, the structure and the functioning of the Idiomatic Verb Phrases (SVIs), produced by speakers of the Portuguese from Brazil, located in Natal (RN). From the functionalist presupposition that the language is used essentially to assist to communicative demands, it is observed that its morphologic-syntactic structure is conditioned to the inherent pragmatic vicissitudes to the verbal interaction of subjects, socially heterogeneous and historically established. It is focalized, in the composition of SVIs, the relationships VT + OD (transitive verb + direct object), characterizing the syntactic-semantic nature of the verb and of the respective verbal complement. Those verb combinations + complement can be interpreted as lexical structures, reflexes of the idiomaticity inherent to conventional constructions already systematized in the users' of the language cultural repertoire. It is sought, still, to glimpse the cognitive and discursive motivations pertinent to that linguistic phenomenon. In the investigative process, are analyzed exclusive data of speech collected in Corpus Discurso & Gramática a lingua falada e escrita na cidade do Natal, organized by Furtado da Cunha (1998). The adopted methodological procedures configure as methods of empiric analysis and use of the intuition, being emphasized the qualitative approach (explanatory) of the data with quantitative support of statistical indicators. It shows, finally, a grating of didactic suggestions on SVIs, for Portuguese's classes, as subsidies to the educational practice in the Medium Teaching and in the course of Letters.

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The effect of confinement on the magnetic structure of vortices of dipolar coupled ferromagnetic nanoelements is an issue of current interest, not only for academic reasons, but also for the potential impact in a number of promising applications. Most applications, such as nano-oscillators for wireless data transmission, benefit from the possibility of tailoring the vortex core magnetic pattern. We report a theoretical study of vortex nucleation in pairs of coaxial iron and Permalloy cylinders, with diameters ranging from 21nm to 150nm, and 12nm and 21nm thicknesses, separated by a non-magnetic layer. 12nm thick iron and Permalloy isolated (single) cylinders do not hold a vortex, and 21nm isolated cylinders hold a vortex. Our results indicate that one may tailor the magnetic structure of the vortices, and the relative chirality, by selecting the thickness of the non-magnetic spacer and the values of the cylinders diameters and thicknesses. Also, the dipolar interaction may induce vortex formation in pairs of 12nm thick nanocylinders and inhibit the formation of vortices in pairs of 21nm thick nanocylinders. These new phases are formed according to the value of the distance between the cylinderes. Furthermore, we show that the preparation route may control relative chirality and polarity of the vortex pair. For instance: by saturating a pair of Fe 81nm diameter, 21nm thickness cylinders, along the crystalline anisotropy direction, a pair of 36nm core diameter vortices, with same chirality and polarity is prepared. By saturating along the perpendicular direction, one prepares a 30nm diameter core vortex pair, with opposite chirality and opposite polarity. We also present a theoretical discussion of the impact of vortices on the thermal hysteresis of a pair of interface biased elliptical iron nanoelements, separated by an ultrathin nonmagnetic insulating layer. We have found that iron nanoelements exchange coupled to a noncompensated NiO substrate, display thermal hysteresis at room temperature, well below the iron Curie temperature. The thermal hysteresis consists in different sequences of magnetic states in the heating and cooling branches of a thermal loop, and originates in the thermal reduction of the interface field, and on the rearrangements of the magnetic structure at high temperatures, 5 produce by the strong dipolar coupling. The width of the thermal hysteresis varies from 500 K to 100 K for lateral dimensions of 125 nm x 65 nm and 145 nm x 65 nm. We focus on the thermal effects on two particular states: the antiparallel state, which has, at low temperatures, the interface biased nanoelement with the magnetization aligned with the interface field and the second nanoelement aligned opposite to the interface field; and in the parallel state, which has both nanoelements with the magnetization aligned with the interface field at low temperatures. We show that the dipolar interaction leads to enhanced thermal stability of the antiparallel state, and reduces the thermal stability of the parallel state. These states are the key phases in the application of pairs of ferromagnetic nanoelements, separated by a thin insulating layer, for tunneling magnetic memory cells. We have found that for a pair of 125nm x 65nm nanoelements, separated by 1.1nm, and low temperature interface field strength of 5.88kOe, the low temperature state (T = 100K) consists of a pair of nearly parallel buckle-states. This low temperature phase is kept with minor changes up to T= 249 K when the magnetization is reduced to 50% of the low temperature value due to nucleation of a vortex centered around the middle of the free surface nanoelement. By further increasing the temperature, there is another small change in the magnetization due to vortex motion. Apart from minor changes in the vortex position, the high temperature vortex state remains stable, in the cooling branch, down to low temperatures. We note that wide loop thermal hysteresis may pose limits on the design of tunneling magnetic memory cells

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The role of carboxymethylcellulose (CMC) in association to calcium carbonate particles (CaCO3) in most water-based drilling fluids is to reduce the fluid loss to the surrounding formation. Another essential function is to provide rheological properties capable of maintaining in suspension the cuttings during drilling operation. Therefore, it is absolutely essential to correlate the polymer chemical structure (degree of substitution, molecular weight and distribution of substituent) with the physical-chemical properties of CaCO3, in order to obtain the better result at lower cost. Another important aspect refers to the clay hydration inhibitive properties of carboxymethylcellulose (CMC) in drilling fluids systems. The clay swelling promotes an undesirable damage that reduces the formation permeability and causes serious problems during the drilling operation. In this context, this thesis consists of two main parts. The first part refers to understanding of interactions CMC-CaCO3, as well as the corresponding effects on the fluid properties. The second part is related to understanding of mechanisms by which CMC adsorption occurs onto the clay surface, where, certainly, polymer chemical structure, ionic strength, molecular weight and its solvency in the medium are responsible to affect intrinsically the clay layers stabilization. Three samples of carboximetilcellulose with different molecular weight and degree of substitution (CMC A (9 x 104 gmol DS 0.7), CMC B (2.5 x 105 gmol DS 0.7) e CMC C (2.5 x 105 gmol DS 1.2)) and three samples of calcite with different average particle diameter and particle size distribution were used. The increase of CMC degree of substitution contributed to increase of polymer charge density and therefore, reduced its stability in brine, promoting the aggregation with the increase of filtrate volume. On the other hand, the increase of molecular weight promoted an increase of rheological properties with reduction of filtrate volume. Both effects are directly associated to hydrodynamic volume of polymer molecule in the medium. The granulometry of CaCO3 particles influenced not only the rheological properties, due to adsorption of polymers, but also the filtration properties. It was observed that the lower filtrate volume was obtained by using a CaCO3 sample of a low average size particle with wide dispersion in size. With regards to inhibition of clay swelling, the CMC performance was compared to other products often used (sodium chloride (NaCl), potassium chloride (KCl) and quaternary amine-based commercial inhibitor). The low molecular weight CMC (9 x 104 g/mol) showed slightly lower swelling degree compared to the high molecular weight (2.5 x 105 g/mol) along to 180 minutes. In parallel, it can be visualized by Scanning Electron Microscopy (SEM) that the high molecular weight CMC (2.5 x 105 g/mol e DS 0.7) promoted a reduction in pores formation and size of clay compared to low molecular weight CMC (9.0 x 104 g/mol e DS 0.7), after 1000 minutes in aqueous medium. This behavior was attributed to dynamic of interactions between clay and the hydrodynamic volume of CMC along the time, which is result of strong contribution of electrostatic interactions and hydrogen bounds between carboxylate groups and hydroxyls located along the polymer backbone and ionic and polar groups of clay surface. CMC adsorbs on clay surface promoting the skin formation , which is responsible to minimize the migration of water to porous medium. With the increase of degree of substitution, it was observed an increase of pores onto clay, suggesting that the higher charge density on polymer is responsible to decrease its flexibility and adsorption onto clay surface. The joint evaluation of these results indicate that high molecular weight is responsible to better results on control of rheological, filtration and clay swelling properties, however, the contrary effect is observed with the increase of degree of substitution. On its turn, the calcite presents better results of rheological and filtration properties with the decrease of average viii particle diameter and increase of particle size distribution. According to all properties evaluated, it has been obvious the interaction of CMC with the minerals (CaCO3 and clay) in the aqueous medium

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Este artigo apresenta resultados de uma pesquisa sobre a formação de professores da universidade que atuam em licenciaturas de Física, Biologia e Matemática, procurando compreendê-la a partir de sua participação em um projeto de formação continuada de professores da rede pública de ensino. O referencial teórico, apoiado em Pierre Bourdieu e Paulo Freire, possibilitou a constituição de instrumentos para caracterizar o processo de formação como construção coletiva de uma estrutura formativa. Para isso, foi necessário considerar tanto a interação de professores da universidade entre si como aquela entre eles e os professores da escola. Os resultados revelaram que o envolvimento dos professores da universidade no projeto possibilitou-lhes a produção de conhecimento em um domínio para o qual normalmente não são chamados a fazê-lo, na prática da vida universitária, a saber: a docência.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Pós-graduação em Biofísica Molecular - IBILCE

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Pós-graduação em Biofísica Molecular - IBILCE

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Pós-graduação em Biofísica Molecular - IBILCE