991 resultados para Restauro das pinturas de Jesuino do Monte Carmelo na Igreja da Ordem Terceira do Carmo de São Paulo


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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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

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Os experimentos foram conduzidos, em um podzólico de Lins e Marília - variação Lins, de textora barrento-arenosa, localizado no Município de Monte Azul Paulista, SP. O híbrido de milho duplo H-6999B foi utilizado. Cada experimento constou de 5 tratamentos e de 4 repetições. Os níveis de nitrogênio foram: 0, 50, 100, 200 e 400 kg/ha, sendo aplicados também90 kg/ha de P²O5 e 50 kg/ha de K2O. Os níveis de fósforo foram: 0,40, 80, I60 e 320 kg/ha de P²O5, sendo aplicados também 100 kg/ha de N e 50 kg/ha de K2O. Os níveis de potássio foram: 0, 25, 50, 100 e 200 kg/ha de K2O, sendo aplicados também 100 kg/ha de N e 90 kg/ha de P²O5. A aplicação tanto das doses de fósforo comodas de nitrogênio fez aumentar a produção de milho, a qual foi da ordem de 3 a 7 vezes superior à média de produção do Estado de São Paulo. A dose econômica e a sua consequente produção, determinadas pelas equações de Mitscherlichr-Pimentel Gomes foram: para o fósforo, de 253 kg/ha de P²O5 correspondente a urna produção de o.877 kg/ha de milho em grão; para o nitrogênio, foi de 228 kg/ha de N correspondente a uma produção de 11.100 kg/ha de milho e para o potássio, foi de 62 kg/ha de K2O correspondente a urna produção de 9-252 kg/ha de milho. Os níveis críticos econômicos, nas folhas, determinados pelas equações de MALAVOLTA & PIMENTEL GOMES (1961) e correspondentes às doses econômicas, foram de: 0,293% de P, de 3,27% de N e de 2,07% de K. A folha escolhida, ou seja, aquela oposta à espiga mais alta, reflete bem o estado nutricional da planta e consequentemente o nível de fertilidade do solo.

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Estudou-se a seletividade de acaricidas a insetos e ácaros predadores em pomares citrícolas localizados em Monte Alto e Vista Alegre do Alto, SP, em 1993 e 1994. Os acaricidas nas dosagens testadas (em g.i.a/1001) foram: em 1993, pyridaben 20 CE, 20 PM e 75 PM (10 e 15), óxido fenbutatin (40) e testemunha; em 1994, pyridaben 20 CE e pyridaben 75 PM (10 e 20), óxido fenbutatin (40), cyhexatin (25) e testemunha. Larvas e adultos de Pentilia egena Muls. e Coccidophilus citricola Bréthes, adultos de Cycloneda sanguinea L., Azya sp. e Calloeneis sp. e larvas de crisopídeos foram observados nas plantas, previamente e a 1, 3, 7, 10, 14 e 21 dias após a aplicação. Para contagem de Euseius sp. e Iphiseiodes zuluagai Denmark & Muma, 10 folhas do interior da planta foram coletadas e observadas. Os produtos foram classificados em: seletivo (até 25% de mortalidade); levemente tóxico (25 a 50%; moderadamente tóxico (51 a 75%) e tóxico (> 75% de mortalidade). Os resultados indicaram que todos os produtos foram seletivos a adultos de P. egena, porém, pyridaben causou de 25 a 50% e cyhexatin de 51 a 75% de mortalidade de larvas. Pyridaben 20 CE e 75 PM reduziram em 25 a 50% e 51 a 75% respectivamente o número de adultos de C. citricola; já cyhexatin foi tóxico e fenbutatin seletivo a adultos desta espécie. em relação a larvas de C. citricola mortalidade de 51 a 75% foi causada por pyridaben 20 CE e 75 PM, maior que 75% por cyhexatin e entre 25 e 50% no caso de fenbutatin. Todos os acaricidas foram tóxicos aos ácaros predadores por mais de 21 dias, no entanto, fenbutatin apresentou efeito residual menor (14 dias).

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The code STATFLUX, implementing a new and simple statistical procedure for the calculation of transfer coefficients in radionuclide transport to animals and plants, is proposed. The method is based on the general multiple-compartment model, which uses a system of linear equations involving geometrical volume considerations. Flow parameters were estimated by employing two different least-squares procedures: Derivative and Gauss-Marquardt methods, with the available experimental data of radionuclide concentrations as the input functions of time. The solution of the inverse problem, which relates a given set of flow parameter with the time evolution of concentration functions, is achieved via a Monte Carlo Simulation procedure.Program summaryTitle of program: STATFLUXCatalogue identifier: ADYS_v1_0Program summary URL: http://cpc.cs.qub.ac.uk/summaries/ADYS_v1_0Program obtainable from: CPC Program Library, Queen's University of Belfast, N. IrelandLicensing provisions: noneComputer for which the program is designed and others on which it has been tested: Micro-computer with Intel Pentium III, 3.0 GHzInstallation: Laboratory of Linear Accelerator, Department of Experimental Physics, University of São Paulo, BrazilOperating system: Windows 2000 and Windows XPProgramming language used: Fortran-77 as implemented in Microsoft Fortran 4.0. NOTE: Microsoft Fortran includes non-standard features which are used in this program. Standard Fortran compilers such as, g77, f77, ifort and NAG95, are not able to compile the code and therefore it has not been possible for the CPC Program Library to test the program.Memory, required to execute with typical data: 8 Mbytes of RAM memory and 100 MB of Hard disk memoryNo. of bits in a word: 16No. of lines in distributed program, including test data, etc.: 6912No. of bytes in distributed Program, including test data, etc.: 229 541Distribution format: tar.gzNature of the physical problem: the investigation of transport mechanisms for radioactive substances, through environmental pathways, is very important for radiological protection of populations. One such pathway, associated with the food chain, is the grass-animal-man sequence. The distribution of trace elements in humans and laboratory animals has been intensively studied over the past 60 years [R.C. Pendlenton, C.W. Mays, R.D. Lloyd, A.L. Brooks, Differential accumulation of iodine-131 from local fallout in people and milk, Health Phys. 9 (1963) 1253-1262]. In addition, investigations on the incidence of cancer in humans, and a possible causal relationship to radioactive fallout, have been undertaken [E.S. Weiss, M.L. Rallison, W.T. London, W.T. Carlyle Thompson, Thyroid nodularity in southwestern Utah school children exposed to fallout radiation, Amer. J. Public Health 61 (1971) 241-249; M.L. Rallison, B.M. Dobyns, F.R. Keating, J.E. Rall, F.H. Tyler, Thyroid diseases in children, Amer. J. Med. 56 (1974) 457-463; J.L. Lyon, M.R. Klauber, J.W. Gardner, K.S. Udall, Childhood leukemia associated with fallout from nuclear testing, N. Engl. J. Med. 300 (1979) 397-402]. From the pathways of entry of radionuclides in the human (or animal) body, ingestion is the most important because it is closely related to life-long alimentary (or dietary) habits. Those radionuclides which are able to enter the living cells by either metabolic or other processes give rise to localized doses which can be very high. The evaluation of these internally localized doses is of paramount importance for the assessment of radiobiological risks and radiological protection. The time behavior of trace concentration in organs is the principal input for prediction of internal doses after acute or chronic exposure. The General Multiple-Compartment Model (GMCM) is the powerful and more accepted method for biokinetical studies, which allows the calculation of concentration of trace elements in organs as a function of time, when the flow parameters of the model are known. However, few biokinetics data exist in the literature, and the determination of flow and transfer parameters by statistical fitting for each system is an open problem.Restriction on the complexity of the problem: This version of the code works with the constant volume approximation, which is valid for many situations where the biological half-live of a trace is lower than the volume rise time. Another restriction is related to the central flux model. The model considered in the code assumes that exist one central compartment (e.g., blood), that connect the flow with all compartments, and the flow between other compartments is not included.Typical running time: Depends on the choice for calculations. Using the Derivative Method the time is very short (a few minutes) for any number of compartments considered. When the Gauss-Marquardt iterative method is used the calculation time can be approximately 5-6 hours when similar to 15 compartments are considered. (C) 2006 Elsevier B.V. All rights reserved.

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This is a report about the second occurrence and description of the third specimen of Stratiotosuchus maxhechti (Baurusuchidae, Crocodyliformes) from the Bauru Basin, Upper Cretaceous of southeastern Brazil. The material was found in the typical reddish, fine-grained sandstone from the Adamantina Formation, Bauru Group, Monte Alto County, São Paulo State. These strata are considered to be Campanian-Maastrichtian in age. It is the second skull of Stratiotosuchus maxhechti recovered where the choanal region and the skull-mandible articulation is preserved. The holotype of this species comes from the Adamantina Formation from southwestern São Paulo State, while this new specimen comes from its northern-central region, making possible biocbronological and paleoccological correlations among different geographically distant stratigraphic horizons within the Bauru Basin. The main osteologic contributions from this new specimen are the surangular taking part in the skull/mandible articulation and the presence of a relatively well-preserved choanal region, which are not seen in the holotype, furthering the knowledge of Stratiotosuchus maxhechti. Based on the features of this new specimen, an emended diagnosis is provided.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)