979 resultados para Ebenezer Independent Christian Church.


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Rice landraces are lineages developed by farmers through artificial selection during the long-term domestication process. Despite huge potential for crop improvement, they are largely understudied in India. Here, we analyse a suite of phenotypic characters from large numbers of Indian landraces comprised of both aromatic and non-aromatic varieties. Our primary aim was to investigate the major determinants of diversity, the strength of segregation among aromatic and non-aromatic landraces as well as that within aromatic landraces. Using principal component analysis, we found that grain length, width and weight, panicle weight and leaf length have the most substantial contribution. Discriminant analysis can effectively distinguish the majority of aromatic from non-aromatic landraces. More interestingly, within aromatic landraces long-grain traditional Basmati and short-grain non-Basmati aromatics remain morphologically well differentiated. The present research emphasizes the general patterns of phenotypic diversity and finds out the most important characters. It also confirms the existence of very unique short-grain aromatic landraces, perhaps carrying signatures of independent origin of an additional aroma quantitative trait locus in the indica group, unlike introgression of specific alleles of the BADH2 gene from the japonica group as in Basmati. We presume that this parallel origin and evolution of aroma in short-grain indica landraces are linked to the long history of rice domestication that involved inheritance of several traits from Oryza nivara, in addition to O. rufipogon. We conclude with a note that the insights from the phenotypic analysis essentially comprise the first part, which will likely be validated with subsequent molecular analysis.

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Using the numerical device simulation we show that the relationship between the surface potentials along the channel in any double gate (DG) MOSFET remains invariant in QS (quasistatic) and NQS (nonquasi-static) condition for the same terminal voltages. This concept along with the recently proposed `piecewise charge linearization' technique is then used to develop the intrinsic NQS charge model for a Independent DG (IDG) MOSFET by solving the governing continuity equation. It is also demonstrated that unlike the usual MOSFET transcapacitances, the inter-gate transcapacitance of a IDG-MOSFET initially increases with the frequency and then saturates, which might find novel analog circuit application. The proposed NQS model shows good agreement with numerical device simulations and appears to be useful for efficient circuit simulation.

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An optimal measurement selection strategy based on incoherence among rows (corresponding to measurements) of the sensitivity (or weight) matrix for the near infrared diffuse optical tomography is proposed. As incoherence among the measurements can be seen as providing maximum independent information into the estimation of optical properties, this provides high level of optimization required for knowing the independency of a particular measurement on its counterparts. The proposed method was compared with the recently established data-resolution matrix-based approach for optimal choice of independent measurements and shown, using simulated and experimental gelatin phantom data sets, to be superior as it does not require an optimal regularization parameter for providing the same information. (C) 2014 Society of Photo-Optical Instrumentation Engineers (SPIE)

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Central to network tomography is the problem of identifiability, the ability to identify internal network characteristics uniquely from end-to-end measurements. This problem is often underconstrained even when internal network characteristics such as link delays are modeled as additive constants. While it is known that the network topology can play a role in determining the extent of identifiability, there is a lack in the fundamental understanding of being able to quantify it for a given network. In this paper, we consider the problem of identifying additive link metrics in an arbitrary undirected network using measurement nodes and establishing paths/cycles between them. For a given placement of measurement nodes, we define and derive the ``link rank'' of the network-the maximum number of linearly independent cycles/paths that may be established between the measurement nodes. We achieve this in linear time. The link rank helps quantify the exact extent of identifiability in a network. We also develop a quadratic time algorithm to compute a set of cycles/paths that achieves the maximum rank.

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The temperature (300-973K) and frequency (100Hz-10MHz) response of the dielectric and impedance characteristics of 2BaO-0.5Na(2)O-2.5Nb(2)O(5)-4.5B(2)O(3) glasses and glass nanocrystal composites were studied. The dielectric constant of the glass was found to be almost independent of frequency (100Hz-10MHz) and temperature (300-600K). The temperature coefficient of dielectric constant was 8 +/- 3ppm/K in the 300-600K temperature range. The relaxation and conduction phenomena were rationalized using modulus formalism and universal AC conductivity exponential power law, respectively. The observed relaxation behavior was found to be thermally activated. The complex impedance data were fitted using the least square method. Dispersion of Barium Sodium Niobate (BNN) phase at nanoscale in a glass matrix resulted in the formation of space charge around crystal-glass interface, leading to a high value of effective dielectric constant especially for the samples heat-treated at higher temperatures. The fabricated glass nanocrystal composites exhibited P versus E hysteresis loops at room temperature and the remnant polarization (P-r) increased with the increase in crystallite size.

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In subject-independent acoustic-to-articulatory inversion, the articulatory kinematics of a test subject are estimated assuming that the training corpus does not include data from the test subject. The training corpus in subject-independent inversion (SII) is formed with acoustic and articulatory kinematics data and the acoustic mismatch between training and test subjects is then estimated by an acoustic normalization using acoustic data drawn from a large pool of speakers called generic acoustic space (GAS). In this work, we focus on improving the SII performance through better acoustic normalization and adaptation. We propose unsupervised and several supervised ways of clustering GAS for acoustic normalization. We perform an adaptation of acoustic models of GAS using the acoustic data of the training and test subjects in SII. It is found that SII performance significantly improves (similar to 25% relative on average) over the subject-dependent inversion when the acoustic clusters in GAS correspond to phonetic units (or states of 3-state phonetic HMMs) and when the acoustic model built on GAS is adapted to training and test subjects while optimizing the inversion criterion. (C) 2014 Elsevier B.V. All rights reserved.

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There is considerable interest in powering and maneuvering nanostructures remotely in fluidic media using noninvasive fuel-free methods, for which small homogeneous magnetic fields are ideally suited. Current strategies include helical propulsion of chiral nanostructures, cilia-like motion of flexible filaments, and surface assisted translation of asymmetric colloidal doublets and magnetic nanorods, in all of which the individual structures are moved in a particular direction that is completely tied to the characteristics of the driving fields. As we show in this paper, when we use appropriate magnetic field configurations and actuation time scales, it is possible to maneuver geometrically identical nanostructures in different directions, and subsequently position them at arbitrary locations with respect to each other. The method reported here requires proximity of the nanomotors to a solid surface, and could be useful in applications that require remote and independent control over individual components in microfluidic environments.

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Facial emotions are the most expressive way to display emotions. Many algorithms have been proposed which employ a particular set of people (usually a database) to both train and test their model. This paper focuses on the challenging task of database independent emotion recognition, which is a generalized case of subject-independent emotion recognition. The emotion recognition system employed in this work is a Meta-Cognitive Neuro-Fuzzy Inference System (McFIS). McFIS has two components, a neuro-fuzzy inference system, which is the cognitive component and a self-regulatory learning mechanism, which is the meta-cognitive component. The meta-cognitive component, monitors the knowledge in the neuro-fuzzy inference system and decides on what-to-learn, when-to-learn and how-to-learn the training samples, efficiently. For each sample, the McFIS decides whether to delete the sample without being learnt, use it to add/prune or update the network parameter or reserve it for future use. This helps the network avoid over-training and as a result improve its generalization performance over untrained databases. In this study, we extract pixel based emotion features from well-known (Japanese Female Facial Expression) JAFFE and (Taiwanese Female Expression Image) TFEID database. Two sets of experiment are conducted. First, we study the individual performance of both databases on McFIS based on 5-fold cross validation study. Next, in order to study the generalization performance, McFIS trained on JAFFE database is tested on TFEID and vice-versa. The performance The performance comparison in both experiments against SVNI classifier gives promising results.

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Here, we report the hydrothermal synthesis of boron-doped CNPs (B-CNPs) with different size/atomic percentage of doping and size-independent color tunability from red to blue. The variation of size/atomic percentage of B is achieved by simply varying the reaction time, while the color tunability is obtained by diluting the solution. With dilution, the luminescence spectra are not only blue-shifted, the intensity increases as well. The huge blue-shift in the emission energy (similar to 1 eV) is believed to be due to the increase in the interparticle distance. The quantum yield with optimum dilution is found to increase with boron doping though it is very low as compared to CNPs and nitrogen-doped CNPs. Finally, we show that B-CNPs with a quantum yield of 0.5% can be used for bioimaging applications. (C) 2015 Elsevier Ltd. All rights reserved.

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Con el objeto de contribuir al uso y manejo de nuevas especies forrajeras como alternativas para la alimentación animal en las condiciones agroclimáticas del municipio de Niquinohomo, específicamente en el Rancho Agropecológico de Especies Menores Ebenezer (RAEME). Se realizó un trabajo investigativo donde se evaluó las características morfoestructurales de nacedero (Trichanthera gigantea), bajo tres escenarios de sombra (umbra, penumbra y a pleno sol) y cuatro frecuencias de corte (30, 60, 90 y 120 días) y su efecto sobre la producción de biomasa y contenido de proteína de nacedero. El estudio se ubicó en la comarca Hoja Chigüe #1 a una distancia de 4 Km al sur del municipio de Niquinohomo, Departamento de Masaya con una altitud de 400 msnm, con latitud de 11° 52′ y longitud de 86°03′ . El promedio de precipitación anual es de 1200 mm, con periodos lluviosos generalmente en los meses de Julio a Noviembre. Con una temperatura mínimas de 22° C y máximas de 38° C, variando estas durante todo el año. Los suelos son de textura franco arcilloso y una profundidad efectiva de 40 cm. Entre las características morfoestructurales, se evaluaron el grosor, altura, número de tallos y rebrotes, para lo cual se realizaron mediciones sobre cinco plantas (para cada condición), sembrados a una distancia de 1 m entre surco y entre planta, las cuales se seleccionaron al azar. Al iniciar el estudio se hizo un corte de uniformidad; después se realizó el corte para cada frecuencia en estudio, cuantificando la producción de forraje comestible (hoja/tallo tierno y la proporción entre ellas). Durante el ensayo no se hizo ninguna aplicación de fertilizante. Se encontró que la producción de biomasa fue mejor cuando los cortes se realizaron cada 120 días, siendo estas mayores cuando estaban en condiciones de sombra y penumbra (31 y 32 t ha-1 respectivamente). En cambio los contenidos de proteína fueron mayores cuando los corteseran menores de 60 días, los cuales fluctuaron entre 20 y 23%. Encontrándose una relación inversa entre la edad de corte y producción de biomasa con respecto al contenido de proteína.

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Con el objetivo de determinar los principales agentes etiológicos de las dermatopatías en conejos y determinar el efecto terapéutico de tres tratamientos fitoterapéuticos 1) Jícaro Sabanero, 2) madero negro y 3) Neem, sobre las mismas, se realizó un estudio en el Rancho Agropecológico en especies menores, Ebenezer (RAEME), Niquinohomo, Nicaragua. El trabajo se realizó en 59 conejos divididos en cuatro grupos y sometidos a los diferentes tratamientos. Para evaluar la efectividad de los tratamientos se realizaron 3 aplicaciones de cada uno de ellos a sus respectivos grupos, con intervalos de siete días cada uno, durante 21 días; a excepción del jícaro que se aplicó tres días continuos, cada siete días, durante 21 días. Se determinó que los principales agentes etiológicos presentes en el estudio, fueron el ácaro Listrophorus sp, los hongos Mucor sp, Aspergillus sp, zygomices sp, Penicillium sp. De los tres tratamientos aplicados, el tratamiento a base de Neem (Azadirachta indica) fue el que presentó un efecto altamente significativo (P< 0.0001)sobre el control de las dermopatías y permitió un mejor grado de recuperación de los conejos tratados. El tratamiento a base de jícaro (Crescentia alata) presenta algún grado de efectividad para el control de las dermopatías encontradas. El tratamiento a base de madero negro (Gliricidia sepium ), presentó muy poca efectividad en el control de las dermopatías en estudio.

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Se llevó a cabo un estudio durante el período lluvioso del año 2005, ‘Rancho Agropecológico’ “EBENEZER” Comarca ‘Hoja Chigüe’ Niquinohomo, Masaya, Nicaragua. El objetivo fue determinar la producción de materia seca y composición química de la biomasa a diferentes frecuencias de corte en Morera (Morus sp).Se utilizó un diseño de bloques completos al azar (BCA) con tres repeticiones. Las frecuencias de corte fueron; 30, 45 y 60 días de rebrote. Las variables de estudio fueron longitud de rebrotes (cm), rendimiento de materia seca (kg de MS/ha/corte), porcentajes de materia seca, proteína cruda, fibra cruda, calcio y fósforo. Se realizaron análisis de varianza (ANDEVA) y separaciones de medias, usando Duncan (P<0.05). Las variables codificadas en porcentajes se transforma ron, según, transformaciones arco seno de la raiz cuadrada de la proporción, con el fin de ajustar los datos porc entuales a una distribución normal, posteriormente se realizaron comparaciones de medias usando Duncan. Los resultados indican diferencias significativas entre tratamientos para las variables; longitud de rebrote (67 y 36 cm para frecuencias de 60 y 30 días);rendimiento de materia seca (1,368 y 480 kg/ha/corte, para las mismas frecuencias). Se encontraron diferencias significativas para la materia seca (27.50, 17.17 % para 60 y 30 días), fibra cruda (19.41 y,16.30 % para las mismas frecuencias), y Fósforo. Esta ultima variable presentó un comportamiento diferente; los mayores porcentajes a los 30 días (0.75) y los menores porcentajes a los 45 días, no presentándose diferencias entre 45 y 60 días (0.42). Referente a la proteína cruda y calcio, no presentaron diferencias significativas. El estudio permitió demostrar diferencias marcadas en la producción y composición química del forraje de Morera (Morus sp), observándose que, a diferencias de otros forrajes, los parámetros de calidad no presentan una disminución drástica a medida que se aumenta la edad de rebrote , con las frecuencias estudiadas.

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Se llevó a cabo un estudio durante el período lluvioso del año 2005, ‘Rancho Agropecológico’ “EBENEZER” Comarca ‘Hoja Chigüe’ Niquinohomo, Masaya, Nicaragua. El objetivo fue determinar la producción de materia seca y composición química de la biomasa a diferentes frecuencias de corte en Avispa (Hibiscus rosa - sinensis) . Se utilizó un diseño de bloques completos al azar (BCA) con tres repeticiones. Las frecuencias de corte fueron; 30, 45 y 60 días de rebrote. Las variables de estudio fueron longitud de rebrotes (cm), rendimiento de materia seca (kg de MS/ha/corte), porcentajes de materia seca, proteína cruda, fibra cruda, calcio y fósforo. Se realizaron análisis de varianza (ANDEVA) y separaciones de medias, usando Duncan (P<0.05). Las variables codificadas en porcentajes se transformaron, según, dos veces por el arco seno de la raíz cuadrada de la proporción, con el fin de ajustar los datos porcentuales a una distribución normal, Los resultados indican diferencias significativ as entre tratamientos para las variables; longitud de rebrote ( 29.90 y 1 3 .57 cm para frecuencias de 60 y 30 días); rendimiento de materia seca (1, 279.2 y 346.0 kg/ha/corte, para las mismas frecuencias). Se encontraron diferencias significativas para la materia seca (2 6.03, 15.15% para 60 y 30 días), proteína cruda (18.62 y, 23.16% para las mismas frecuencias), y fibra cruda (20.16 VS 15.67 % para 60 y 30 días). En cuanto a minerales, se encontró diferencias estadísticas para el fósforo no así, para el caso del calcio. El estudio permitió demostrar diferencias marcadas en la producción y composición química del forraje de Avispa (Hibiscus rosa-sinensis), observándose que, a diferencias de otros forrajes, los parámetros de calidad no presentan una disminución drástica a medida que se aumenta la edad de rebrote, con las frecuencias estudiadas.