973 resultados para 420


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Pure cubic zirconia (ZrO2) nanopowder is prepared for the first time by simple low temperature solution combustion method without calcination. The product is characterized by Powder X-ray Diffraction (PXRD), Scanning Electron Microscopy (SEM), Transmission Electron Microscopy (TEM), Fourier Transform Infra Red spectroscopy (FTIR) and Ultraviolet-Visible spectroscopy (UV-Vis). The PXRD showed the formation of pure stable cubic ZrO2 nanopowders with average crystallite size ranging from 6 to 12 nm. The lattice parameters were calculated from Rietveld refinement method. SEM micrograph shows fluffy, mesoporous, agglomerated particles with large number of voids. TEM micrograph shows honey comb like arrangement of particles with particle size similar to 10 nm. The PL emission spectrum excited at 210 nm and 240 nm consists of intense bands centered at similar to 365 and similar to 390 nm. Both the samples show shoulder peak at 420 nm, along with four weak emission bands at similar to 484, similar to 528, similar to 614 and similar to 726 nm. TL studies were carried out pre-irradiating samples with gamma-rays ranging from 1 to 5 KGy at room temperature. A well resolved glow peak at 377 degrees C is recorded which can be ascribed to deep traps. With increase in gamma radiation there is linear increase in TL intensity which shows the possible use of ZrO2 as dosimetric material. (C) 2013 Elsevier B.V. All rights reserved.

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Self catalytic growth of Indium Oxide (In2O3) nanowires (NWs) have been grown by resistive thermal evaporation of Indium (In) in the presence of oxygen without use of any additional metal catalyst. Nanowires growth took place at low substrate temperature of 370-420 degrees C at an applied current of 180-200 A to the evaporation boat. Morphology, microstructures, and compositional studies of the grown nanowires were performed by employing field emission scanning electron microscopy (FESEM), X-Ray diffraction (XRD), transmission electron microscopy (TEM), energy dispersive X-ray spectroscopy (EDS) and X-ray photoelectron spectroscopy (XPS) respectively. Nanowires were uniformly grown over the entire Si substrate and each of the nanowire is capped with a catalyst particle at their end. X-ray diffraction study reveals the crystalline nature of the grown nanowires. Transmission electron microscopy study on the nanowires further confirmed the single crystalline nature of the nanowires. Energy dispersive X-ray analysis on the nanowires and capped nanoparticle confirmed that Indium act as catalyst for In2O3 nanowires growth. A self catalytic Vapor-Liquid-Solid (VLS) growth mechanism was responsible for the growth of In2O3 nanowires. Effect of oxygen partial pressure variation and variation of applied currents to the evaporation boat on the nanowires growth was systematically studied. These studies concluded that at oxygen partial pressure in the range of 4 x 10(-4), 6 x 10(-4) mbar at applied currents to the evaporation boat of 180-200 A were the best conditions for good nanowires growth. Finally, we observed another mode of VLS growth along with the standard VLS growth mode for In2O3 nanowires similar to the growth mechanism reported for GaAs nanowires.

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ZnO:Eu (0.1 mol%) nanopowders have been synthesized by auto ignition based low temperature solution combustion method. Powder X-ray diffraction (PXRD) patterns confirm the nanosized particles which exhibit hexagonal wurtzite structure. The crystallite size estimated from Scherrer's formula was found to be in the range 35-39 nm. Scanning electron microscopy (SEM) and transmission electron microscopy (TEM) studies reveal particles are agglomerated with quasi-hexagonal morphology. A blue shift of absorption edge with increase in band gap is observed for Eu doped ZnO samples. Upon 254 nm excitation, ZnO:Eu nanopowders show peaks in regions blue (420-484 nm), green (528 nm) and red (600 nm) which corresponds to both Eu2+ and Eu3+ ions. The electron paramagnetic resonance (EPR) spectrum exhibits a broad resonance signal at g= 4.195 which is attributed to Eu2+ ions. Further, EPR and thermo-luminescence (TL) studies reveal presence of native defects in this phosphor. Using TL glow peaks the trap parameters have been evaluated and discussed. (C) 2014 Elsevier B.V. All rights reserved.

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Mode I fracture experiments were conducted on brittle bulk metallic glass (BMG) samples and the fracture surface features were analyzed in detail to understand the underlying physical processes. Wollner lines, which result from the interaction between the propagating crack front and shear waves emanating from a secondary source, were observed on the fracture surface and geometric analysis of them indicates that the maximum crack velocity is similar to 800 m s(-1), which corresponds to similar to 0.32 times the shear wave speed. Fractography reveals that the sharp crack nucleation at the notch tip occurs at the mid-section of the specimens with the observation of flat and half-penny-shaped cracks. On this basis, we conclude that the crack initiation in brittle BMGs is stress-controlled and occurs through hydrostatic stress-assisted cavity nucleation ahead of the notch tip. High magnification scanning electron and atomic force microscopies of the dynamic crack growth regions reveal highly organized, nanoscale periodic patterns with a spacing of similar to 79 nm. Juxtaposition of the crack velocity with this spacing suggests that the crack takes similar to 10(-10) s for peak-to-peak propagation. This, and the estimated adiabatic temperature rise ahead of the propagating crack tip that suggests local softening, is utilized to critically discuss possible causes for the nanocorrugation formation. Taylor's fluid meniscus instability is unequivocally ruled out. Then, two other possible mechanisms, viz. (a) crack tip blunting and resharpening through nanovoid nucleation and growth ahead of the crack tip and eventual coalescence, and (b) dynamic oscillation of the crack in a thin slab of softened zone ahead of the crack-tip, are critically discussed. (C) 2014 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.

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Six new mixed-ligand cobalt(III) complexes of formulation Co(N-N)(2)(O-O)](ClO4)(2) (1-6), where N-N is a N,N-donor phenanthroline base, namely, 1,10-phenanthroline (phen in 1, 2), dipyrido3,2-d:2',3'-f] quinoxaline (dpq in 3, 4), and dipyrido3,2-a:2',3'-c]phenazine (dppz in 5, 6), O-O is acetylacetonate (acac in 1, 3, 5) or curcumin (bis(4-hydroxy-3-methoxyphenyl)-1,6-diene-3,5-dione, cur in 2, 4, 6), have been synthesized and characterized. The X-ray crystal structures of complex 1 (as PF6- salt, 1a) and 3 show distorted octahedral geometries formed by the CoN4O2 core. The complexes 1, 3 and 5 having the simple acac ligand are prepared as control species to understand the role of curcumin. The optimized geometries and the frontier orbitals of the curcumin complexes 2, 4, and 6 are obtained from the DFT calculations. The complexes 2, 4, and 6 having the photoactive curcumin moiety display an absorption band in the visible region near 420 nm and show remarkable photocytotoxicity in HeLa cancer cells with respective IC50 values of 7.4 mu M, 5.1 mu M and 1.6 mu M while being much less toxic in dark. MTT assay using complex 6 shows that it is not significantly photocytotoxic to MCF-10A normal cells. The control complexes having the acac ligand are non-toxic both in the presence and absence of light. The cell death is apoptotic in nature and triggered by the photogeneration of reactive oxygen species. Fluorescence imaging experiments on HeLa cells reveals that complex 6 accumulated primarily inside the mitochondria. Human serum albumin (HSA) binding experiments show that the complexes bind HSA with good affinity, but 6 binds with the highest affinity, with a K-b value of 9.8 x 10(5) M-1. Thus, complex 6 with its negligible toxicity in the dark and in normal cells but remarkable toxicity in visible light holds significant photochemotherapeutic potential.

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The effects of two major electrodeposition process conditions, electrolyte bath temperature and current density, on the microstructure and crystallographic texture of pure tin coatings on brass and, ultimately, on the extent of whisker formation have been examined. The grain size of the deposited coatings increased with increasing electrolyte bath temperature and current density, which significantly affected the dominant texture: (211) or (420) was the dominant texture at low current densities whereas, depending on deposition temperature, (200) or (220) became the dominant texture at high current densities. After deposition, coatings were subjected to different environmental conditions, for example isothermal aging (room temperature, 50A degrees C, or 150A degrees C) for up to 90 days and thermal cycling between -25A degrees C and 85A degrees C for 100 cycles, and whisker growth was studied. The Sn coatings with low Miller index planes, for example (200) and (220), and with moderate aging temperature were more prone to whiskering than coating with high Miller index planes, for example (420), and high aging temperature. A processing route involving the optimum combination of current density and deposition temperature is proposed for suppressing whisker growth.

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One-dimensional (1D) zinc oxide (ZnO) hexagonal rods have been successfully synthesized by surfactant free hydrothermal process at different temperatures. It can be found that the reaction temperature play a crucial role in the formation of ZnO uniform hexagonal rods. The possible formation processes of 1-D ZnO hexagonal rods were investigated. The zinc hydroxide acts as the morphology-formative intermediate for the formation of ZnO nanorods. Upon excitation at 325 nm, the sample prepared at 180 degrees C show several emission bands at 400 nm (similar to 3.10 eV), 420 nm (similar to 2.95 eV), 482 nm (similar to 2.57 eV) and 524 nm (similar to 2.36 eV) corresponding to different kind of defects. TL studies were carried out by pre-irradiating samples with gamma-rays ranging from 1 to 7 kGy at room temperature. A well resolved glow peak at similar to 354 degrees C was recorded which can be ascribed to deep traps. Furthermore, the defects associated with surface states in ZnO nano-structures are characterized by electron paramagnetic resonance. (C) 2014 Elsevier B.V. All rights reserved.

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Iron(III) complexes of pyridoxal (vitamin B6, VB6) or salicylaldehyde Schiff bases and modified dipicolylamines, namely, Fe(B)(L)](NO3) (15), where B is phenyl-N,N-bis((pyridin-2-yl)methyl)methanamine (phbpa in 1), (anthracen-9-yl)-N,N-bis((pyridin-2-yl)methyl)methanamine (anbpa in 2, 4) and (pyren-1-yl)-N,N-bis((pyridin-2-yl)methyl)methanamine (pybpa in 3, 5) (H2L1 is 3-hydroxy-5-(hydroxymethyl)-4-(((2-hydroxyphenyl)imino)methyl)-2-methylp yridine (13) and H2L2 is 2-(2-hydroxyphenyl-imino)methyl]phenol), were prepared and their uptake in cancer cells and photocytotoxicity were studied. Complexes 4 and 5, having a non-pyridoxal Schiff base, were prepared to probe the role of the pyridoxal group in tumor targeting and cellular uptake. The PF6 salt (1a) of complex 1 is structurally characterized. The complexes have a distorted six-coordinate FeN4O2 core where the metal is in the +3 oxidation state with five unpaired electrons. The complexes display a ligand to metal charge transfer band near 520 and 420 nm from phenolate to the iron(III) center. The photophysical properties of the complexes are explained from the time dependent density functional theory calculations. The redox active complexes show a quasi-reversible Fe(III)/Fe(II) response near -0.3 V vs saturated calomel electrode. Complexes 2 and 3 exhibit remarkable photocytotoxicity in various cancer cells with IC50 values ranging from 0.4 to 5 mu M with 10-fold lower dark toxicity. The cell death proceeded by the apoptotic pathway due to generation of reactive oxygen species upon light exposure. The nonvitamin complexes 4 and 5 display 3-fold lower photocytotoxicity compared to their VB6 analogues, possibly due to preferential and faster uptake of the vitamin complexes in the cancer cells. Complexes 2 and 3 show significant uptake in the endoplasmic reticulum, while complexes 4 and 5 are distributed throughout the cells without any specific localization pattern.

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Compared to our extensive knowledge about the navigation and homing abilities of ants and bees, we know rather little about these phenomena in social wasps. Here, we report the homing abilities of the tropical primitively eusocial wasp Ropalidia marginata and the factors that affect their homing success. To determine from how far these wasps can return to their nests, we transported foragers blindfold and released them at gradually increasing distances from their nests in four cardinal directions. Their homing success was determined by checking their presence on their nests on three consecutive nights. All foragers (56 individuals, 115 releases) returned back from an area of 0.73 +/- A 0.25 km(2) on the day of release (minimal homing area), whereas 83.8 % of the foragers (217 individuals, 420 releases) returned when we enlarged the area of release to 6.22 +/- A 0.66 km(2) around their nests (maximal homing area). Of 66 releases, no wasps returned from beyond the maximal homing area. The minimal homing area might be familiar to the foragers because they probably routinely forage in this area and the maximal homing area represents the maximum distances from which the wasps are capable of returning to their nests, with or without familiarity.

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Hydrogen, either in pure form or as a gaseous fuel mixture specie enhances the fuel conversion efficiency and reduce emissions in an internal combustion engine. This is due to the reduction in combustion duration attributed to higher laminar flame speeds. Hydrogen is also expected to increase the engine convective heat flux, attributed (directly or indirectly) to parameters like higher adiabatic flame temperature, laminar flame speed, thermal conductivity and diffusivity and lower flame quenching distance. These factors (adversely) affect the thermo-kinematic response and offset some of the benefits. The current work addresses the influence of mixture hydrogen fraction in syngas on the engine energy balance and the thermo-kinematic response for close to stoichiometric operating conditions. Four different bio-derived syngas compositions with fuel calorific value varying from 3.14 MJ/kg to 7.55 MJ/kg and air fuel mixture hydrogen fraction varying from 7.1% to 14.2% by volume are used. The analysis comprises of (a) use of chemical kinetics simulation package CHEMKIN for quantifying the thermo-physical properties (b) 0-D model for engine in-cylinder analysis and (c) in-cylinder investigations on a two-cylinder engine in open loop cooling mode for quantifying the thermo-kinematic response and engine energy balance. With lower adiabatic flame temperature for Syngas, the in-cylinder heat transfer analysis suggests that temperature has little effect in terms of increasing the heat flux. For typical engine like conditions (700 K and 25 bar at CR of 10), the laminar flame speed for syngas exceeds that of methane (55.5 cm/s) beyond mixture hydrogen fraction of 11% and is attributed to the increase in H based radicals. This leads to a reduction in the effective Lewis number and laminar flame thickness, potentially inducing flame instability and cellularity. Use of a thermodynamic model to assess the isolated influence of thermal conductivity and diffusivity on heat flux suggests an increase in the peak heat flux between 2% and 15% for the lowest (0.420 MW/m(2)) and highest (0.480 MW/m(2)) hydrogen containing syngas over methane (0.415 MW/m(2)) fueled operation. Experimental investigations indicate the engine cooling load for syngas fueled engine is higher by about 7% and 12% as compared to methane fueled operation; the losses are seen to increase with increasing mixture hydrogen fraction. Increase in the gas to electricity efficiency is observed from 18% to 24% as the mixture hydrogen fraction increases from 7.1% to 9.5%. Further increase in mixture hydrogen fraction to 14.2% results in the reduction of efficiency to 23%; argued due to the changes in the initial and terminal stages of combustion. On doubling of mixture hydrogen fraction, the flame kernel development and fast burn phase duration decrease by about 7% and 10% respectively and the terminal combustion duration, corresponding to 90%-98% mass burn, increases by about 23%. This increase in combustion duration arises from the cooling of the near wall mixture in the boundary layer attributed to the presence of hydrogen. The enhancement in engine cooling load and subsequent reduction in the brake thermal efficiency with increasing hydrogen fraction is evident from the engine energy balance along with the cumulative heat release profiles. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.

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Folivory, being a dietary constraint, can affect the social time of colobines. In the present study, we compared food items and activity budgets of two closely related species of colobines inhabiting South India, i.e. the Hanuman langur (Semnopithecus hypoleucos) and Nilgiri langur (Semnopithecus johnii), to determine whether folivory had an impact on social time in these species. Our study established that Nilgiri langurs were more folivorous than Hanuman langurs. Nilgiri langurs spent much less time on social activities, but more time on resting, although the social organization of S. hypoleucos was similar to that of the Nilgiri langur. The enforced resting time for fermentation of leafy food items may have reduced the time available for social interactions, which in turn affected the social time in Nilgiri langurs. By comparing the data from previous studies on other Hanuman langur species, we found that S. hypoleucos spent a similar amount of time on social activities as Semnopithecus entellus. Hence, the social behaviour of S. entellus and S. hypoleucos is phylogenetically highly conservative. (C) 2015 S. Karger AG, Basel

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Undoped and Cr (3% and 5%) doped CdS nanoparticles were synthesized by chemical co-precipitation method. The synthesized nanocrystalline particles are characterized by energy dispersive X-ray analysis (EDAX), scanning electron microscope (SEM), X-ray Diffraction (XRD), transmission electron microscopy (TEM), diffuse reflectance spectroscopy (DRS), photoluminescence (PL), Electron paramagnetic resonance (EPR), vibrating sample magnetometer (VSM) and Raman spectroscopy. XRD studies indicate that Cr doping in host CdS result a structural change from Cubic phase to mixed (cubic + hexagonal) phase. Due to quantum confinement effect, widening of the band gap is observed for undoped and Cr doped CdS nanoparticles compared to bulk CdS. The average particle size calculated from band gap values is in good agreement with the TEM study calculation and it is around 4-5 nm. A strong violet emission band consisting of two emission peaks is observed for undoped CdS nanoparticles, whereas for CdS:Cr nanoparticles, a broad emission band ranging from 420 nm to 730 nm with a maximum at similar to 587 nm is observed. The broad emission band is due to the overlapped emissions from variety of defects. EPR spectra of CdS:Cr samples reveal resonance signal at g = 2.143 corresponding to interacting Cr3+ ions. VSM studies indicate that the diamagnetic CdS nanoparticles are transform to ferromagnetic for 3% Cr3+ doping and the ferromagnetic nature is diminished with increasing the doping concentration to 5%. (C) 2015 Elsevier B.V. All rights reserved.

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El presente trabajo se realizó con el objetivo de evaluar exante la factibilidad técnica y financiera de inversiones propuestas por los mismos ganaderos en la zona de Muy muy, Matagalpa. El estudio se llevó a cabo en dos fases: Una fase preliminar de diagnóstico, en la que se determinó, la disponibilidad y uso actual de los recursos en las fincas, así como las propuestas planteadas por los productores, comprendiéndose en una sub-fase de ésta etapa preliminar un diagnóstico de las características generales de los canales de comercialización y precios de los productos agropecuarios generados por la actividad ganadera de la zona. La segunda fase comprendió el procesamiento y computación de la información. La información relativa a los recursos, se procesó para cada una de las fincas y en base a ello, se estimaron los diferentes parámetros técnicos y elementos fuentes de ingresos y egresos, elaborándose también las diferentes proyecciones de hato por finca, así mismo de disponibilidades de pastos, mano de obra e insumos. Para efectos de analizar tanto el uso eficiente de las pasturas como de los resultados financieros, las fincas se agruparon en cuatro dominios de recomendación en función de sus áreas. En los aspectos técnicos se determinó que la actividad de las fincas es la ganadería ya que en promedio, el 82.33% de las áreas totales por finca se destina a esta actividad, ocupando los pastos mejorados en promedio el 67.44% y un promedio de 32.56% los pastos naturales. Con el proyecto el área ganadera se incrementa en un promedio de 2.46%, pasando a representar los pastos mejorados un promedio de 92.65% y el natural el 7.35%, reduciéndose éste último en un promedio de 25.21%. Las cargas animales encontradas fluctuaron en un rango de 18.6 U.A./mz. a 268.3 U.A./mz. siendo éste en cinco de las nueve fincas superiores a las disponibilidades que resultan por tanto negativas en un rango de -36.3 a -3.8 U.A., con el proyecto las cargas animales se incrementan a valores comprendidos entre 54.2 y 456.5 U.A., resultando sin embargo las disponibilidades positivas en seis de las nueve fincas para el año décimo del proyecto en un rango comprendido entre +2.5 a +16.2 U.A., a excepción de tres fincas en las cuales los déficit reflejan valores entre -2.6 y -43.1 U.A. En lo que se refiere a los niveles de eficiencia en el aprovechamiento de las pasturas, las fincas La Palma y El Castaño resultaron ser las más eficientes, manteniendo sus niveles de aprovechamiento próximo al nivel óptimo de manera en periodo de años más prolongados. El número de cabezas de ganado encontrado por finca, fluctuó entre 20 y 290, como efecto de los proyectos el hato total tendría un incremento promedio anual de 7.5%, es decir 10.58 cabezas por año. La natalidad encontrada en promedio fue mortalidad de terneros 7.04%, descarte de vacas de 50.8%, 10.72% y relación vaca-toro 19:1. Para el año décimo de los los promedios de estos coeficientes alcanzan: 53.1%, mortalidad de terneros 4.46% y descarte de 19.55%. proyectos natalidad vientres. La edad de incorporación de vaquillas resultó entre 2.5 a 3 años. En la composición racial se encontró que predomina un alto encastamiento con razas europeas. La relación producción total por área en el año base resultó en promedio de 42.53 galones de leche/manzana y 52.68 kilogramos de carne manzana y para el ultimo año de los proyectos alcanzan en promedio los 67.56 galones de leche/manzana y 96.14 kilogramos de carne/manzana. La producción promedio de leche por época correspondió a 4 litros/vaca/día en el verano y 6 litros/vaca/día en invierno. Partiendo del promedio de éstos valores, el incremento anual de ésta producción con el proyecto alcanzarla en promedio el 7.3%. En el aspecto de ingresos en promedio la producción de leche aporta en el año base el 43.44%, la producción de carne 34.09%, la venta de otras categorías 12.5% y la agricultura el 9.95% de los ingresos totales. con el proyecto se presenta una recomposición en éstos, de manera que el aporte de la producción de leche alcanza el 46.99%, el de la carne 46.67% y la parte agrícola el 5.25%. En los gastos, en el año base en promedio, la mano de obra representa el mayor porcentaje con 54.63%, medios circulantes y servicios 37.94%, impuestos 7.4%, variando éstos para el año décimo a promedios de: 48.25%, 42.54% y 9.17% respectivamente, reflejándose un incremento en los gastos de medios circulantes y servicios en un promedio de 4.6% y 1.77% los gastos en impuestos. Los costos de producción por litro de leche en el año base, fluctuaron entre C$1.23 y C$1.61 y en el último año varian ligeramente a un rango entre C$0.87 y C$1.53. En el mercado de aspecto la leche de comercialización, el control del en el municipio está en posesión de los manteros, un segundo siendo la agente de Unión de Cooperativas de Boaco (UCASBO) importancia en la comercialización. En el caso de la carne, los mayores volúmenes de ganado comercializado es controlado por los comerciantes intermediarios, que en los años 1990 y 1992 extrajeron de la zona 6000 y 8000 cabezas respectivamente. En el fluctuaron aspecto de los precios, en el caso de la leche con la estacionalidad de la producción C$0.95 en invierno manteros) tipo A y UCASBO). el peso, con pesos y C$1.00 en el verano (al comercializar con y por calidad de la leche entregada C$1.375 leche tipo A y By C$1.12 para el tipo e (al comercializar con las El ganado en cambio, su precio está determinado por obteniéndose C$1,500.00 y C$1,600.00 por novillos de 380 y 420 kilogramos respectivamente. De las inversiones a realizarse, la adquisición de ganado representa el mayor porcentaje con un 49.67%, las instalaciones y equipos con un 29.02% y mejoramiento de pastizales con 21.31% del monto total propuesto equivalente a C$829,400.00, de los cuales el total solicitado representa el 76.68% equivalente a C$636,000.00. Para el análisis financiero, se utilizó el formato y metodología del Banco Mundial. Los resultados de rentabilidad de éste análisis al interés propuesto del 9% ocupan un rango entre 21.78 y 9.10%, relación inversión­ beneficio neto entre 2.2 y 1.07. Con el interés bancario del 12.5%, los resultados pasan a .ocupar valores de TIR entre 16.2% y 7.85% y la relación inversión-beneficio neto alcanza valores entre 1.93 y 0.98. Con la utilización de recursos propios los resultados son inferiores a los obtenidos con el 9% de interés en siete de las nueve fincas y superiores que los resultados logrados con el interés del 12.5%, siendo los valores extremos de las TIR encontradas de 18.42% y 10.19%. En el aspecto de sensibilidad, al incrementarse los gastos operativos en un 10%, el proyecto de la finca La Perla resulta ser el más sensible con el interés del 9%, alcanzando una TIR de 1.04% y un VAN negativo de C$-21,503.08. En la correlación inversión-rentabilidad, las inversiones en ganado ejercieron la mejor influencia, seguida de las inversiones en pastos, fundamentalmente cuando éstas van acompañadas de una alta tasa de parición. Los flujos de efectivos encontrados, resultaron con fuertes déficit a excepción de la finca San Felipe que presentó una situación menos desfavorable. Los déficit encontrado hacen que los proyectos de éstas fincas aún y cuando sean rentables, no sean factibles, al no tener disponibilidades de efectivo para el sostenimiento de las unidades familiares durante los primeros años de proyecto.

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Dynamic function of damage is the key to the problem of damage evolution of solids. In order to understand it, one must understand its mesoscopic mechanisms and macroscopic formulation. In terms of evolution equation of microdamage and damage moment, a dynamic function of damage is strictly defined. The mesoscopic mechanism underlying self-closed damage evolution law is investigated by means of double damage moments. Numerical results of damage evolution demonstrate some common features for various microdamage dynamics. Then, the dynamic function of damage is applied to inhomogeneous damage field. In this case, damage evolution rate is no longer equal to the dynamic function of damage. It is found that the criterion for damage localization is closely related to compound damage. Finally, an inversion of damage evolution to the dynamic function of damage is proposed.

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El presente estudio se realizo con el objetivo de determinar la evolución de la eficiencia reproductiva en la finca piloto San José del municipio de Santo tomas, del departamento de Chontales. Evolución de la Eficiencia Reproductiva en la Finca Piloto San José, en el Municipio de Santo Tomas Chontales. Area modelo del proyecto de Mejoramiento de la Productividad Ganadera para los Productores de Pequeña y Mediana Escala. La finca se sitúa entre las coordenadas 13º28’51’’ latitud norte y 70º77’02’’ longitud este, con altura de 420 msnm, con una precipitación promedio anual de 1600 a 2000 mm, con temperatura media anual de 25º a 27ºC. El presente estudio se evaluaron los diferentes índices reproductivos de la finca piloto San José, haciendo uso de los registros que se levantaron durante la etapa de ejecución del proyecto, realizando monitoreos periódicos como: pesajes de ganado y diagnósticos reproductivos, también se realizaba pesaje de leche y prueba de mastitis, estas actividades se realizan una vez al mes, pero con diferencias de 15 días por actividades. La producción total de leche obtenida en la finca fue de 49.500kg de leche durante un año, cuando el IPP fue de 12 meses. Cuando el IPP llego a los 24 meses la producción de leche fue de 27,000Kg. Se obtuvo que entre menor fueron los IPP y los ingresos de las finca fueron mayores. Cuando se alargaron los dias de ordeño también se alargaron los dias de secado. En el año 2005 el promedio del IPC era de 8.5 meses y en el año 2008 se redujo a 4.7 meses. En el año 2005 el IPP era de 18 meses y para el año 2008 se redujo a 14 meses. Para el invierno del 2005 se tenía promedios de 9 partos en invierno con relación al de verano que fue de 3 partos, luego en el verano del 2008 los partos se redujeron a 4 partos, pero en invierno aumentaron a 15 partos por época. El IPC para el 2005 correspondía a un 22 %, para el año 2008 se logro reducir a un 7.5 %. El IPP en el año 2005 fue del 45.7 % y para el 2008 se redujo a un22.4 %, prácticamente se redujo a un 50 %. En la finca piloto en el 2005 se contaba con 12 animales en ordeño y al año 2008 se incremento su número de animales productivos a 19 animales. La producción promedio por vaca siempre se mantuvo estable entre los 4 y 5 litros de leche por vaca, aumentado solamente la producción total de leche por día.