113 resultados para Ideal Afriat Index


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Soil compaction can be minimized either mechanically or biologically, using plant species with vigorous root systems. An experiment was carried out with soybean (Glycine max) in rotation with triticale (X Triticosecale) and sunflower (Helianthus annuus) in fall-winter associated with pearl millet (Pennisetum glaucum), grain sorghum (Sorghum bicolor) or sunn hemp (Crotalaria juncea) in spring. Crop rotation under no-till was compared with mechanical chiseling. The experiment was carried out in Botucatu, São Paulo State, Brazil. Soil quality was estimated using the S index and soil water retention curves (in the layers of 0-0.05, 0.075-0.125, 0.15-0.20, 0.275-0.325, and 0.475-0.525 m deep). Crop rotation and chiseling improved soil quality, increasing the S index to over 0.035 to a depth of 20 cm in the soil profile. The improved soil quality, as shown by the S index, makes the use of mechanical chiseling unnecessary, since after 3 years the soil physical quality under no-tilled crop rotation and chiseling was similar.

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Chlorophyll determination with a portable chlorophyll meter can indicate the period of highest N demand of plants and whether sidedressing is required or not. In this sense, defining the optimal timing of N application to common bean is fundamental to increase N use efficiency, increase yields and reduce the cost of fertilization. The objectives of this study were to evaluate the efficiency of N sufficiency index (NSI) calculated based on the relative chlorophyll index (RCI) in leaves, measured with a portable chlorophyll meter, as an indicator of time of N sidedressing fertilization and to verify which NSI (90 and 95 %) value is the most appropriate to indicate the moment of N fertilization of common bean cultivar Perola. The experiment was carried out in the rainy and dry growing seasons of the agricultural year 2009/10 on a dystroferric Red Nitosol, in Botucatu, São Paulo State, Brazil. The experiment was arranged in a randomized complete block design with five treatments, consisting of N managements (M1: 200 kg ha-1 N (40 kg at sowing + 80 kg 15 days after emergence (DAE) + 80 kg 30 DAE); M2: 100 kg ha-1 N (20 kg at sowing + 40 kg 15 DAE + 40 kg 30 DAE); M3: 20 kg ha-1 N at sowing + 30 kg ha-1 when chlorophyll meter readings indicated NSI < 95 %; M4: 20 kg ha-1 N at sowing + 30 kg ha-1 N when chlorophyll meter readings indicated NSI < 90 % and, M5: control (without N application)) and four replications. The variables RCI, aboveground dry matter, total leaf N concentration, production components, grain yield, relative yield, and N use efficiency were evaluated. The RCI correlated with leaf N concentrations. By monitoring the RCI with the chlorophyll meter, the period of N sidedressing of common bean could be defined, improving N use efficiency and avoiding unnecessary N supply to common bean. The NSI 90 % of the reference area was more efficient to define the moment of N sidedressing of common bean, to increase N use efficiency.

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One way of classifying water quality is by means of indices, in which a series of parameters analyzed are joined a single value, facilitating the interpretation of extensive lists of variables or indicators, underlying the classification of water quality. The objective of this study was to develop a statistically based index to classify water according to the Irrigation Water Quality Index (IWQI), to evaluate the ionic composition of water for use in irrigation and classify it by its source. For this purpose, the database generated during the Technology Generation and Adaptation (GAT) program was used, in which, as of 1988, water samples were collected monthly from water sources in the states of Paraíba, Rio Grande do Norte and Ceará. To evaluate water quality, the electrical conductivity (EC) of irrigation water was taken as a reference, with values corresponding to 0.7 dS m-1. The chemical variables used in this study were: pH, EC, Ca, Mg, Na, K, Cl, HCO3, CO3, and SO4. The data of all characteristics evaluated were standardized and data normality was confirmed by Lilliefors test. Then the irrigation water quality index was determined by an equation that relates the standardized value of the variable with the number of characteristics evaluated. Thus, the IWQI was classified based on indices, considering normal distribution. Finally, these indices were subjected to regression analysis. The method proposed for the IWQI allowed a satisfactory classification of the irrigation water quality, being able to estimate it as a function of EC for the three water sources. Variation in the ionic composition was observed among the three sources and within a single source. Although the water quality differed, it was good in most cases, with the classification IWQI II.

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Sugarcane is considered a Si-accumulating plant, but in Brazil, where several soil types are used for cultivation, there is little information about silicon (Si) fertilization. The objectives of this study were to evaluate the silicon availability, uptake and recovery index of Si from the applied silicate on tropical soils with and without silicate fertilization, in three crops. The experiments in pots (100 L) were performed with specific Si rates (0, 185, 370 and 555 kg ha-1 Si), three soils (Quartzipsamment-Q, 6 % clay; Rhodic Hapludox-RH, 22 % clay; and Rhodic Acrudox-RA, 68 % clay), with four replications. The silicon source was Ca-Mg silicate. The same Ca and Mg quantities were applied to all pots, with lime and/or MgCl2, when necessary. Sugarcane was harvested in the plant cane and first- and second-ratoon crops. The silicon rates increased soil Si availability and Si uptake by sugarcane and had a strong residual effect. The contents of soluble Si were reduced by harvesting and increased with silicate application in the following decreasing order: Q>RH>RA. The silicate rates promoted an increase in soluble Si-acetic acid at harvest for all crops and in all soils, except RA. The amounts of Si-CaCl2 were not influenced by silicate in the ratoon crops. The plant Si uptake increased according to the Si rates and was highest in RA at all harvests. The recovery index of applied Si (RI) of sugarcane increased over time, and was highest in RA.

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The S-index was introduced in 2004 in a publication by A.R. Dexter. S was proposed as an indicator of soil physical quality. A critical value delimiting soils with rich and poor physical quality was proposed. At present, Brazil is world leader in citations of Dexter's publication. In this publication the S-theory is mathematically revisited and extended. It is shown that S is mathematically correlated to bulk density and total porosity. As an absolute indicator, the value of S alone has proven to be incapable of predicting soil physical quality. The critical value does not always hold under boundary conditions described in the literature. This is to be expected because S is a static parameter, therefore implicitly unable to describe dynamic processes. As a relative indicator of soil physical quality, the S-index has no additional value over bulk density or total porosity. Therefore, in the opinion of the author, the fact that bulk density or total porosity are much more easily determined than the water retention curve for obtaining S disqualifies S as an advantageous indicator of relative soil physical quality. Among the several equations available for the fitting of water retention curves, the Groenevelt-Grant equation is preferable for use with S since one of its parameters and S are linearly correlated. Since efforts in soil physics research have the purpose of describing dynamic processes, it is the author's opinion that these efforts should shift towards mechanistic soil physics as opposed to the search for empirical correlations like S which, at present, represents far more than its reasonable share of soil physics in Brazil.

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Many soils have a hard-setting behavior, also known as cohesive or "coesos". In such soils, the penetration resistance increases markedly when dry and decreases considerably when moist, creating serious limitations for plant emergence and growth. To evaluate the level of structure degradation in hard-setting soils with different texture classes and to create an index for assessing soil hardness levels in hard-setting soils, six soil representative profiles were selected in the field in various regions of Brazil. The following indices were tested: S, which measures soil physical quality, and H , which analyzes the degree of hardness and the effective stress in the soil during drying. Both indices were calculated using previously described functions based on data from the water-retention curves for the soils. The hard-setting values identified in different soils of the Brazilian Coastal Tablelands have distinct compaction (hardness) levels and can be satisfactorily measured by the H index. The S index was adequate for evaluating the structural characteristics of the hard-setting soils, classifying them as suitable or poor for cultivation, but only when the moisture level of the soil was near the inflection point. The H index showed that increases in density in hard-setting soils result from increases in effective stress and not from the soil texture. Values for Bd > 1.48 kg dm-3 classify the soil as hard-setting, and the structural organization is considered "poor".

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Soils constructed after mining often have low carbon (C) stocks and low quality of organic matter (OM). Cover crops are decisive for the recovery process of these stocks, improving the quality of constructed soils. Therefore, the goal of this study was to evaluate the effect of cover crops on total organic C (TOC) stocks, C distribution in physical fractions of OM and the C management index (CMI) of a soil constructed after coal mining. The experiment was initiated in 2003 with six treatments: Hemarthria altissima (T1), Paspalum notatum (T2), Cynodon dactylon (T3), Urochloa brizantha (T4), bare constructed soil (T5), and natural soil (T6). Soil samples were collected in 2009 from the 0.00-0.03 m layer, and the TOC and C stocks in the physical particle size fractions (carbon in the coarse fraction - CCF, and mineral-associated carbon - MAC) and density fractions (free light fraction - FLF; occluded light fraction - OLF, and heavy fraction - HF) of OM were determined. The CMI components: carbon pool index (CPI), lability (L) and lability index (LI) were estimated by both fractionation methods. No differences were observed between TOC, CCF and MAC stocks. The lowest C stocks in FLF and OLF fractions were presented by T2, 0.86 and 0.61 Mg ha-1, respectively. The values of TOC stock, C stock in physical fractions and CMI were intermediate, greater than T5 and lower than T6 in all treatments, indicating the partial recovery of soil quality. As a result of the better adaptation of the species Hemarthria and Brizantha, resulting in greater accumulation of labile organic material, the CPI, L, LI and CMI values were higher in these treatments, suggesting a greater potential of these species for recovery of constructed soils.

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O objetivo deste trabalho foi avaliar o tamanho ótimo de populações de irmãos completos, para estudos de mapas de marcadores moleculares, por meio de simulações de genomas e tamanhos de populações. Foram simulados genomas parentais e amostras de populações de família de irmãos completos do tipo completamente informativas, e também não completamente informativas. As amostras geradas foram de 100, 200, 400 e 600 indivíduos, com três grupos de ligação cada, e 11 marcas moleculares codominantes e multialélicas, espaçadas a dez centimorgans por grupo de ligação. Foram realizadas 100 repetições por amostra. Para populações completamente informativas, o tamanho populacional de 200 indivíduos é suficiente para recuperar as informações originais, contudo, para a população não completamente informativa, é necessária a utilização de uma população maior, de 600 indivíduos.

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The objective of this work was to construct a simple index based on the presence/absence of different groups of soil macrofauna to determine the ecological quality of soils. The index was tested with data from 20 sites in South and Central Tabasco, Mexico, and a positive relation between the model and the field observations was detected. The index showed that diverse agroforestry systems had the highest soil quality index (1.00), and monocrops without trees, such as pineapple, showed the lowest soil quality index (0.08). Further research is required to improve this model for natural systems that have very low earthworm biomass (<10 g m-2) and a high number of earthworm species (5-7), as it is in the tropical rain forest, whose soil quality index was medium (0.5). The application of this index will require an illustrated guide for its users. Further studies are required in order to test the use of this index by farmers.

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The objective of this work was to set up ideal conditions for conidia mass production of Dicyma pulvinata. Four isolates were compared in terms of their growth and conidia production on various substrates (grains of parboiled rice, common rice, maize and wheat, besides chipped maize and rice husk), temperatures (19, 22, 25, 28 and 31ºC), growth containers (aluminum trays, polypropylene bags and Erlenmeyers) and light regimes (continuous darkness, 6 and 12 hours of light/darkness, and continuous light). Temperature effects on conidia germination capacity were also evaluated. The experiments were done in randomized complete block designs, in factorial arrangements (isolates x treatments - substrates, containers, temperatures and light regimes), with four replicates. In general, parboiled rice and polypropylene bags provided the best development of the fungus. Complete darkness and 6 hours of light increased mycelial growth, whereas continuous light favored sporulation. All tested temperatures favored the cultures of the fungus, except 31ºC. Temperatures between 19 and 25ºC ensure spore germination of more than 76%.

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Este trabalho foi desenvolvido em um pomar comercial do Pólo Agrícola Mossoró-Assu, localizado no município de Assu-RN. Teve como objetivo caracterizar e determinar o melhor estádio de maturação para a colheita de mangas 'Tommy Atkins' destinadas ao mercado Europeu. Os frutos foram marcados e avaliados aos 82 (E1), 89 (E2), 96 (E3) e 103 (E4) dias após a floração plena (DFP) e no estádio de colheita comercial (EC)., As avaliações foram feitas por ocasião da colheita e após 21 dias de armazenamento refrigerado (13 ± 1° C e 99 % UR). As variáveis analisadas foram cor da casca e da polpa do fruto, perda de massa, firmeza, sólidos solúveis totais (SST), acidez total titulável (ATT), relação SST/ATT, açúcares solúveis totais (AST), amido e atividade respiratória. Observou-se que, os picos climatéricos ocorreram aos 10 dias após a colheita nos frutos colhidos no estádio E2 e aos 7 dias nos colhidos nos estádios E3 e EC. Os frutos colhidos nos estádios E2, E3, E4 e EC amadureceram normalmente após 21 dias de armazenamento refrigerado. Sendo que os colhidos nos estádios E3 e EC se apresentaram muito semelhantes e alcançaram melhor qualidade, indicando que a colheita pode ser realizada nesses estádios, e que o período de 96 DFP pode ser considerado como mais um indicador do ponto de colheita.

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This paper seeks to explore a survey of consumers in Spain. The survey explores the attributes of quality that consumers are seeking and promotion of grapes via "quality" marks, which are indicators of possible ways to increase demand. The reason consumers are switching to other foods, such as dairy based snacks, is that grapes are not easy to eat, can be unreliable in terms of their quality attributes, and their price more variable. Consumers are also generally unaware of the marks quality currently used.

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Este trabalho foi realizado com o objetivo de identificar índices de maturação para o ponto ideal de colheita, de maçãs 'Daiane', destinadas a longos períodos de armazenamento. Maçãs foram colhidas semanalmente, em dois pomares comerciais, no período de 113 a 149 dias após a plena floração (DAPF), e armazenadas por 180 ou 240 dias a 0,7ºC, em atmosfera controlada. Medidas do estádio de maturação e da qualidade das maçãs foram realizadas um dia após a colheita e após a armazenagem. Atributos da aparência (cor vermelha) e sabor (relação açúcar/acidez) indicaram que a qualidade de maçãs 'Daiane', na colheita, é máxima quando colhidas 149 DAPF. No entanto, medidas da firmeza da polpa e da qualidade sensorial, realizadas após a armazenagem, indicaram que o período ideal de colheita de maçãs 'Daiane', destinadas a longos períodos de armazenagem, não deve estender-se além dos 136 DAPF. Maçãs 'Daiane' devem ser colhidas a partir de 121 DAPF para que mais da metade dos frutos tenham mais de 75% da superfície avermelhada. Desta maneira, o período ideal de colheita de maçãs 'Daiane', destinadas a longos períodos de armazenagem, ocorreu entre 121 e 136 DAPF no pomar 1, e entre 129 e 136 DAPF no pomar 2. No período ideal de colheita (121 a 136 DAPF), maçãs 'Daiane' apresentaram, um dia após a colheita, firmeza de 67 a 74 N, SS de 11,5 a 13 %, AT de 0,26% a 0,34%, índice de amido de 4,6 a 7,9 e índice de cor de fundo da epiderme de 2,6 a 4,0.

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A aplicação de coberturas comestíveis em frutas e hortaliças deve ser precedida de testes que busquem a formulação que melhor se adapta àquele produto. O objetivo deste trabalho foi determinar a composição ideal da cobertura comestível à base de cera de carnaúba adicionada de prebiótico a ser aplicada em uvas variedade Thompson, armazenadas sob refrigeração. Após a seleção, os frutos foram higienizados e procedeu-se à aplicação de soluções aquosas de cera de carnaúba adicionadas de Fruto-oligossacarídeo (FOS). Foram testadas treze formulações, utilizando as combinações de 50; 33; 25 e 0% (v/v) de cera de carnaúba e 30; 20; 10 e 0% do FOS (p/v). Durante 25 dias, foram avaliados parâmetros de textura, físicoquímicos e físicos. Os parâmetros de textura avaliados sofreram alterações durante o período do estudo, mas sem evidências de terem sofrido interferência das coberturas aplicadas. As formulações que se mostraram mais promissoras para futuras aplicações comerciais foram dos tratamentos B (50% de cera, 20% de FOS), K (25% de cera, 10% de FOS) e L (25% de cera, 0% de FOS).

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A Comissão Nacional de Residência Médica, em 2003, estabeleceu novos critérios para o credenciamento de programas de Residência Médica em Radiologia e Diagnóstico por Imagem. Apesar dessas normas representarem um avanço no treinamento do residente, outras competências e habilidades específicas deverão ser desenvolvidas no sentido de acompanhar o rápido desenvolvimento técnico e científico, e para atender as novas exigências do mercado de trabalho. Os autores apresentam as principais competências e habilidades que complementam a formação do radiologista, sugerindo modificação nos atuais programas para que os residentes possam adquiri-las.