921 resultados para Cretáceo inferior


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In order to improve the tracking and erosion performance of outdoor polymeric silicone rubber (SR) insulators used in HV power transmission lines, micron sized inorganic fillers are usually added to the base SR matrix. In addition, insulators used in high voltage dc transmission lines are designed to have increased creepage distance to mitigate the tracking and erosion problems. ASTM D2303 standard gives a procedure for finding the tracking and erosion resistance of outdoor polymeric insulator weathershed material samples under laboratory conditions for ac voltages. In this paper, inclined plane (IP) tracking and erosion tests similar to ASTM D2303 were conducted under both positive and negative dc voltages for silicone rubber samples filled with micron and nano sized particles to understand the phenomena occurring during such tests. Micron sized Alumina Trihydrate (ATH) and nano sized alumina fillers were added to silicone rubber matrix to improve the resistance to tracking and erosion. The leakage current during the tests and the eroded mass at the end of the tests were monitored. Scanning Electron Microscopy (SEM) and Energy dispersive Xray (EDX) studies were conducted to understand the filler dispersion and the changes in surface morphology in both nanocomposite and microcomposite samples. The results suggest that nanocomposites performed better than microcomposites even for a small filler loading (4%) for both positive and negative dc stresses. It was also seen that the tracking and erosion performance of silicone rubber is better under negative dc as compared to positive dc voltage. EDX studies showed migration of different ions onto the surface of the sample during the IP test under positive dc which has led to an inferior performance as compared to the performance under negative dc.

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This paper deals with preparation of nanocomposites using modified nanoclay (organoclay) and polypropylene (PP), with, and without compatibilizer (m-TMI-g-PP) to study the effects of modified nanoclay and compatibilizer on viscoelastic properties. Nanocomposites were prepared in two steps; compounding of master batch of nanoclay, polypropylene and m-TMI-g-PP in a torque rheometer and blending of this master-batch with polypropylene in a twin-screw extruder in the specific proportions to yield 3-9% nanoclay by weight in the composite. Dynamic Mechanical Analysis (DMA) tests were carried out to investigate the viscoelastic behavior of virgin polypropylene and nanocomposites. The dynamic mechanical properties such as storage modulus (E'), loss modulus (E `') and damping coefficient (tand) of PP and nano-composites were investigated with and without compatibilizer in the temperature range of -40 degrees C to 140 degrees C at a step of 5 degrees C and frequency range of 5 Hz to 100 Hz at a step of 10 Hz. Storage modulus and loss modulus of the nano-composites was significantly higher than virgin polypropylene throughout the temperature range. Storage modulus of the composites increased continuously with increasing nano-content from 3% to 9%. Composites prepared with compatibilizer exhibited inferior storage modulus than the composites without compatibilizer. Surface morphology such as dispersion of nanoclay in the composites with and without compatibilizer was analyzed through Atomic Force Microscope (AFM) that explained the differences in viscoelastic behavior of composites. (C) 2011 Elsevier Ltd. All rights reserved.

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Multilayers of poly(diallyldimethylammonium chloride) (PDDA) and citrate capped Au nanoparticles (AuNPs) anchored on sodium 3-mercapto-1-propanesulfonate modified gold electrode by electrostatic layer-by-layer assembly (LbL) technique are shown to be an excellent architecture for the direct electrochemical oxidation of As(III) species. The growth of successive layers in the proposed LbL architecture is followed by atomic force microscopy, UV-vis spectroscopy, quartz crystal microbalance with energy dissipation, and electrochemistry. The first bilayer is found to show rather different physico-chemical characteristics as compared to the subsequent bilayers, and this is attributed to the difference in the adsorption environments. The analytical utility of the architecture with five bilayers is exploited for arsenic sensing via the direct electrocatalytic oxidation of As(III), and the detection limit is found to be well below the WHO guidelines of 10 ppb. When the non-redox active PDDA is replaced by the redoxactive Os(2,2'-bipyridine)(2)Cl-poly(4-vinylpyridine) polyelectrolyte (PVPOs) in the LbL assembly, the performance is found to be inferior, demonstrating that the redox activity of the polyelectrolyte is futile as far as the direct electro-oxidation of As(III) is concerned. (C) 2012 Elsevier Inc. All rights reserved.

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We study the orbital modulation of X-rays from Cyg X-3, using data from Swift, INTEGRAL and RXTE. Using the wealth of data presently available and an improved averaging method, we obtain energy-dependent folded and averaged light curves with unprecedented accuracy. We find that above similar to 5?keV the modulation depth decreases with increasing energy, which is consistent with the modulation being caused by both boundfree absorption and Compton scattering in the stellar wind of the donor, with minima corresponding to the highest optical depth, which occurs around the superior conjunction. We find a decrease of the depth below similar to 3?keV, which appears to be due to re-emission of the absorbed continuum by the wind in soft X-ray lines. Based on the shape of the folded light curves, any X-ray contribution from the jet in Cyg X-3, which emits ?-rays detected at energies >0.1?GeV in the soft spectral states, is found to be minor up to similar to 100?keV. This implies the presence of a rather sharp low-energy break in the jet MeV-range spectrum. We also calculate phase-resolved RXTE X-ray spectra and show that the difference between the spectra corresponding to phases around superior and inferior conjunctions can indeed be accounted for by the combined effect of boundfree absorption in an ionized medium and Compton scattering.

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We analyze the spectral zero-crossing rate (SZCR) properties of transient signals and show that SZCR contains accurate localization information about the transient. For a train of pulses containing transient events, the SZCR computed on a sliding window basis is useful in locating the impulse locations accurately. We present the properties of SZCR on standard stylized signal models and then show how it may be used to estimate the epochs in speech signals. We also present comparisons with some state-of-the-art techniques that are based on the group-delay function. Experiments on real speech show that the proposed SZCR technique is better than other group-delay-based epoch detectors. In the presence of noise, a comparison with the zero-frequency filtering technique (ZFF) and Dynamic programming projected Phase-Slope Algorithm (DYPSA) showed that performance of the SZCR technique is better than DYPSA and inferior to that of ZFF. For highpass-filtered speech, where ZFF performance suffers drastically, the identification rates of SZCR are better than those of DYPSA.

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In this paper, we analyze the coexistence of a primary and a secondary (cognitive) network when both networks use the IEEE 802.11 based distributed coordination function for medium access control. Specifically, we consider the problem of channel capture by a secondary network that uses spectrum sensing to determine the availability of the channel, and its impact on the primary throughput. We integrate the notion of transmission slots in Bianchi's Markov model with the physical time slots, to derive the transmission probability of the secondary network as a function of its scan duration. This is used to obtain analytical expressions for the throughput achievable by the primary and secondary networks. Our analysis considers both saturated and unsaturated networks. By performing a numerical search, the secondary network parameters are selected to maximize its throughput for a given level of protection of the primary network throughput. The theoretical expressions are validated using extensive simulations carried out in the Network Simulator 2. Our results provide critical insights into the performance and robustness of different schemes for medium access by the secondary network. In particular, we find that the channel captures by the secondary network does not significantly impact the primary throughput, and that simply increasing the secondary contention window size is only marginally inferior to silent-period based methods in terms of its throughput performance.

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Among various biologically compatible materials, hydroxyapatite (HA) has excellent bioactivity/osteointegration properties and therefore has been extensively investigated for biomedical applications. However, its inferior fracture toughness limits the wider applications of monolithic HA as a load-bearing implant. To this end, HA-based biocomposites have been developed to improve their mechanical properties (toughness and strength) without compromising biocompatibility. Despite significant efforts over last few decades, the toughness of HA-based composites could not be enhanced beyond 1.5-2 MPa m(1/2), even when measured using indentation techniques. In this perspective, the present work demonstrates how spark plasma sintering can be effectively utilized to develop hydroxyapatite titanium (HA-Ti) composites with varying amounts of Ti (5, 10 and 20 wt.%) with extremely high single edge V-notch beam fracture toughness (4-5 MPa m(1/2)) along with a good combination of elastic modulus and flexural strength. Despite predominant retention of HA and Ti, the combination of critical analysis of X-ray diffraction and transmission electron microscopy investigation confirmed the formation of the CaTi4(PO4)(6) phase with nanoscale morphology at the HA/Ti interface and the formation of such a phase has been discussed in reference to possible sintering reactions. The variations in the measured fracture toughness and work of fracture with Ti addition to the HA matrix were further rationalized using the analytical models of crack bridging as well as on the basis of the additional contribution from crack deflection. The present work opens up the opportunity to further enhance the toughness beyond 5 MPa m(1/2) by microstructural designing with the desired combination of toughening phases. (C) 2013 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.

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Residue depth accurately measures burial and parameterizes local protein environment. Depth is the distance of any atom/residue to the closest bulk water. We consider the non-bulk waters to occupy cavities, whose volumes are determined using a Voronoi procedure. Our estimation of cavity sizes is statistically superior to estimates made by CASTp and VOIDOO, and on par with McVol over a data set of 40 cavities. Our calculated cavity volumes correlated best with the experimentally determined destabilization of 34 mutants from five proteins. Some of the cavities identified are capable of binding small molecule ligands. In this study, we have enhanced our depth-based predictions of binding sites by including evolutionary information. We have demonstrated that on a database (LigASite) of similar to 200 proteins, we perform on par with ConCavity and better than MetaPocket 2.0. Our predictions, while less sensitive, are more specific and precise. Finally, we use depth (and other features) to predict pK(a)s of GLU, ASP, LYS and HIS residues. Our results produce an average error of just <1 pH unit over 60 predictions. Our simple empirical method is statistically on par with two and superior to three other methods while inferior to only one. The DEPTH server (http://mspc.bii.a-star.edu.sg/depth/) is an ideal tool for rapid yet accurate structural analyses of protein structures.

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Hydroxyapatite (HA) is widely being researched for hard tissue replacement for its good osseointegration and biocompatibility property. However, the inferior antibacterial property of HA often results in infection at host site, and this leads to rejection of the implant. The antibacterial property of silver (Ag) is well known and in the past decade or so, the application of Ag is reinvented in medicinal applications like catheters, vascular grafts and orthopaedic implants. In this respect, the present work reports the synthesis of Ag doped HA using hot pressing in argon atmosphere. This work also reports the effect of HA-Ag composition on bacterial colonisation during in vitro study. The bactericidal property of Ag doped HA has been investigated against magnetotactic bacteria, a `magnetite' containing bacteria. Magnetotactic bacteria were seeded onto pellets, and the adhesion of bacteria was evaluated using scanning electron microscopy. It was confirmed that incorporation of Ag in HA leads to improved bactericidal property.

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Presently Li/MnO2 is one of the widely used primary battery for a variety of applications. As the global resources for Na are plentiful in relation to those for Li, Na/MnO2 primary battery is expected to be an economical, viable alternate to Li/MnO2 system. But marginal inferior properties of Na/MnO2, which arise due to the differences in properties between Li and Na, are inevitable. In the present work, Na/MnO2 and Li/MnO2 laboratory scale primary cells in non-aquebus electrolytes are assembled and their electrochemical properties are studied in similar experimental conditions. The MnO2 used for these studies is prepared from KMnO4 and it is in amorphous state. The discharge behavior of Na/MnO2 cell is similar to that of Li/MnO2 cell, but with nominal voltage less by about 0.35 V, as expected. The specific capacity of amorphous MnO2 is 300 mAh g(-1) in both Na/MnO2 and Li/MnO2 cells. On heating the as prepared amorphous MnO2 at temperature range 300-800 degrees C, it converts to crystalline ct-MnO2. The capacity of crystalline MnO2 is significantly less than the amorphous MnO2. The results suggest that Na/MnO2 is a viable, economical alternate to Li/MnO2 primary cell. (C) The Author(s) 2015. Published by ECS. All rights reserved.

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Plasma electrolytic oxidation coatings were produced on AM50 Mg alloy in alkaline phosphate based electrolyte with montmorillonite clay additives employing current densities of 30, 60, and 120 mA/cm(2). The effect of current density on the microstructure and corrosion properties of the coating was investigated. The clay additives got melted and reactively incorporated into the coating forming an amorphous phase, at all the current densities. However, the coating was predominantly amorphous only at 30 mA/cm(2) and with increasing current density, increasing fractions of crystalline phases were formed. Higher current densities resulted in increased thickness of the coating, but reduced the compactness of the coatings. Electrochemical impedance spectroscopy tests in 0.5 wt.% (0.08 M) and 3.5 wt.% (0.6 M) NaCl solution revealed that the coatings processed at 30 mA/cm(2) exhibited a relatively better initial corrosion resistance owing to its relatively defect-free barrier layer and compactness of the coating. However, the presence of amorphous phases in significant amounts and lack of MgO in the coating resulted in increased rate of dissolution of the coatings and degradation of corrosion resistance. Coatings produced at higher current densities exhibited initial inferior corrosion resistance due to a more defective barrier layer and increased porosity in pore band and outer porous layer. However, the increased amount of crystalline phases and an increased amount of MgO, which resisted dissolution, counterbalanced the negative effects of defective barrier and increased porosity resulting in a relatively lower rate of the degradation of the corrosion resistance. Thus, the corrosion resistance of all the coatings continuously decreased with time and became similar after prolonged immersion in NaCl solution. Increasing current density, therefore, did not prove to be beneficial for the improvement of the corrosion performance of the PEO coatings. (C) 2016 Elsevier B.V. All rights reserved.

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El objetivo fue evaluar el establecimiento de tres especies forestales de valor comercial, Swietenia humilis, Cedrela odorata y Pachira quinata, como medida de enriquecimiento del bosque seco secundario de Nandaime, como medida de enriquecimiento del bosque seco. Se establecieron tres parcelas cuadradas con área de 625 m² (25 m x 25 m) y un espaciamiento de 3 m x 3 m entre plantas y líneas. Se plantaron 15 plantas por especie para un total de 45 individuos por parcelas, cada parcela con un porcentaje de cobertura de dosel correspondiente a: 0 a 20%, 20 a 50% y 50% a más. Las variables medidas fueron sobrevivencia, daños por insectos. Se obtuvo un porcentaje general de sobrevivencia de 53%, C. odorata es la especie que presentó valores más bajos (0%) en la cobertura0 a 20% y mayor de 50, los principales daños causados fueron notorios en los meses secos al final del período evaluado, principalmente en la cobertura mayor a 50%. Con los resultados obtenidos de las tres especies evaluadas se concluye que las especies P. quinata y Swietenia humilis, pueden utilizarse en plantaciones de enriquecimiento forestal con cobertura inferior al a 50% mientras C. odorata siempre y cuando se establezca un sistema de monitoreo y control de agentes de agentes que incrementan el riesgo de mortalidad de la especie.

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El presente trabajo tuvo como objetivo, evaluar en términos biológicos y económicos el efecto de diferentes distancias de siembra sobre la producción de biomasa en base verde y seca del frijol terciopelo (Stizolobium deeringianum) El estudio se llevó a cabo en el Departamento de Masaya, en la finca "La Antena" ubicada al oeste de la ciudad de Masaya, para el estudio se utilizó un diseño de bloques completos al azar (BCA). Los resultados evidencian que las diferentes distancias de siembra, tuvieron efecto estadísticamente significativo sobre la producción de biomasa de frijol terciopelo en base verde y seca. Los mayores valores en cuanto a producción de biomasa corresponden a aquellos tratamientos cuya distancias entre planta son iguales a 0.25 m y 0.50 m, obteniendose 15.3 ton/ha y 12.3 ton/ha en base verde respectivamente y 2.43 ton/ha y 2.025 ton/ha en base seca respectivamente. En lo que respecta a la capacidad de rebrote se demostró que a una altura de corte inferior a 10 cm el frijol terciopelo no es eficiente, ya que en ninguno de los diferentes tratamientos una vez realizado el primer corte se encontraron plantas en estado de rebrote. De todos los tratamientos evaluados, el que resulta más económico en cuanto a costos de producción es el tratamiento cuya distancia entre planta es igual a 1.0 m, ya que en este se utiliza menos semilla en la siembra; pero aplicando el metodo de presupuestos parciales en base a la producción de biomasa obtenida y los posibles beneficios que se pueden obtener resultó que los tratamientos más rentables económicamente son aquellos en los cuales las distancias entre planta oscilan entre 0.25 m y 0.50 m. ya que con estos se obtiene un mayor beneficio económico.

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La savia de las plantas denominada para efecto de este Proyecto de investigación Jugo ó vinagre de Madera , es el punto de partida y uno de los descubrimientos mas acertados en el campo de la investigación de nuevas tecnologías para el mejoramiento productivo de todos los cultivos. Esta investigación, ha conllevado un poco más de nueve años de observación y dos años de experimentación e investigación a nivel de los laboratorios. El documento está estructurado en cuatro aspectos: El Primero describe el procedimiento para la extracción de la savia de las plantas, como se denomina en la práctica Jugo ó vinagre de madera, en un segundo plano, se describe todo el proceso de investigación ó validación de la tecnología y el estudio mismo de sus componentes macros y micro elementos y los componentes estructurales de la sustancia. En un tercer plano está el análisis comparativo de los resultados y su relación directa con cada variable de la investigación. Por tratarse de una sustancia nueva y tan novedosa en términos prácticos, el estudio estuvo dirigido al descubrimiento de sus componentes orgánicos e inorgánicos, más que su funcionamiento lo que se ha venido observando por mucho más tiempo en forma práctica. Un cuarto aspecto abordado, se describe una exposición de resultados presentadas por el equipo investigador y particularmente a por los campesinos participantes con los que se llevó este proyecto. Los campesinos beneficiarios y experimentadores exponen a productores de otras comunidades los resultados productivos y comportamientos interesantes en términos de reacciones de las plantas a sobre dosis, desarrollo vegetativos por encimas de rangos normales de crecimientos y rendimientos propiamente dichos. Este cuarto aspecto es abordado mediante una memoria del día de campo celebrado a nivel institucional y a todas las comunidades beneficiadas por el Proyecto Auspiciado por FUNICA e INPRHU. En el día de campo se tuvo la oportunidad de observar plantas de café manejadas manejas de forma tradicional (químicamente) y plantas áreas y surcos manejados con jugo de madera en donde se puede observar la diferencia de crecimiento y reacciones bioquímicas de las en torno al desarrollo vegetativo, floración y 5 fructificación a escasos (8) ocho meses no plantas que poseen un tamaño inferior al metro y que los frutos se encuentran a una altura no mayor a los diez centímetros. Finalmente de expresan las conclusiones y recomendaciones en torno a esta investigación y posibles investigaciones en torno a tema de fertilización orgánica tomando como base el Jugo o Vinagre de madera.

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Espinoza Gutiérrez, LF; Matey Lechado, MS. 2009. Evaluación de los factores del proceso de incubación que intervienen en la ventana de nacimiento de los pollitos en la Incubadora PIPASA-Nicaragua, en el periodo de Enero a Julio ,2009. Tesis MV. En el grado de licenciatura.Managua, NI Facultad de Ciencia Animal de la Universidad Nacional Agraria (UNA).76p. Fueron evaluados los factores de exposición del huevo: temperatura,humedad relativa, volteo,tiempo de almacenamiento del huevo y edad de la reproductora, el efecto de las variaciones de estos factores sobre la calidad de los pollitos en el proceso de incubación, sobre la ventana de nacimiento de los pollitos, también se identificaron las principales muertes embrionarias (embriopatías) en la planta de Incubación PIPASA Nicaragua. Se realizaron diecisiete experimentos durante: la recepción, selección, y encharolado, almacenamiento en frío, atemperado o precalentamiento, carga a la maquina incubadora, ovocoscopia o miraje, toma de peso, trasferencia a la maquina nacedora y selección de los pollitos por su calidad. Se identificaron tres zonas (Z1, Z2 y Z3) dentro de la máquina; se tomaron tres charolas (pruebas) con huevos en las posiciones de: superior,media e inferior; después de ser transferidas se elaboro un horario de inspección de nacimiento durante las 48 horas (43, 38, 33, 23, y 13) de incubación en la nacedora. Se midieron los factores ambientales (temperatura, humedad) con huevos sensores (datalogger) para monitorear las fluctuaciones de los mismos cada cinco minutos. Una vez sacado el pollito se clasifico según su calidad (A, B) y se realizo la necropsia a huevos no picados para identificar las muertes embrionarias. Mediante ANDEVA se determino el efecto ocasionado por la ubicación (posición y zona) en el proceso de incubación sobre las variables dependientes (pollos nacidos), observando que el inicio del nacimiento (33 h antes del saque) fue de 3.76 % para las bandejas superiores, 1,2% para las bandejas medias y 0.25% para las bandejas inferiores durante la IV inspección, posteriormente (23 hantes del saque) fue 55.54%, 36.62% y 18.67%, respectivamente; para la V inspección, a las 13 horas,fue de un 86.35%, 82.10% y por 74.31% posición de bandejas (VI inspección).Durante la VII inspección, momento del saque, proyectaron un 88.82% para la posición superior,87.91% posición media,81.76% posición inferior.En lo referente al efecto de la zona se encontró que la zona 3 tuvo un valor significativo(P< 0.001)sobre el porcentaje de pollos nacidos de un 58% en comparación con la zona1 y en la zona 2 que ambas obtuvieron 54 %.Al evaluar la edad de la reproductora se observó que en reproductoras menores de 40 semanas de edad el tiempo de incubación fue mayor (497.5 horas); para lotes de 41 a 49 semanas de edad fue de 493 horas promedios y de 494 horas para los lotes mayores de 50 a 54 semanas. El volteo del huevo fértil no influyó sobre la ventana de nacimiento, puesto que este se realizaba de forma adecuada tanto en frecuencia, ángulo, eje y plano de rotación. Existe una relación directa entre la posición de la charola y la calidad del pollo, encontrando mayor calidad en las bandejas superiores con un 28.65% de pollos clase A con relación a las medias e inferiores de 24. 40% y 23.18%, respectivamente. Las principales embriopatías encontradas en la necropsia corresponden a malas posiciones (38%), un 27% de huevos infértiles, 17% de embriones vivos , 5% de embriones con deformidades y 5% de huevos contaminados (huevo bomba)y la edad de mortalidad mas alta fue 18-21 días conun 30%.