992 resultados para Witt, Johan de, 1625-1672.


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A series of resonant column tests have been performed in the torsional mode of vibration to assess the effect of saturation, starting from the near dry state to the fully saturated state, on the damping ratio of sands corresponding to the threshold strain level. Tests were carried out on three different gradations of sand for various combinations of relative density and effective confining pressure. For fine sands, a certain optimum degree of saturation exists at which the damping ratio minimizes; it is known that a decrease in Sr from a fully saturated state leads to a continuous increase in the matric suction. With an increase in the relative density, the optimum degree of saturation for fine sand increases marginally from 1.38 to 1.49%, but does not show any dependency on the effective confining pressure. In contrast, the minimum values of the damping ratio for medium and coarse sands are found to always correspond to the near dry state. The damping ratio decreases continuously with increases in relative density and effective confining pressure. The threshold strain level has been found to decrease continuously with increases in relative density and effective confining pressure. (C) 2013 American Society of Civil Engineers.

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Ferrimagnetism and metamagnetic features tunable by composition are observed in the magnetic response of Nd1-xYxMnO3, for x=0.1-0.5. For all values of x in the series, the compound crystallizes in orthorhombic Pbnm space group similar to NdMnO3. Magnetization studies reveal a phase transition of the Mn-sublattice below T-N(Mn) approximate to 80 K for all compositions, which, decreases up on diluting the Nd-site with Yttrium. For x=0.35, ferrimagnetism is observed. At 5 K, metamagnetic transition is observed for all compositions x < 0.4. The evolution of magnetic ground states and appearance of ferrimagnetism in Nd1-xYxMnO3 can be accounted for by invoking the scenario of magnetic phase separation. The high frequency electron paramagnetic resonance measurements on x=0.4 sample, which is close to the critical composition for phase separation, revealed complex temperature dependent lineshapes clearly supporting the assumption of magnetic phase separation. (C) 2014 Elsevier B.V. All rights reserved.

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The recently developed reference-command tracking version of model predictive static programming (MPSP) is successfully applied to a single-stage closed grinding mill circuit. MPSP is an innovative optimal control technique that combines the philosophies of model predictive control (MPC) and approximate dynamic programming. The performance of the proposed MPSP control technique, which can be viewed as a `new paradigm' under the nonlinear MPC philosophy, is compared to the performance of a standard nonlinear MPC technique applied to the same plant for the same conditions. Results show that the MPSP control technique is more than capable of tracking the desired set-point in the presence of model-plant mismatch, disturbances and measurement noise. The performance of MPSP and nonlinear MPC compare very well, with definite advantages offered by MPSP. The computational speed of MPSP is increased through a sequence of innovations such as the conversion of the dynamic optimization problem to a low-dimensional static optimization problem, the recursive computation of sensitivity matrices and using a closed form expression to update the control. To alleviate the burden on the optimization procedure in standard MPC, the control horizon is normally restricted. However, in the MPSP technique the control horizon is extended to the prediction horizon with a minor increase in the computational time. Furthermore, the MPSP technique generally takes only a couple of iterations to converge, even when input constraints are applied. Therefore, MPSP can be regarded as a potential candidate for online applications of the nonlinear MPC philosophy to real-world industrial process plants. (C) 2014 Elsevier Ltd. All rights reserved.

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A combination of measurements using photoelectron spectroscopy and calculations using density functional theory (DFT) was applied to compare the detailed electronic structure of the organolead halide perovskites CH3NH3PbI3 and CH3NH3PbBr3. These perovskite materials are used to absorb light in mesoscopic and planar heterojunction solar cells. The Pb 4f core level is investigated to get insight into the chemistry of the two materials. Valence level measurments are also included showing a shift of the valence band edges where there is a higher binding energy of the edge for the CH3NH3PbBr3 perovskite. These changes are supported by the theoretical calculations which indicate that the differences in electronic structure are mainly caused by the nature of the halide ion rather than structural differences. The combination of photoelectron spectroscopy measurements and electronic structure calculations is essential to disentangle how the valence band edge in organolead halide perovskites is governed by the intrinsic difference in energy levels of the halide ions from the influence of chemical bonding.

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Several scientific issues concerning the latest generation read heads for magnetic storage devices, based on CoFeB/MgO/CoFeBmagnetic tunnel junctions (MTJs) are known to be controversial, including such fundamental questions as to the behavior and the role of B in optimizing the physical properties of these devices. Quantitatively establishing the internal structures of several such devices with different annealing conditions using hard x-ray photoelectron spectroscopy, we resolve these controversies and establish that the B diffusion is controlled by the capping Ta layer, though Ta is physically separated from the layer with B by several nanometers. While explaining this unusual phenomenon, we also provide insight into why the tunneling magnetoresistance (TMR) is optimized at an intermediate annealing temperature, relating it to B diffusion, coupled with our studies based on x-ray diffraction and magnetic studies.

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The high species richness of tropical forests has long been recognized, yet there remains substantial uncertainty regarding the actual number of tropical tree species. Using a pantropical tree inventory database from closed canopy forests, consisting of 657,630 trees belonging to 11,371 species, we use a fitted value of Fisher's alpha and an approximate pantropical stem total to estimate the minimum number of tropical forest tree species to fall between similar to 40,000 and similar to 53,000, i.e., at the high end of previous estimates. Contrary to common assumption, the Indo-Pacific region was found to be as species-rich as the Neotropics, with both regions having a minimum of similar to 19,000-25,000 tree species. Continental Africa is relatively depauperate with a minimum of similar to 4,500-6,000 tree species. Very few species are shared among the African, American, and the Indo-Pacific regions. We provide a methodological framework for estimating species richness in trees that may help refine species richness estimates of tree-dependent taxa.

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Recently, much research has been focused on finding new thermoelectric materials. Cu-based quaternary chalcogenides that belong to A(2)BCD(4) (A = Cu; B = Zn, Cd; C = Sn, Ge; D = S, Se, Te) are wide band gap materials and one of the potential thermoelectric materials due to their complex crystal structures. In this study, In-doped quaternary compounds Cu2ZnGe1-xInxSe4 (x = 0, 0.025, 0.05, 0.075, 0.1) were prepared by a solid state synthesis method. Powder x-ray diffraction patterns of all the samples showed a tetragonal crystal structure (space group I-42m) of the main phase with a trace amount of impurity phases, which was further confirmed by Rietveld analysis. The elemental composition of all the samples showed a slight deviation from the nominal composition with the presence of secondary phases. All the transport properties were measured in the temperature range 373-673 K. The electrical resistivity of all the samples initially decreased up to similar to 470 K and then increased with increase in temperature upto 673 K, indicating the transition from semiconducting to metallic behavior. Positive Seebeck coefficients for all the samples revealed that holes are the majority carriers in the entire temperature range. The substitution of In3+ on Ge4+ introduces holes and results in the decrease of resistivity as well as the Seebeck coefficient, thereby leading to the optimization of the power factor. The lattice thermal conductivity of all the samples decreased with increasing temperature, indicating the presence of phonon-phonon scattering. As a result, the thermoelectric figure of merit (zT) of the doped sample showed an increase as compared to the undoped compound.

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El presente trabajo se realizó en Octubre de 1990 en la estación experimental La Compañía, situada en el departamento de Carazo en la IV reglón, con el objetivo de caracterizar y evaluar preliminarmente 28 variedades criollas de frijol común (Phaseolus vulgaris l.). El germoplasma fue colectado por el programa de Recursos Genéticos Nicaragüenses en diferentes zonas del país. En las condiciones ecológicas en las que se desarrolló el ensayo, el material evaluado presentó variación en la mayoría de los caracteres considerados. Presentaron rendimiento relativo superior• a testigo Rev., 79-A las accesiones 1800, 2086, 2681; 2704, 2708, 2679, •1786, 1784, 1672, 1223, 2085, 2143, 240, 2674, 2348 y 2676. Los menores porcentajes- • de severidad de la enfermedad Mustia hilachosa ( Thanatephorus cucumeris) lo mostraron las accesiones 2979 y 2681. Se presenta un catálogo de las 28 accesiones estudiadas conteniendo el valor máximo, medio, mínimo, desviación estándar y coeficiente de variación para los caracteres cuantitativos y la moda para los caracteres cualitativos considerados.

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介绍了实验装置与测压系统,实测了饱和砂柱自由落体撞击地面后前期快过程和后期慢过程的水压力的变化。

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对公开发表的用于超声速燃烧流场分析的几种一维模型进行了研究,指出了其中存在的问题,研究结果表明:基于实验静压数据的一维模型,若不借助必要的流场测量数据或分析结果,或借助于经验性的处理方法,单靠一维假设,无法获得较为完整的一维流场分析结果。改进后的一维模型降低了数据处理过程中的不确定性,提高了对一般情况的适应能力。用编制的计算程序SSC-2对两组典型的超燃燃烧室壁面静压实验数据进行了演算,取得了燃烧室出口总压恢复系数的计算值与测量值基本一致的好结果。

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Con el objetivo de validar un método determinado por ICTA/CATIE Guatemala, utilizando un umbral de acción para el manejo de Helicoverpa spp también conocido como gusano del fruto, en el cultivo del tomate se estableció un experimento de campo en la época de riego durante el período comprendido (Diciembre 1991 - Abril 1992) en Tisma, Masaya. El estudio se realizó con la colaboración de dos productores de tomate de la zona, en la finca de los productores se establecieron dos parcelas de validación, bajo dos sistemas de manejo: 1. Los productores realizaron aplicaciones periódicas semanales utilizando insecticidas químicos. 2. Aplicación de la mezcla de DIPEL (Bacillus thurinqiensis: 800 gr/mz) y LANNATE (Metomil: 75 gr/mz) según el umbral de acción, cuando se encontró cuatro huevos y/o larvas, o un 8% de frutos dañados por Helicoverpa spp en treinta plantas. El análisis económico de los tratamientos permite afirmar que las parcelas manejadas con umbral son más rentables, se obtiene mayores ingresos y menos costos a las parcelas manejadas por productor. Bajo las condiciones de este ensayo es factible económicamente, la implementación del umbral de acción, y la aplicación de la mezcla, para el combate de Helicoverpa spp en el cultivo del tomate.

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El presente trabajo tuvo como objetivo la determinación de la composición de la vegetación adventicia en 4 campos de cultivo; sorgo; plátano, cítricos y áreas de barbecho de la hacienda “las Mercedes•, Las evaluaciones se realizaron por métodos de BRACN-BLANQUET (1964) muestreando 50 metros cuadrados al azar en cada campo; De las Observaciones se encontró que el número de especies de malezas, estaba comprendido entre 34 y 44 especies totales; las especies más dominantes fueron las dicotiledóneas presentado un rango de 80 al 70.6% del total de malezas, el resto le representaron las especies monocotiledóneas. El área mínima en sorgo se encuentra entre 7…10m2, en barbecho 9… 20 m2, en plátano 14… 20 m2 y en cítricos 16…25 m2.