940 resultados para Variação de pH


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Foram comparadas as áreas irrigadas por pivôs centrais no Brasil em 2013 e 2014, mapeadas através da identificação visual a partir de mosaicos formados por imagens do satélite Landsat 8 ? OLI / TRS de 2013 e 2014, respectivamente, exibidas no programa Google Earth. Em 2013 foram identificados 17.878 pivôs centrais, ocupando uma área irrigada de 1.179.176 ha. Em 2014, foi observado aumento de 11% no número de pivôs centrais e de 8% na área irrigada (19.928 pivôs centrais, 1.279.072 ha irrigados). Em 2013, praticamente 90% dos pivôs concentravam-se nos Estados de Minas Gerais, São Paulo, Goiás, Bahia e Rio Grande do Sul, situação também observada para o ano de 2014. Em alguns Estados foi verificado aumento maior do que 20% no número de pivôs entre 2013 e 2014, como em Alagoas (133%), Santa Catarina (50%), Mato Grosso (20,07%). Em outros Estados, porém, o número de pivôs diminuiu em mais do que 20%, como é o caso do Sergipe (-100%), Pernambuco (-75%) e Maranhão (-46,61%). Em 2013, aproximadamente 45% dos pivôs centrais do Brasil concentrava-se na Região Hidrográfica do Rio Paraná; e quase 30%, na do Rio São Francisco. Em 2014, a Região Hidrográfica do Rio Paraná passou a concentrar cerca de 50% dos pivôs centrais do país. Apesar das adversidades climáticas verificadas nos últimos anos, principalmente nas áreas de Cerrado, com o aumento de incentivos econômicos para a produção de alimentos prevê-se a expansão futura das áreas irrigadas no país. Apesar do benefício potencial da irrigação para a produção agrícola, estratégias para promover o aumento da produção agrícola irrigada devem considerar restrições relacionadas com a disponibilidade, qualidade e conflitos de uso da água das bacias hidrográficas em que estão inseridas. Ações estimulando a melhoria da qualidade da água, conservação de nascentes e áreas de preservação permanente, bem como o gerenciamento eficiente dos recursos hídricos, contribuirão para a melhoria da qualidade e quantidade de água disponível, fundamentais para possibilitar a sustentabilidade e expansão futura da agricultura irrigada no Brasil.

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Projeto de Pós-Graduação/Dissertação apresentado à Universidade Fernando Pessoa como parte dos requisitos para obtenção do grau de Mestre em Medicina Dentária

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http://www.archive.org/details/manualofmissions014078mbp

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It is shown that determining whether a quantum computation has a non-zero probability of accepting is at least as hard as the polynomial time hierarchy. This hardness result also applies to determining in general whether a given quantum basis state appears with nonzero amplitude in a superposition, or whether a given quantum bit has positive expectation value at the end of a quantum computation.

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The goal of this work is to fabricate robust, highly-miniaturised, wireless sensor modules that incorporates ion-selective electrodes (ISEs). pH is one of the main parameters in assessment of the quality of our environment (water, soil) and these ISE/pH sensors will be deployed in a miniaturised, programmable modular system. The simplicity of ISEs (low costs and low power requirements) allow for the preparation of sensors that are all very similar in construction but can at the same time be easily made for variety of different environmentally important ions (i.e. heavy metals). This is important because of the increasing focus on the impact of the quality of the environment on society, both locally, and globally. The work described will contribute to a widely distributed sensor network for monitoring the quality of our environment, focused mainly on soil and water quality.

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We studied the cells from three selected patients with Ph-chromosome-negative chronic myeloid leukemia (CML) by Southern blotting, polymerase chain reaction, and in situ hybridization of informative probes to metaphase chromosomes. All three patients had rearrangement of M-BCR sequences in the BCR gene and expression of one or other of the mRNA species characteristic of Ph-positive CML. Leukemic metaphases studied after trypsin-Giemsa banding were indistinguishable from normal. The ABL probe localized both to chromosome 9 and 22 in each case. A probe containing 3' M-BCR sequences localized only to chromosome 22, and not to chromosome 9 as would be expected in Ph-positive CML. Two new probes that recognize different polymorphic regions distal to the ABL gene on chromosome 9 in normal subjects localized exclusively to chromosome 9 in two patients and to both chromosomes 9 and 22 in one patient. These results show that Ph-negative CML with BCR rearrangement is associated with insertion of a variable quantity of chromosome 9 derived material into chromosome 22q11; there is no evidence for reciprocal translocation of material from chromosome 22 to chromosome 9.

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Quantitative models are required to engineer biomaterials with environmentally responsive properties. With this goal in mind, we developed a model that describes the pH-dependent phase behavior of a class of stimulus responsive elastin-like polypeptides (ELPs) that undergo reversible phase separation in response to their solution environment. Under isothermal conditions, charged ELPs can undergo phase separation when their charge is neutralized. Optimization of this behavior has been challenging because the pH at which they phase separate, pHt, depends on their composition, molecular weight, concentration, and temperature. To address this problem, we developed a quantitative model to describe the phase behavior of charged ELPs that uses the Henderson-Hasselbalch relationship to describe the effect of side-chain ionization on the phase-transition temperature of an ELP. The model was validated with pH-responsive ELPs that contained either acidic (Glu) or basic (His) residues. The phase separation of both ELPs fit this model across a range of pH. These results have important implications for applications of pH-responsive ELPs because they provide a quantitative model for the rational design of pH-responsive polypeptides whose transition can be triggered at a specified pH.

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Ambiguous expiration dates on milk cartons can mislead consumers into prematurely disposing unspoiled milk and potentially drinking spoiled milk. These misconceptions can lead to wastage that harms the environment, or potential discomfort and illness. The incorporation of pH-sensitive indicators into plastic milk cartons has the potential to replace stamped expiration dates as the traditional method of milk spoilage indication. We studied the correlation between bacteria count and milk pH to establish pH measurement as an effective indicator of milk quality. We then developed a method for incorporating bromothymol blue, a pH-sensitive color-changing dye, into a hydrogel made of polyacrylamide. This hydrogel can be added to existing packaging for milk or other products with detectable pH changes. Additionally, we conducted a consumer survey and analyzed current food packaging trends in the market. Our research indicates that a spoilage-indicating milk carton could have strong market potential as food industries increasingly adopt intelligent packaging designs.