998 resultados para Evolução orbital
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This work intends to describe the historical evolution of the balance based on its technical improvement. This instrument has always been used for commercial and industrial purposes, but its value in research and chemistry was only recognized much later. The classical balance was the two-pan model for about 40 centuries, but when its importance in chemistry was established, particularly beginning at the end of the XVIIIth century, many improvements were made in order to increase sensitivity and shorten the weighing procedure. The balance design greatly changed along the XXth century: the classical two-pan models were replaced by one-pan balances that were replaced by electronic instruments.
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Chemical industry underwent a significant upturn in the past few years. In Brazil, the position of this industry has been continuously strengthened as the second largest industrial sector. Current circumstances are discussed, especially the need for increased innovation, the impacts of nanotechnology, biotechnology and information technologies. Some misconceptions on the Brazilian chemical industry are criticized and recent improvements are described, including those related to environmental protection, to conclude that its prospects are very good, considering both the availability of basic raw materials (oil, natural gas, agribusiness products and minerals), the growing demand and increased competitiveness.
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Periodically, during petroleum shortages, vegetable oils and their derivatives have been proposed as alternatives to petroleum diesel fuel. Different approaches have been proposed, including the use of pure vegetable oils (or blends) or their derivatives. Indeed, the use of fatty-acid methyl or ethyl esters (usually known as "biodiesel") produced by alcoholysis of triacylglycerides or esterification of fatty acids was initially proposed in Belgium 70 years ago, when the first world patent was deposited. Recently, foreign dependence on diesel fuel and the petroleum crisis have increased the discussion in Brazil on starting to use alternatives to diesel fuel, being biodiesel the alternative of choice for a large petroleum diesel substitution program.
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In this paper the evolution of the concept of aromaticity is discussed. It considers not only historical aspects of the aromaticity concept but also the different criteria (theoretical and experimental) that have appeared to explain the properties of the aromatic compounds. The topics range from the isolation of benzene by Faraday (1825) until the modern criteria based on geometries, magnetic properties, resonance energy (RE), aromatic stabilization energy (ASE), topological analyses, and others. A chronological separation of issues concerning aromaticity was made, splitting the definitions before and after the appearance of the quantum chemistry. This work reviews the concept of aromaticity.
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The fact that biologically relevant molecules exist only as one of the two enantiomers is a fascinating example of complete symmetry breaking of chirality and has long intrigued our curiosity. The origin of this selective chirality has remained a fundamental enigma with regard to the origin of life since the time of Pasteur, 160 years ago. The symmetry breaking processes, which include autocatalytic crystallization, asymmetric autocatalysis, spontaneous crystallization, adsorption and polymerization of amino acids on mineral surfaces, provide new insights into the origin of biomolecular homochirality.
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Metalloids have characteristics between metals and non-metals which give them, in some cases, specific properties. At least two of this chemical elements, boron and silicon, are essential to a significant number of living organisms and since some years ago it has been observed that the same metalloids may be involved in the synthesis and stabilization of some molecules relevant to the origin of life.
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A simple, four-step method for better introducing undergraduate students to the fundamentals of molecular orbital (MO) theory of the polyatomic molecules H2O, NH3, BH3 and SiH4 using group theory is reported. These molecules serve to illustrate the concept of ligand group orbitals (LGOs) and subsequent construction of MO energy diagrams on the basis of molecular symmetry requirements.
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The topic "Green Chemistry" has gained great importance over recent years, being quoted in an increasing number of publications. This fact shows how concern over developing "greener" processes has played a prominent role in the scientific community. In this context, the scope of this work encompasses an analysis of the evolution of the theme since its conception to the present. This analysis elucidates how bibliographic output on "Green Chemistry" is distributed worldwide. Moreover, the main journals on the subject were listed and ranked, according to impact factor.
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Teaching classes and events regarding the molecular aspects of drug-receptor interactions is not an easy task. The ligand stereochemistry and the spatial arrangement of the macromolecular targets highly increase the complexity of the process. In this context, the use of alternative and more playful approaches could allow students to gain a more thorough understanding of this important topic in medicinal chemistry. Herein, we describe a practical teaching approach that uses computational strategies as a tool for drug-receptor interaction studies performed for angiotencsin converting enzyme inhibitors (ACEi). Firstly, the students learn how to find the crystallographic structure (enzyme-ligand complex). Then, they proceed to the treatment of crude crystallographic data. Thereafter, they learn how to analyze the positioning of the drug on the active site of the enzyme, looking for regions related to the molecular recognition. At the end of the study, students can summarize the molecular requirements for the interaction and the structure-activity relationships of the studied drugs.
Avaliação da evolução da empatia em alunos do quarto ano da graduação em medicina da Unifesp em 2012
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OBJETIVO: O estudo consiste em reavaliar, em 2012, a empatia em alunos do quarto ano de Medicina da Unifesp, que foram avaliados em 2009 enquanto cursavam o primeiro ano, e comparar os resultados obtidos. MÉTODO: Um instrumento validado, chamado Inventário de Empatia5, foi usado para medir a empatia entre 80 alunos do quarto ano de graduação da Escola Paulista de Medicina da Unifesp. O inventário tem 40 perguntas em escala Likert, que avalia quatro fatores que compõem a habilidade de empatia: Tomada de Perspectiva, Flexibilidade Interpessoal, Altruísmo, Sensibilidade Afetiva. RESULTADOS: A empatia dos alunos da graduação em Medicina da Unifesp não apresentou variação estatisticamente significativa quando comparada em 2009 e 2012. CONCLUSÃO: O maior contato que os alunos mantêm com os pacientes desde o início da graduação, aliado à grade curricular repleta de matérias voltadas para a área de Humanas, possivelmente explica o resultado obtido. Os alunos da instituição são capazes de desenvolver a técnica, dando-lhe um caráter mais humanista e aprendendo desde cedo a tratar doentes, e não doenças.
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Since the introduction of automatic orbital welding in pipeline application in 1961, significant improvements have been obtained in orbital pipe welding systems. Requirement of more productive welding systems for pipeline application forces manufacturers to innovate new advanced systems and welding processes for orbital welding method. Various methods have been used to make welding process adaptive, such as visual sensing, passive visual sensing, real-time intelligent control, scan welding technique, multi laser vision sensor, thermal scanning, adaptive image processing, neural network model, machine vision, and optical sensing. Numerous studies are reviewed and discussed in this Master’s thesis and based on a wide range of experiments which already have been accomplished by different researches the vision sensor are reported to be the best choice for adaptive orbital pipe welding system. Also, in this study the most welding processes as well as the most pipe variations welded by orbital welding systems mainly for oil and gas pipeline applications are explained. The welding results show that Gas Metal Arc Welding (GMAW) and its variants like Surface Tension Transfer (STT) and modified short circuit are the most preferred processes in the welding of root pass and can be replaced to the Gas Tungsten Arc Welding (GTAW) in many applications. Furthermore, dual-tandem gas metal arc welding technique is currently considered the most efficient method in the welding of fill pass. Orbital GTAW process mostly is applied for applications ranging from single run welding of thin walled stainless tubes to multi run welding of thick walled pipes. Flux cored arc welding process is faster process with higher deposition rate and recently this process is getting more popular in pipe welding applications. Also, combination of gas metal arc welding and Nd:YAG laser has shown acceptable results in girth welding of land pipelines for oil and gas industry. This Master’s thesis can be implemented as a guideline in welding of pipes and tubes to achieve higher quality and efficiency. Also, this research can be used as a base material for future investigations to supplement present finding.
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O plano de manejo é um documento técnico mediante o qual se estabelece o zoneamento e as normas que devem presidir o uso da área de uma unidade de conservação e o manejo dos recursos naturais, inclusive a implantação das estruturas físicas necessárias à gestão. Eles foram legalmente instituídos no Brasil em 1979 com o objetivo de adequar e orientar o manejo ecológico dos parques nacionais, até então em sua maioria criados apenas no papel, apontando a necessidade de realizar o zoneamento como base do ordenamento e gestão do território protegido. Contudo, o processo de elaboração e implementação desse documento foi extremamente variado e sofreu uma série de modificações ao longo do tempo visando seu aperfeiçoamento. O objetivo deste trabalho foi analisar a evolução do plano de manejo no contexto da gestão dos parques nacionais no país analisando como caso concreto a sua implementação no estado do Rio de Janeiro. A elaboração de planos de manejo para parques no Brasil foi marcada pela existência de três referências metodológicas distintas o que se refletiu na variedade de planos identificados para os cinco parques nacionais analisados neste trabalho (PARNAs do Itatiaia, da Serra dos Órgãos, da Tijuca, da Serra da Bocaina e da Restinga da Jurubatiba). Como padrão geral os planos de manejo não foram elaborados, nem revisados dentro dos prazos e periodicidade estabelecida pela legislação, o que denota uma dificuldade na implementação desse instrumento mesmo quase trinta anos após a sua instituição.
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Em decorrência da importância dos elementos meteorológicos nos diversos processos que ocorrem no solo, objetivou-se avaliar a cinética de evolução do dióxido de carbono (atividade microbiana) associada aos elementos meteorológicos em áreas de Caatinga, nas condições do semiárido paraibano. O experimento foi instalado em campo, na área da Bacia Escola/CCA/UFPB, Município de São João do Cariri, PB. A atividade microbiana diurna, medida pela liberação de CO2, foi avaliada mensalmente durante o período de janeiro a dezembro de 2008, em três áreas contíguas de Caatinga, correspondendo aos tratamentos: T1 (10 animais 1 animal/3.200 m²), T2 (5 animais 1 animal/6.400 m²) e T3 (Controle Sem animais). A área do experimento totalizou 9,6 ha, e em cada tratamento foi utilizada uma área de 3,2 ha. Foram selecionados em cada tratamento seis pontos de coleta (definidos ao acaso). Os tratamentos foram distribuídos em delineamento de blocos inteiramente casualizados e arranjados em parcela subsubdividida (3x12x6), sendo três taxas de lotação (Parcela), 12 épocas de avaliação (Subparcelas) e 6 h de avaliação (Subsubparcelas) e três blocos. A metodologia baseou-se no princípio de que o CO2 liberado por uma área de solo é absorvido por uma solução de KOH 0,5 N e determinado por titulometria com HCl 0,1 N. A evolução do CO2 variou ao longo do dia em função dos elementos meteorológicos, principalmente temperatura. A taxa de CO2 apresentou tendência à maior liberação no final da tarde. Em decorrência da importância da temperatura do solo e do ar nos inúmeros processos que ocorrem no solo, são necessários mais estudos na região semiárida do Brasil.