973 resultados para identificação do céu
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A antropologia do clima abrange o estudo da significação dos fenômenos astronômicos e atmosféricos nos mitos e ritos indígenas, bem como a importância das representações sobre tais fenômenos para as práticas sociais de povos indígenas como o Ticuna. A identificação dos corpos celestes, presentes na iconografia dos artefatos utilizados na festa de puberdade Ticuna, remete a aspectos da mitologia e da cosmovisão deste povo, expressos em cantos e relatos rituais, traduzidos em termos das expectativas em face das relações entre o movimento das estrelas no céu ao longo do ano e a influência da sazonalidade das chuvas e da estiagem nas atividades de sobrevivência. Tal identificação de agrupamentos de corpos celestes visualizados pelos Ticuna permite correlações com as constelações reconhecidas convencionalmente.
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A citricultura no Rio Grande do Sul tem sua produção limitada devido a doenças e pragas. Entre as pragas estão as moscas-das-frutas do gênero Anastrepha. As fêmeas ovipositam nos frutos e, após a eclosão, as larvas consomem a polpa, depreciando e causando a queda destes. Atualmente, tem-se procurado viabilizar o controle biológico das populações de moscas-das-frutas, principalmente com a utilização de himenópteros parasitóides. No Rio Grande do Sul não existem registros de espécies de parasitóides associados à Anastrepha spp. em pomares de citros. Assim, o objetivo deste trabalho foi o de conhecer e identificar estas espécies de parasitóides e registrar a flutuação de Anastrepha spp. durante o período de desenvolvimento dos frutos em um pomar de Citrus sinensis var. Céu sob o manejo orgânico localizado no município de Maratá, RS. Para isto, entre 21 de janeiro e 20 de maio de 2003, foram coletados frutos da copa e caídos no solo, bem como capturados adultos de Anastrepha spp., com armadilhas McPhail, em intervalos semanais. Em condição de laboratório, os frutos da copa e do solo foram colocados em potes plásticos e caixas de papelão, respectivamente, sobre uma camada de areia. Semanalmente, a areia era peneirada e os pupários obtidos, colocados em placas de Petri. Obtiveram-se cinco espécies de parasitóides pertencentes a três famílias, Braconidae, Diapriidae e Pteromalidae. O índice de parasitismo total foi de 6,23% e o braconídeo Doryctobracon areolatus foi mais freqüente (38,70%). Observaram-se dois patamares no número médio de adultos de Anastrepha spp. capturados. A viabilidade pupal foi 37,01%, enquanto que a razão sexual das moscas-das-frutas obtidas nas armadilhas foi de 0,53.
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O gênero Amazunculus é exclusivo da região Neotropical, com a maioria dos seus registros no bioma amazônico. São pipunculídeos grandes, facilmente identificados pelos tarsos posteriores achatados e a veia alar dm-cu curva. Aqui são descritas as espécies Amazunculus cordigaster sp. nov., A. deargentatus sp. nov. e A. duckei sp. nov., cujas diagnoses são baseadas principalmente em características da genitália masculina. É apresentada uma chave para identificação das seis espécies do gênero.
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Objective of this work was identifying superficial water quality parameters, significant to semi-arid hydrographic basins, minimizing costs of water monitoring. The Salitre river basin, an important sub-basin of the São Francisco river, was used as a case study. STD, Cl-, DO, BOD, pH, NO3-, PO4(3-), Al, Cu, Fe, Mn, Ni and Pb were considered the most significant parameters, with concentration levels found in some stretches of the basin not compliant with the current legislation. Some of the Salitre river basin sediments may represent a risk to the quality of the water body in relation to levels of nickel and zinc.
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In this work, was studied the formation of a composite of the refractory metal niobium with copper, through the process of high-energy milling and liquid phase sintering. The HEM can be used to synthesize composite powders with high homogeneity and fine size particle distribution. It may also produce the solid solubility in immiscible systems such as Nb-Cu, or extend the solubility of systems with limited solubility. Therefore, in the immiscible system Cu-Nb, the high-energy milling was successfully used to obtain the composite powder particles. Initially, the formation of composite particles during the HEM and the effect of preparation technique on the microstructure of the material was evaluated. Four loads of Nb and Cu powders containing 20%wt Cu were synthesized by MAE in a planetary type ball mill under different periods of grinding. The influence of grinding time on the metal particles is evaluated during the process by the withdrawal of samples at intermediate times of milling. After compaction under different forces, the samples were sintered in a vacuum furnace. The liquid phase sintering of these samples prepared by HEM produced a homogeneous and fine grained. The composite particles forming the sintered samples are the addition of a hard phase (Nb) with a high melting point, and a ductile phase (Cu) with low melting point and high thermal and electrical conductivities. Based on these properties, the Nb-Cu system is a potential material for many applications, such as electrical contacts, welding electrodes, coils for generating high magnetic fields, heat sinks and microwave absorbers, which are coupled to electronic devices. The characterization techniques used in this study, were laser granulometry, used to evaluate the homogeneity and particle size, and the X-ray diffraction, in the phase identification and to analyze the crystalline structure of the powders during milling. The morphology and dispersion of the phases in the composite powder particles, as well the microstructures of the sintered samples, were observed by scanning electron microscopy (SEM). Subsequently, the sintered samples are evaluated for density and densification. And finally, they were characterized by techniques of measuring the electrical conductivity and microhardness, whose properties are analyzed as a function of the parameters for obtaining the composite
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Pós-graduação em História - FCLAS
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In this work, was studied the formation of a composite of the refractory metal niobium with copper, through the process of high-energy milling and liquid phase sintering. The HEM can be used to synthesize composite powders with high homogeneity and fine size particle distribution. It may also produce the solid solubility in immiscible systems such as Nb-Cu, or extend the solubility of systems with limited solubility. Therefore, in the immiscible system Cu-Nb, the high-energy milling was successfully used to obtain the composite powder particles. Initially, the formation of composite particles during the HEM and the effect of preparation technique on the microstructure of the material was evaluated. Four loads of Nb and Cu powders containing 20%wt Cu were synthesized by MAE in a planetary type ball mill under different periods of grinding. The influence of grinding time on the metal particles is evaluated during the process by the withdrawal of samples at intermediate times of milling. After compaction under different forces, the samples were sintered in a vacuum furnace. The liquid phase sintering of these samples prepared by HEM produced a homogeneous and fine grained. The composite particles forming the sintered samples are the addition of a hard phase (Nb) with a high melting point, and a ductile phase (Cu) with low melting point and high thermal and electrical conductivities. Based on these properties, the Nb-Cu system is a potential material for many applications, such as electrical contacts, welding electrodes, coils for generating high magnetic fields, heat sinks and microwave absorbers, which are coupled to electronic devices. The characterization techniques used in this study, were laser granulometry, used to evaluate the homogeneity and particle size, and the X-ray diffraction, in the phase identification and to analyze the crystalline structure of the powders during milling. The morphology and dispersion of the phases in the composite powder particles, as well the microstructures of the sintered samples, were observed by scanning electron microscopy (SEM). Subsequently, the sintered samples are evaluated for density and densification. And finally, they were characterized by techniques of measuring the electrical conductivity and microhardness, whose properties are analyzed as a function of the parameters for obtaining the composite
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A Serra Gaúcha produz 247.135 t de uvas Americanas (Vitis Labrusca) e sua principal doença é o Míldio (Plasmopara viticola). Um dos principais fungicidas utilizados para as uvas americanas é a Calda Bordalesa [(CuSO4 5H2 O + Ca (OH)2)], o uso indiscriminado deste fungicida causa um aumento da concentração de Cobre no solo. O objetivo deste trabalho foi avaliar o potencial das plantas, que habitam solos sob vinhedo, de mitigar a contaminação por cobre. O trabalho foi realizado em um vinhedo de aproximadamente 0,66 ha localizado na EMBRAPA Uva e Vinho, Bento Gonçalves, RS, Brasil (Latitude 29º 09? 44? S e Longitude 51º 31?50?W). O vinhedo foi dividido em duas partes, Neossolo Litólico e Cambissolo Húmico. Em cada um dos diferentes solos foram feitas 10 amostragens (parcelas), de 1m2. Após a coleta, as amostras foram analisadas para determinação de Cu. Com as quantidades de Cu na parte aérea e raízes e a massa seca das mesmas foram calculadas as médias das concentrações para cada espécies e foi possível a determinação da quantidade de Cu absorvido pela parte aérea e da raiz. Os resultados mostraram que não foram encontradas plantas hiperacumuladoras na área e todas as plantas têm concentração de Cu acima dos valores ditos como tóxicos. Entre a população de plantas que habitam as áreas, a que mais extrai cobre do solo é a Setaria sp., extraindo 0,56 e 0,70 mg, respectivamente no Neossolo e Cambissolo.
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We report a combined study of external pressure and Cu-substitution on BaFe2As2 single crystals grown by the in-flux technique. At ambient pressure, the Cu-substitution is known to suppress the spin density wave (SDW) phase in pure BaFe2As2(TSDW ≈ 140 K) and to induce a superconducting (SC) dome with a maximum transition temperature [Formula: see text]. This [Formula: see text] is much lower than the Tc ∼ 15-28 K achieved in the case of Ru, Ni and Co substitutions. Such a lower Tc is attributed to a Cu(2+) magnetic pair-breaking effect. The latter is strongly suppressed by applied pressure, as shown herein, Tc can be significantly enhanced by applying high pressures. In this work, we investigated the pressure effects on Cu(2+) magnetic pair-breaking in the BaFe2-xCuxAs2 series. Around the optimal concentration (xopd = 0.11), all samples showed a substantial increase of Tc as a function of pressure. Yet for those samples with a slightly higher doping level (over-doped regime), Tc presented a dome-like shape with maximum Tc ≃ 8 K. Remarkably interesting, the under-doped samples, e.g. x = 0.02 display a maximum pressure induced Tc ≃ 30 K which is comparable to the maximum Tc's found for the pure compound under external pressures. Furthermore, the magnetoresistance effect as a function of pressure in the normal state of the x = 0.02 sample also presented an evolution consistent with the screening of the Cu(2+) local moments. These findings demonstrate that the Cu(2+) magnetic pair-breaking effect is completely suppressed by applying pressure in the low concentration regime of Cu(2+) substituted BaFe2As2.
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This paper discusses the results obtained with homogeneous catalytic ozonation [Mn (II) and Cu (II)] in phenol degradation. The reduction of total phenols and total organic carbon (TOC) and the ozone consumption were evaluated. The efficiency in phenol degradation (total phenol removal) at pH 3, with the catalytic process (Mn (II)), increased from 37% to 55% while the TOC removal increased from 4 to 63% in a seven-minute treatment. The ozonation process efficiency at pH 10 was 43% and 39% for phenol and TOC removal, respectively. The presence of both metallic ions (Mn2+ and Cu+2) in the ozonation process resulted in a positive effect.
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Raman imaging spectroscopy is a highly useful analytical tool that provides spatial and spectral information on a sample. However, CCD detectors used in dispersive instruments present the drawback of being sensitive to cosmic rays, giving rise to spikes in Raman spectra. Spikes influence variance structures and must be removed prior to the use of multivariate techniques. A new algorithm for correction of spikes in Raman imaging was developed using an approach based on comparison of nearest neighbor pixels. The algorithm showed characteristics including simplicity, rapidity, selectivity and high quality in spike removal from hyperspectral images.
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The efficiency of swine production performance depends on the herd administration, such as good nutrition, sanitary control, facilities and appropriate environmental conditions. The concept of this production model is directly related with the reduction of selective losses and the process control. Each production segment is controlled to reach the optimization in the system totality, it is necessary to apply animals handling concepts, environmental control implementation, diseases control, nutrition control, information concerning in guaranteeing the animal welfare and individual identification. The present work presents as objective the development of the mathematical model to evaluate interactions among the internal atmosphere of the installation and the thermal animals preference, in the expectation of detecting a relationship among the frequency access to the drinking fountain and the atmosphere conditions - temperature, black globe temperature and relative humidity, using as tool the electronic identification. The results obtained by the mathematical model, allowed to conclude accurately the evaluation of the swine thermal preference correlating with the climatic variables in the pregnancy stage.
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Animal welfare has been an important research topic in animal production mainly in its ways of assessment. Vocalization is found to be an interesting tool for evaluating welfare as it provides data in a non-invasive way as well as it allows easy automation of process. The present research had as objective the implementation of an algorithm based on artificial neural network that had the potential of identifying vocalization related to welfare pattern indicatives. The research was done in two parts, the first was the development of the algorithm, and the second its validation with data from the field. Previous records allowed the development of the algorithm from behaviors observed in sows housed in farrowing cages. Matlab® software was used for implementing the network. It was selected a retropropagation gradient algorithm for training the network with the following stop criteria: maximum of 5,000 interactions or error quadratic addition smaller than 0.1. Validation was done with sows and piglets housed in commercial farm. Among the usual behaviors the ones that deserved enhancement were: the feed dispute at farrowing and the eventual risk of involuntary aggression between the piglets or between those and the sow. The algorithm was able to identify through the noise intensity the inherent risk situation of piglets welfare reduction.