993 resultados para Rashi, 1040-1105.


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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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O presente estudo avaliou o efeito de ciclos de restrição alimentar e realimentação (2/3 dias), aplicados durante seis meses antes da desova, no desenvolvimento gonadal de matrinxã. Na ocasião da desova, fêmeas alimentadas diariamente e submetidas ao regime alimentar experimental, selecionadas para a indução hormonal, foram sacrificadas para retirada das gônadas e do fígado, com os quais se calculou o IGS (índice gonadossomático) e o IHS (índice hepatossomático), sendo os ovários processados para análise histológica. Não houve alteração no peso relativo dos ovários e fígado, e o desenvolvimento gonadal não foi afetado pelo esquema alimentar. Os valores de IGS foram de 5,09±4,98% e 9,79±4,17% e os de IHS foram de 0,84±0,07% e 0,91±0,11%, para as fêmeas controle e experimentais, respectivamente, sem diferenças significativas entre os grupos. Os ovários de peixes dos dois grupos apresentaram as mesmas características do estádio maduro, com predominância de ovócitos na fase final de maturação, repletos de vitelo. O estudo indica que a restrição alimentar não afetou a preparação das fêmeas para a reprodução e que ciclos adequados de restrição e realimentação poderão ser aplicados na criação do matrinxã, assegurando menores custos de produção.

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O objetivo deste trabalho foi avaliar a lixiviação de potássio (K), no solo, e sua presença nas formas trocável e não trocável, em conseqüência da aplicação de chuva simulada e adubação potássica sobre palha de milheto, na superfície do solo. Vasos com terra e palha de milheto na superfície (quantidade equivalente a 8 t ha-1) receberam ou não adubação potássica, na dose de 150 kg ha-1 de K2O, na forma de KCl, aplicados sobre a palha. Na seqüência, foram aplicadas lâminas de água de 0 a 50 mm. O solo foi analisado em diversas profundidades, quanto aos teores de K trocável e não trocável. A palha do milheto revelou-se fonte importante de K, que é lixiviado até 4 cm de profundidade por chuvas superiores a 30 mm. A lixiviação de K, em profundidade no solo, é proporcional à chuva aplicada; entretanto, uma chuva de 50 mm não carreia o nutriente para profundidades superiores a 8 cm. A passagem de K trocável para não trocável é rápida, conforme atestado pelo conteúdo de K não trocável na camada de solo abaixo de 4 cm.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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DEVELOPMENT of LIQUID-CRYSTALLINE SYSTEMS USING SILICON GLYCOL COPOLYMER and POLYETHER FUNCTIONAL SILOXANE. For the construction of the phase diagrams, the method of the aqueous titration was used. There were prepared 5 ternary diagrams, varying the surfactant and the oil phase. The liquid-crystalline phases were identified by polarized light microscopy. The formulations prepared with silicon glycol copolymer, polyether functional siloxane (PFS) and water (S(1)) and with diisopropyl adipate, PFS and water (S(4)) presented liquid-crystalline phases with lamellar arrangement. Moreover, after 15 days in hot oven (37 degrees C), the formulations presented hexagonal arrangement, evidencing the influence of the temperature in the organization of the system.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Fluconazole, alpha-(2.4-diflurofenil)-alpha-(1H-triazol-1-methyl)-1H-1,2,4-triazol-1-ethanol, is an antifungal of the triazoles class. It shows activity against species of Candida sp. and it is indicated in cases of oropharyngeal candidiasis, esophageal, vaginal, and deep infection. Fluconazole is a selective inhibitor of ergosterol, a steroid exclusive of the cell membrane of fungal cells. Fluconazole is highly absorbed by the gastrointestinal tract and spreads easily by body fluids. The main adverse reactions related to the use of fluconazole are nausea, vomiting, headache, rash, abdominal pain, diarrhea, and alopecia in patients undergoing prolonged treatment with a dose of 400 mg/day. In the form of raw material, pharmaceutical formulations, or biological material, fluconazole can be determined by methods such as titration, spectrophotometry, and thin-layer, gas, and liquid chromatography. This article discusses the pharmacological and physicochemical properties of fluconazole and also the methods of analysis applied to the determination of the drug.

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Dendritic nucleic acids are highly branched and ordered molecular structures, possessing numerous single-stranded oligonucleotide arms, which hold great promise for enhancing the sensitivity of DNA biosensors. This article evaluates the interfacial behavior and redox activity of nucleic acid dendrimers at carbon paste electrodes, in comparison to DNA. Factors influencing the adsorption behavior, including the adsorption potential and time, solution conditions, or dendrimer concentration, are explored. The strong adsorption at the anodically pretreated carbon surface is exploited for an effective preconcentration step prior to the chronopotentiometric measurement of the surface species. Coupled with the numerous guanine oxidation sites, such stripping protocol offers remarkably low detection limits (e.g., 3 pM or 2.4 femtomole of the I-layer dendrimer following a 15 min accumulation). The new observations bear important implications upon future biosensing applications of nucleic dendrimers.

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A mathematical model was developed in order to study the behavior of thermal stratification of liquid in a typical storage tank with porous medium. The model employs a transient stream function-vorticity formulation to predict the development of stream function and temperature fields in a charging process. Parameters analyzed include Biot, Darcy, Reynolds and Richardson numbers, position, and the thickness of the porous medium. The results show the influence of these physical parameters that should be considered for a good design of storage tanks with thermal stratification.

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This work presents a numerical study of the tri-dimensional convection-diffusion equation by the control-volume-based on finite-element method using quadratic hexahedral elements. Considering that the equation governing this problem in its main variable may represent several properties, including temperature, turbulent kinetic energy, viscous dissipation rate of the turbulent kinetic energy, specific dissipation rate of the turbulent kinetic energy, or even the concentration of a contaminant in a given medium, among others, the wide applicability of this problem is thus evidenced. Three cases of temperature distributions will be studied specifically in this work, in addition to one case of pollutant dispersion upon analysis of the concentration of a contaminant in a fixed flow point. Some comparisons will be carried out against works found in the open literature, while others will be done according to each phenomenon characteristics.

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This work measured the effect of milling parameters on the surface integrity of low-carbon alloy steel. The Variance Analysis showed that only depth of cut did not influence on the workpiece roughness and the Pearson's Coefficient indicated that cutting speed was more influent than tool feed. All cutting parameters introduced tensile residual stress in workpiece surface. The chip formation mechanism depended specially on cutting speed and influenced on the roughness and residual stress of workpiece.

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The accumulation voltammetry of mercury(II) was investigated at a carbon paste electrode chemically modified with silica gel functionalized with 2,5-dimercapto-1,3,4-thiadiazole (DTTPSG-CPE). The repetitive cyclic voltammogram of mercury(II) solution in the potential range -0.2 to +0.8 V (vs. Ag/AgCl), (0.02 mol L-1 KNO3; nu=20 mV s(-1)) show two peaks one at about 0.0 V and other at 0.31 V. However, the cathodic wave peak, around 0.0 V, is irregular and changes its form in each cycle. This peak at about 0.0 V is the reduction current for mercury(II) accumulated in the DTTPSG-CPE. The anodic wave peak at 0.31 V is well-defined and does not change during the cycles. The resultant material was characterized by cyclic and differential pulse anodic stripping voltammetry performed with the electrode in differents supporting electrolytes. The mercury response was evaluated with respect to pH, electrode composition, preconcentration time, mercury concentration, cleaning solution, possible interferences and other variables. The precision for six determinations (n=6) of 0.05 and 0.20 mg (L)-(1) Hg(II) was 2.8 and 2.2% (relative standard deviation), respectively. The method was satisfactory and used to determine the concentration of mercury(II) in natural waters contaminated by this metal.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)