1000 resultados para Leilões Multi- Atributos


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Presentation at Open Repositories 2014, Helsinki, Finland, June 9-13, 2014

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Presentation at Open Repositories 2014, Helsinki, Finland, June 9-13, 2014

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Sistemas de polinização especializados estão ligados a características que incentivam as visitas por polinizadores e desestimulam visitas por outros animais. O mecanismo de polinização de uma espécie de Marantaceae foi estudado com ênfase nessa questão. Calathea cylindrica é uma erva com flores disponíveis o ano todo. As flores são peculiares pela fusão e modificação dos elementos, assimetria, apresentação secundária de pólen, néctar pouco acessível e tubo longo, estreito e fechado até a visita do polinizador. A polinização consiste em um mecanismo explosivo, sendo que uma vez disparado, as estruturas florais não retornam à posição inicial. Assim, há uma única possibilidade para transferência de pólen. Os polinizadores são fêmeas de abelhas Euglossini (Apidae) e no meio da manhã todas as flores já haviam sido visitadas. O acesso ao néctar em flores intactas requer a realização de movimentos específicos e com força apropriada, o que exclui outros insetos. A quantidade de néctar produzido em flores ensacadas foi em torno de 13 µL com 32% de concentração de açúcares. O néctar continua sendo secretado em quantidades pequenas depois do disparo do mecanismo. A floração contínua, a quantidade alta de néctar produzido e a continuidade de secreção após a polinização parecem promover maior fidelidade dos polinizadores. A complexidade estrutural das flores, a secreção que banha externamente a câmara nectarífera e o tubo estreito com pelos internos dificultam o acesso ao néctar e parecem funcionar como barreiras para outros visitantes. Em conjunto, esses fatores parecem ser os determinantes do alto grau de especialização do sistema.

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Os atributos florais, a ornitofilia e o sucesso reprodutivo de Palicourea longepedunculata Gardner foram estudados em fragmento de Floresta Atlântica do sudeste do Brasil. Essa espécie é um arbusto distílico que ocorre em sub-bosque úmido de florestas. Em uma área de sete hectares, os indivíduos dos morfos brevistilo e longistilo foram encontrados em uma taxa muito próxima da esperada, 1:1. O período de floração estendeu-se de março (final da estação chuvosa) a setembro, com um pico em maio/junho (estação seca). Os atributos florais dos morfos foram similares, isto é, a floração dos morfos florais foi sincronizada e os números de inflorescências por planta, de flores por inflorescência, de flores abertas por inflorescência e por planta dos morfos foram semelhantes. Os grãos de pólen dos morfos apresentaram tamanho e viabilidade similares. Palicourea longepedunculata é autoincompatível e polinizada principalmente por Phaethornis ruber (Aves, Trochilidae), que realizou 62,07% das ondas de forrageamento. Os morfos apresentaram sucessos reprodutivos similares: os números de frutos por inflorescência foram, em média, 85,7 (longistilo) e 107,1 (brevistilo) e não houve diferença significativa na produção de sementes (uma ou duas) por fruto entre os morfos. Os frutos foram similares em altura, largura e peso.

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The aim of this thesis was to create a process for all multi-site ramp-up (MSRU) projects in the case company in order to have simultaneous ramp-ups early in the market. The research was done through case study in one company and semi-structured interviews. There are already processes, which are now in use in MSRU-cases. Interviews of 20 ramp-up specialists revealed topics to be improved. Those were project team set up, roles and responsibilities and recommended project organization, communication, product change management practices, competence and know how transfer practices and support model. More R&D support and involvement is needed in MSRU-projects. DCM’s role is very important in the MSRU-projects among PMT-team; he should be the business owner of the project. Recommendation is that product programs could take care of the product and repair training of new products in volume factories. R&D’s participation in competence transfers is essential important in MSRU-projects. Communication in projects could be shared through special intranet commune. Blogging and tweeting could be considered in the communication plan. If hundreds of change notes are open in ramp-up phase, it should be considered not to approve the product into volume ramp-up. PMTs’ supports are also important and MSRU-projects should be planned, budgeted and executed together. Finally a new MSRU-process is presented in this thesis to be used in all MSRU-projects.

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This thesis reports investigations on applying the Service Oriented Architecture (SOA) approach in the engineering of multi-platform and multi-devices user interfaces. This study has three goals: (1) analyze the present frameworks for developing multi-platform and multi-devices applications, (2) extend the principles of SOA for implementing a multi-platform and multi-devices architectural framework (SOA-MDUI), (3) applying and validating the proposed framework in the context of a specific application. One of the problems addressed in this ongoing research is the large amount of combinations for possible implementations of applications on different types of devices. Usually it is necessary to take into account the operating system (OS), user interface (UI) including the appearance, programming language (PL) and architectural style (AS). Our proposed approach extended the principles of SOA using patterns-oriented design and model-driven engineering approaches. Synthesizing the present work done in these domains, this research built and tested an engineering framework linking Model-driven Architecture (MDA) and SOA approaches to developing of UI. This study advances general understanding of engineering, deploying and managing multi-platform and multi-devices user interfaces as a service.

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Genes encoding lipoproteins LipL32, LipL41 and the outer-membrane protein OmpL1 of leptospira were recombined and cloned into a pVAX1 plasmid. BALB/c mice were immunized with LipL32 and recombined LipL32-41-OmpL1 using DNA-DNA, DNA-protein and protein-protein strategies, respectively. Prime immunization was on day 1, boost immunizations were on day 11 and day 21. Sera were collected from each mouse on day 35 for antibody, cytokine detection and microscopic agglutination test while spleen cells were collected for splenocyte proliferation assay. All experimental groups (N = 10 mice per group) showed statistically significant increases in antigen-specific antibodies, in cytokines IL-4 and IL-10, as well as in the microscopic agglutination test and splenocyte proliferation compared with the pVAX1 control group. The groups receiving the recombined LipL32-41-OmpL1 vaccine induced anti-LipL41 and anti-OmpL1 antibodies and yielded better splenocyte proliferation values than the groups receiving LipL32. DNA prime and protein boost immune strategies stimulated more antibodies than a DNA-DNA immune strategy and yielded greater cytokine and splenocyte proliferation than a protein-protein immune strategy. It is clear from these results that recombination of protective antigen genes lipL32, lipL41, and ompL1 and a DNA-protein immune strategy resulted in better immune responses against leptospira than single-component, LipL32, or single DNA or protein immunization.

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In this thesis the basic structure and operational principals of single- and multi-junction solar cells are considered and discussed. Main properties and characteristics of solar cells are briefly described. Modified equipment for measuring the quantum efficiency for multi-junction solar cell is presented. Results of experimental research single- and multi-junction solar cells are described.

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Crystal properties, product quality and particle size are determined by the operating conditions in the crystallization process. Thus, in order to obtain desired end-products, the crystallization process should be effectively controlled based on reliable kinetic information, which can be provided by powerful analytical tools such as Raman spectrometry and thermal analysis. The present research work studied various crystallization processes such as reactive crystallization, precipitation with anti-solvent and evaporation crystallization. The goal of the work was to understand more comprehensively the fundamentals, phenomena and utilizations of crystallization, and establish proper methods to control particle size distribution, especially for three phase gas-liquid-solid crystallization systems. As a part of the solid-liquid equilibrium studies in this work, prediction of KCl solubility in a MgCl2-KCl-H2O system was studied theoretically. Additionally, a solubility prediction model by Pitzer thermodynamic model was investigated based on solubility measurements of potassium dihydrogen phosphate with the presence of non-electronic organic substances in aqueous solutions. The prediction model helps to extend literature data and offers an easy and economical way to choose solvent for anti-solvent precipitation. Using experimental and modern analytical methods, precipitation kinetics and mass transfer in reactive crystallization of magnesium carbonate hydrates with magnesium hydroxide slurry and CO2 gas were systematically investigated. The obtained results gave deeper insight into gas-liquid-solid interactions and the mechanisms of this heterogeneous crystallization process. The research approach developed can provide theoretical guidance and act as a useful reference to promote development of gas-liquid reactive crystallization. Gas-liquid mass transfer of absorption in the presence of solid particles in a stirred tank was investigated in order to gain understanding of how different-sized particles interact with gas bubbles. Based on obtained volumetric mass transfer coefficient values, it was found that the influence of the presence of small particles on gas-liquid mass transfer cannot be ignored since there are interactions between bubbles and particles. Raman spectrometry was successfully applied for liquid and solids analysis in semi-batch anti-solvent precipitation and evaporation crystallization. Real-time information such as supersaturation, formation of precipitates and identification of crystal polymorphs could be obtained by Raman spectrometry. The solubility prediction models, monitoring methods for precipitation and empirical model for absorption developed in this study together with the methodologies used gives valuable information for aspects of industrial crystallization. Furthermore, Raman analysis was seen to be a potential controlling method for various crystallization processes.

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Muchos trabajos demuestran que los productos vegetales no solamente son fuentes de energía y nutrientes sino también fuentes de compuestos conocidos como fitoquímicos, que juegan un importante papel en la prevención de enfermedades como el cáncer, afecciones cardiovasculares y neurodegenerativas. Por otro lado, el aumento en la producción de manzana, determina también un aumento de la producción destinada al procesamiento industrial. En este sentido el conocer el contenido de de ciertas sustancias como polifenoles, antocianinas permiten conocer su potencial de uso industrial, como por ejemplo para la elaboración de jugos. En base a esto los objetivos del presente trabajo fueron realizar una caracterización físico-química de tres variedades de manzana; una de ellas de cultivo tradicional y muy extendido en Brasil y las otras dos mutaciones de esta última, de reciente explotación comercial. Fueron medidos al momento de cosecha la firmeza de la pulpa, acidez titulable (AT), los sólidos solubles totales (SST), el índice de yodo-almidón, los parámetros CIE "L*", "a*" y "b*" del color, polifenoles, antocianinas y azúcares reductores totales y vitamina C. Según los resultados, la variedad Fuji Kiku presentó una mayor firmeza de pulpa, AT, SST y vitamina C. En relación al color, la variedad Fuji Suprema mostró una coloración roja más intensa y mayor contenido de antocianinas. No fueron encontradas diferencias en los polifenoles y azúcares reductores totales.

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O suco de uva contém compostos fenólicos em quantidades importantes e, portanto, seu consumo é desejável como aporte de substâncias antioxidantes naturais. Os objetivos do estudo foram investigar os atributos sensoriais e avaliar a aceitação de sucos de uva comerciais. Foram analisados três tipos de suco de uva comercializados no Brasil: suco integral, suco concentrado e néctar. Utilizaram-se a Análise Descritiva Quantitativa modificada e o Teste de Aceitação com escala hedônica estruturada de nove pontos, incluindo questões sobre consumo e compra. Os resultados apontam que o suco integral apresentou cor e gosto amargo mais intensos; o suco concentrado (reconstituído) apresentou baixa intensidade em todos os atributos; e o néctar de uva apresentou maior intensidade de gosto doce e sabor característico de uva. O teste de aceitação mostrou que o néctar de uva e o suco integral foram os mais aceitos. A maioria dos consumidores relatou consumir quatro ou mais copos suco de uva por mês. O suco integral recebeu maior intenção de compra e o néctar foi a bebida mais consumida. Concluiu-se que o consumidor aprecia o suco integral da uva, com equilibrada intensidade nos atributos sensoriais investigados, todavia, consume com maior frequência o néctar, bebida à qual são adicionadas água e sacarose.

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This thesis addresses the coolability of porous debris beds in the context of severe accident management of nuclear power reactors. In a hypothetical severe accident at a Nordic-type boiling water reactor, the lower drywell of the containment is flooded, for the purpose of cooling the core melt discharged from the reactor pressure vessel in a water pool. The melt is fragmented and solidified in the pool, ultimately forming a porous debris bed that generates decay heat. The properties of the bed determine the limiting value for the heat flux that can be removed from the debris to the surrounding water without the risk of re-melting. The coolability of porous debris beds has been investigated experimentally by measuring the dryout power in electrically heated test beds that have different geometries. The geometries represent the debris bed shapes that may form in an accident scenario. The focus is especially on heap-like, realistic geometries which facilitate the multi-dimensional infiltration (flooding) of coolant into the bed. Spherical and irregular particles have been used to simulate the debris. The experiments have been modeled using 2D and 3D simulation codes applicable to fluid flow and heat transfer in porous media. Based on the experimental and simulation results, an interpretation of the dryout behavior in complex debris bed geometries is presented, and the validity of the codes and models for dryout predictions is evaluated. According to the experimental and simulation results, the coolability of the debris bed depends on both the flooding mode and the height of the bed. In the experiments, it was found that multi-dimensional flooding increases the dryout heat flux and coolability in a heap-shaped debris bed by 47–58% compared to the dryout heat flux of a classical, top-flooded bed of the same height. However, heap-like beds are higher than flat, top-flooded beds, which results in the formation of larger steam flux at the top of the bed. This counteracts the effect of the multi-dimensional flooding. Based on the measured dryout heat fluxes, the maximum height of a heap-like bed can only be about 1.5 times the height of a top-flooded, cylindrical bed in order to preserve the direct benefit from the multi-dimensional flooding. In addition, studies were conducted to evaluate the hydrodynamically representative effective particle diameter, which is applied in simulation models to describe debris beds that consist of irregular particles with considerable size variation. The results suggest that the effective diameter is small, closest to the mean diameter based on the number or length of particles.