998 resultados para Wen, Tianxiang, 1236-1282.


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Sn-Ag-Cu (SAC) solders are susceptible to appreciable microstructural coarsening during storage or service. This results in evolution of joint properties over time, and thereby influences the long-term reliability of microelectronic packages. Accurate prediction of this aging behavior is therefore critical for joint reliability predictions. Here, we study the precipitate coarsening behavior in two Sn-Ag-Cu (SAC) alloys, namely Sn-3.0Ag-0.5Cu and Sn-1.0Cu-0.5Cu, under different thermo-mechanical excursions, including isothermal aging at 150 degrees C for various lengths of time and thermo-mechanical cycling between -25 degrees C and 125 degrees C, with an imposed shear strain of similar to 19.6% per cycle, for different number of cycles. During isothermal aging and the thermo-mechanical cycling up to 200 cycles, Ag3Sn precipitates undergo rapid, monotonous coarsening. However, high number of thermo-mechanical cycling, usually between 200 and 600 cycles, causes dissolution and re-precipitation of precipitates, resulting in a fine and even distribution. Also, recrystallization of Sn-grains near precipitate clusters was observed during severe isothermal aging. Such responses are quite unusual for SAC solder alloys. In the regime of usual precipitate coarsening in these SAC alloys, an explicit parameter, which captures the thermo-mechanical history dependence of Ag3Sn particle size, was defined. Brief mechanistic description for the recrystallization of Sn grains during isothermal aging and reprecipitation of the Ag3Sn due to high number of thermo-mechanical cycles are also presented.

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The way in which basal tractions, associated with mantle convection, couples with the lithosphere is a fundamental problem in geodynamics. A successful lithosphere-mantle coupling model for the Earth will satisfy observations of plate motions, intraplate stresses, and the plate boundary zone deformation. We solve the depth integrated three-dimensional force balance equations in a global finite element model that takes into account effects of both topography and shallow lithosphere structure as well as tractions originating from deeper mantle convection. The contribution from topography and lithosphere structure is estimated by calculating gravitational potential energy differences. The basal tractions are derived from a fully dynamic flow model with both radial and lateral viscosity variations. We simultaneously fit stresses and plate motions in order to delineate a best-fit lithosphere-mantle coupling model. We use both the World Stress Map and the Global Strain Rate Model to constrain the models. We find that a strongly coupled model with a stiff lithosphere and 3-4 orders of lateral viscosity variations in the lithosphere are best able to match the observational constraints. Our predicted deviatoric stresses, which are dominated by contribution from mantle tractions, range between 20-70 MPa. The best-fitting coupled models predict strain rates that are consistent with observations. That is, the intraplate areas are nearly rigid whereas plate boundaries and some other continental deformation zones display high strain rates. Comparison of mantle tractions and surface velocities indicate that in most areas tractions are driving, although in a few regions, including western North America, tractions are resistive. Citation: Ghosh, A., W. E. Holt, and L. M. Wen (2013), Predicting the lithospheric stress field and plate motions by joint modeling of lithosphere and mantle dynamics.

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Multivariate neural data provide the basis for assessing interactions in brain networks. Among myriad connectivity measures, Granger causality (GC) has proven to be statistically intuitive, easy to implement, and generate meaningful results. Although its application to functional MRI (fMRI) data is increasing, several factors have been identified that appear to hinder its neural interpretability: (a) latency differences in hemodynamic response function (HRF) across different brain regions, (b) low-sampling rates, and (c) noise. Recognizing that in basic and clinical neuroscience, it is often the change of a dependent variable (e.g., GC) between experimental conditions and between normal and pathology that is of interest, we address the question of whether there exist systematic relationships between GC at the fMRI level and that at the neural level. Simulated neural signals were convolved with a canonical HRF, down-sampled, and noise-added to generate simulated fMRI data. As the coupling parameters in the model were varied, fMRI GC and neural GC were calculated, and their relationship examined. Three main results were found: (1) GC following HRF convolution is a monotonically increasing function of neural GC; (2) this monotonicity can be reliably detected as a positive correlation when realistic fMRI temporal resolution and noise level were used; and (3) although the detectability of monotonicity declined due to the presence of HRF latency differences, substantial recovery of detectability occurred after correcting for latency differences. These results suggest that Granger causality is a viable technique for analyzing fMRI data when the questions are appropriately formulated.

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Granger causality is increasingly being applied to multi-electrode neurophysiological and functional imaging data to characterize directional interactions between neurons and brain regions. For a multivariate dataset, one might be interested in different subsets of the recorded neurons or brain regions. According to the current estimation framework, for each subset, one conducts a separate autoregressive model fitting process, introducing the potential for unwanted variability and uncertainty. In this paper, we propose a multivariate framework for estimating Granger causality. It is based on spectral density matrix factorization and offers the advantage that the estimation of such a matrix needs to be done only once for the entire multivariate dataset. For any subset of recorded data, Granger causality can be calculated through factorizing the appropriate submatrix of the overall spectral density matrix.

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A novel approach toward the synthesis of hollow silver nanoparticle (NP) cages built with building blocks of silver NPs by layer-by-layer (LbL) assembly is demonstrated. The size of the NP cage depends on the size of template used for the LbL assembly. The microcages showed a uniform distribution of spherical silver nanoparticles with an average diameter of 20 +/- 5 nm, which increased to 40 +/- S nm when the AgNO3 concentration was increased from 25 to 50 mM. Heat treatment of the polyelectrolyte capsules at 80 degrees C near their pK(a) values yielded intact nano/micro cages. These cages produced a higher conversion for the epoxidation of olefins and maintained their catalytic activity even after four successive uses. The nanocages exhibited unique and attractive characteristics for metal catalytic systems, thus offering the scope for further development as heterogeneous catalysts.

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We employ an exact solution of the simplest model for pump-probe time-resolved photoemission spectroscopy in charge-density-wave systems to show how, in nonequilibrium, the gap in the density of states disappears while the charge density remains modulated, and then the gap reforms after the pulse has passed. This nonequilibrium scenario qualitatively describes the common short-time experimental features in TaS2 and TbTe3, indicating a quasiuniversality for nonequilibrium ``melting'' with qualitative features that can be easily understood within a simple picture.

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Following rising demands in positioning with GPS, low-cost receivers are becoming widely available; but their energy demands are still too high. For energy efficient GPS sensing in delay-tolerant applications, the possibility of offloading a few milliseconds of raw signal samples and leveraging the greater processing power of the cloud for obtaining a position fix is being actively investigated. In an attempt to reduce the energy cost of this data offloading operation, we propose Sparse-GPS(1): a new computing framework for GPS acquisition via sparse approximation. Within the framework, GPS signals can be efficiently compressed by random ensembles. The sparse acquisition information, pertaining to the visible satellites that are embedded within these limited measurements, can subsequently be recovered by our proposed representation dictionary. By extensive empirical evaluations, we demonstrate the acquisition quality and energy gains of Sparse-GPS. We show that it is twice as energy efficient than offloading uncompressed data, and has 5-10 times lower energy costs than standalone GPS; with a median positioning accuracy of 40 m.

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Acoustic rangerfinders are a promising technology for accurate proximity detection, a critical requirement for many emerging mobile computing applications. While state-of-the-art systems deliver robust ranging performance, the computational intensiveness of their detection mechanism expedites the energy depletion of the associated devices that are typically powered by batteries. The contribution of this article is fourfold. First, it outlines the common factors that are important for ranging. Second, it presents a review of acoustic rangers and identifies their potential problems. Third, it explores the design of an information processing framework based on sparse representation that could potentially address existing challenges, especially for mobile devices. Finally, it presents mu-BeepBeep: a low energy acoustic ranging service for mobile devices, and empirically evaluates its benefits.

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The complete proof of the virial theorem in refined Thomas-Fermi-Dirac theory for all electrons of an atom in a solid is given.

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Glass transition and crystallization process of bulk Nd60Al10Fe20Co10 metallic glass were investigated by means of dynamic mechanical thermal analysis (DMTA), differential scanning calorimetry (DSC), X-ray diffraction (XRD) and scanning electronic microscopy (SEM). It is shown that the glass transition and onset crystallization temperature determined by DMTA at a heating rate of 0.167 K/s are 480 and 588 K respectively. The crystallization process of the metallic glass is concluded as follows: amorphous alpha-->alpha' + metastable FeNdAl novel phase -->alpha' + primary delta phase-->primary delta phase + eutectic delta phase Nd3Al phase + Nd3Co phase. The appearance of hard magnetism in this alloy is ascribed to the presence of amorphous phase with highly relaxed structure. The hard magnetism disappeared after the eutectic crystallization of amorphous phase.

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Heat and mass transfer of a porous permeable wall in a high temperature gas dynamical flow is considered. Numerical simulation is conducted on the ground of the conjugate mathematical model which includes filtration and heat transfer equations in a porous body and boundary layer equations on its surface. Such an approach enables one to take into account complex interaction between heat and mass transfer in the gasdynamical flow and in the structure subjected to this flow. The main attention is given to the impact of the intraporous heat transfer intensity on the transpiration cooling efficiency.

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The surface tension of molten tin has been determined by the sessile drop method at The surface tension of molten tin has been determined by the sessile drop method at temperatures ranging from 523 to 1033 K and in the oxygen partial pressure (P-O2) range from 2.85 x 10(-19) to 8.56 x 10(-6) MPa, and its dependence on temperature and oxygen partial pressure has been analyzed. At P-O2 = 2.85 x 10(-19) and 1.06 x 10(-15) MPa, the surface tension decreases linearly with the increase of temperature and its temperature coefficients are -0.151 and -0.094 mNm(-1) K-1, respectively. However, at high P-O2 (3.17 x 10(-10), 8.56 x 10(-6) MPa), the surface tension increases with the temperature near the melting point (505 K) and decreases above 723 K. The surface tension decrease with increasing P-O2 is much larger near the melting point than at temperatures above 823 K. The contact angle between the molten tin and the alumina substrate is 158-173degrees, and the wettability is poor.

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A numerical approach to optimize dimensionless parameters of water-flooding porous media flows is proposed based on the analysis of the sensitivity factor defined as the variation ration of a target function with respect to the variation of dimensionless parameters. A complete set of scaling criteria for water-flooding reservoir of five-spot well pattern case is derived from the 3-D governing equations, involving the gravitational force, the capillary force and the compressibility of water, oil and rock. By using this approach, we have estimated the influences of each dimensionless parameter on experimental results and thus sorted out the dominant ones with larger sensitivity factors ranging from10-4to10-0 .

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El presente estudio se realizó para evaluar la presencia de insecticidas organoclorados en carne bovina destinada a la exportación. Los datos fueron recopilados de la matanza diaria realizada en el matadero "Julio Moneada T" (CARNIC), a partir de Agosto de 1989 a Noviembre de este mismo año y una segunda recolección en Septiembre de 1990. Se evaluó el año y los meses que presentaron mayor porcentaje de contaminación, y las pérdidas económicas para los años 1988 y 1989. Se estudiaron dos categorías de carne, exportable y no exportable, esta última afectada por la presencia de insecticidas organoclorados. El análisis estadístico se realizó a través del método del mínimo cuadrado generalizado, usando el procedimiento CATMOD del paquete estadístico "Statistical Analysis System" (SAS). Los análisis estadísticos nos reflejan diferencias altamente significativas (α=0.0001) para el efecto de año, y para el efecto de mes (α=0.0001), obteniéndose un 19.16% y 6.69% de pérdidas por presentar niveles de contaminación no aceptable para la exportación. Las pérdidas económicas revelan cifras aproximadas de U$ 3,935,444.6 para el año 1988 y U$ 2,150,162.4 para 1989 en divisas no captadas por la empresa.

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El presente trabajo se realizó dentro del marco del PROYECTO RAZA REYNA CEE NICARAGUA-ONG 157/86/IT con el objetivo de realizar una Caracterización del Sistema de Producción de la finca San Felipe, en Muy Muy, Matagalpa y su entorno. Se realizó a través de Diagnóstico Estático en la zona y Diagnóstico Dinámico en la finca. Se pudo determinar que la zona de vida correspondiente a Muy Muy es de Trópico Seco Premontano, en transición a zona seca, con precipitaciones promedio anual de 1498.05 mm, 25.02°C de temperatura y 80.30% de humedad relativa. Los suelos son millosoles con alto contenido de materia orgánica y nutriente, excepto fósforo; cuya principal limitante la representa la pendiente elevada en la mayor parte de la zona. Se caracteriza por el predominio de sistemas de producción de doble propósito, de carácter extensivo, en los que se explota ganado Cebuino cruzado con Pardo Suizo y Holsteín principalmente la inversión de capital y de recursos es baja. La alimentación del ganado se basa en el pastoreo, habiendo predominio de pasto Jaragua (Hyparrhenia ruffa), en aproximadamente un 50% siendo el resto pasto natural y grama. Entre los principales factores limitantes identificados se puede mencionar el mal manejo proporcionado a los potreros, disminuyendo la calidad y disponibilidad del forraje ofrecido a los animales, unido a una falta total de técnicas de conservación y una suplementación adecuada. Se encontró que la comercialización afecta el .resultado económico de las fincas por los bajos precios obtenidos en la venta de los productos y por el alto precio a que compran los insumos, el cual está influido por: a) débil estructura del mercado sobre todo para la venta de leche, teniendo que vender forzosamente a plantas acopiadoras como PROLACSA; b) elevada presencia de intermediarios en las operaciones de compra-venta de animales en pie; e) lo alejado que se encuentra la zona de los centros industriales del país y d) las malas vías de penetración. Entre los índices técnicos encontrados en la. zona, según resultados de Diagnóstico Estático, se determinó que la natalidad es del 52.25 % la mortalidad de temeros es del 6.58 % el destete efectivo del 93.42 la mortalidad adulta de terneros es del 5.0 en el periodo de lactancia es de 282.43 días, la producción de leche anual por vaca es de 1282.23 lts. La producción de leche por vaca en verano es de 3.44 lts y en invierno es de 5.64, el número de animales por manzana es de 0.98 y la carga animal es de 0.77 UA/mz Respecto al Sistema de Producción de la Finca "Sn Felipe", éste se caracteriza por ser de Doble Propósito, con mayor énfasis en la producción de leche, el hato presenta un alto grado de encaste con ganado Bos taurus lechero, producto de la utilización de Inseminación Artificial, pudiendo encontrarse principalmente Pardo Suizo, así como Holsteín, Jersey, Guernsey, Simmenta1, Cebú y Reyna, con diferentes grados de cruzamientos entre sí. Las medias de mínimos cuadrados para PL305, PL TOT, LARLA e IPP encontradas fueron de 1603.90, 1893.53 Kg de leche, 288.36 y 496.87 días respectivamente. La PLD resulto de 5.56 lts y la PLD/IPP de 3.23 lts. La• EPP es de 37.15 meses y el número de servicios por concepción (NSC) resultó de 1.57. En el estudio de las principales variables los grupos raciales