991 resultados para Pulsars: individual: 4U 1538-52


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The stress states in Si particles of cast Al-Si based alloys depend on its morphology and the heat treatment given to the alloy. The Si particles fracture less on modification and fracture more in the heat treated condition. An attempt has been made in this work to study the effect of heat treatment and Si modification on the stress states of the particles. Such understanding will be valuable for predicting the ductility of the alloy. The stress states of Si particles are estimated by Raman technique and compared with the microstructure-based FEM simulations. Combination of Electron Back-Scattered Diffraction (EBSD) and frequency shift, polarized micro-Raman technique is applied to determine the stress states in Si particles with (111) orientations. Stress states are measured in the as-received state and under uniaxial compression. The residual stress, the stress in the elastic-plastic regime and the stress which causes fracture of the particles is estimated by Raman technique. FEM study demonstrates that the stress distribution is uniform in modified Si, whereas the unmodified Si shows higher and more complex stress states. The onset of plastic flow is observed at sharp corners of the particles and is followed by localization of strain between particles. Clustering of particles generates more inhomogeneous plastic strain in the matrix. Particle stress estimated by Raman technique is in agreement with FEM calculations. (C) 2014 Elsevier B.V. All rights reserved.

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The effects of combined additions of Ca and Sb on the microstructure and tensile properties of AZ91D alloy fabricated by squeeze-casting have been investigated. For comparison, the same has also been studied with and without individual additions of Ca and Sb. The results indicate that both individual and combined additions refine the grain size and beta-Mg17Al12 phase, which is more pronounced with combined additions. Besides alpha-Mg and beta-Mg17Al12 phases, a new reticular Al2Ca and rod-shaped Mg3Sb2 phases are formed following individual additions of Ca and Sb in the AZ91D alloy. With combined additions, an additional Ca2Sb phase is formed suppressing Mg3Sb2 phase. Additions of both Ca and Sb increase yield strength (YS) at both ambient and elevated temperatures up to 200 degrees C. However, both ductility and ultimate tensile strength (UTS) decrease first up to 150 degrees C and then increase at 200 degrees C. The increase in YS is attributed to the refinement of grain size, whereas, ductility and UTS are deteriorated by the presence of brittle Al2Ca, Mg3Sb2 and Ca2Sb phases. The best tensile properties are obtained in the AZXY9110 alloy owing to the presence of lesser amount of brittle Al2Ca and Ca2Sb phases resulted from the optimum content of 1.0Ca and 0.3Sb (wt%). The fracture surface of the tensile specimen tested at ambient temperature reveals cleavage failure that changes to quasi-cleavage at 200 degrees C. The squeeze-cast alloys exhibited better tensile properties as compared to that of the gravity-cast alloys nullifying the detrimental effects of Ca and/or Sb additions. (C) 2014 Elsevier B.V. All rights reserved.

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Nanocrystalline Ba0.85Ca0.15Zr0.1Ti0.9O3 (BCZT) powder was synthesized via the complex oxalate precursor route at a relatively low temperature (800 degrees C/5 h). The phase formation temperature of BCZT at nanoscale was confirmed by thermogravimetric (TG), differential thermal analysis (DTA) followed by X-ray powder diffraction (XRD) studies. Fourier transform infrared (FTIR) spectroscopy was carried out to confirm the complete decomposition of oxalate precursor into BCZT phase. The XRD and profile fitting revealed the coexistence of cubic and tetragonal phases and was corroborated by Raman study. Transmission electron microscopy (TEM) carried out on 800 degrees C and 1000 degrees C/5 h heat treated BCZT powder revealed the crystallite size to be in the range of 20-50 nm and 40-200 nm respectively. The optical band gap for BCZT nanocrystalline powder was obtained using Kubelka Munk function and was found to be around 3.12 +/- 0.02 eV and 3.03 +/- 0.02 eV respectively for 800 degrees C (20-50 nm) and 1000 degrees C/5 h (40-200 nm) heat treated samples. The piezoelectric properties were studied for two different crystallite sizes (30 and 70 nm) using a piezoresponse force microscope (PFM). The d(33) coefficients obtained for 30 nm and 70 nm sized crystallites were 4 pm V-1 and 47 pm V-1 respectively. These were superior to that of BaTiO3 nanocrystal (approximate to 50 nm) and promising from a technological/industrial applications viewpoint.

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Glycated hemoglobin (HbA(1c)) is a `gold standard' biomarker for assessing the glycemic index of an individual. HbA(1c) is formed due to nonenzymatic glycosylation at N-terminal valine residue of the P-globin chain. Cation exchange based high performance liquid chromatography (CE HPLC) is mostly used to quantify HbA(1c), in blood sample. A few genetic variants of hemoglobin and post-translationally modified variants of hemoglobin interfere with CE HPLC-based quantification,. resulting in its false positive estimation. Using mass spectrometry, we analyzed a blood sample with abnormally high HbA(1c) (52.1%) in the CE HPLC method. The observed HbA(1c) did not corroborate the blood glucose level of the patient. A mass spectrometry based bottom up proteomics approach, intact globin chain mass analysis, and chemical modification of the proteolytic peptides identified the presence of Hb Beckman, a genetic variant of hemoglobin, in the experimental sample. A similar surface area to charge ratio between HbA(1c) and Hb Beckman might have resulted in the coelution of the variant with HbA(1c) in CE HPLC. Therefore, in the screening of diabetes mellitus through the estimation of HbA(1c), it is important to look for genetic variants of hemoglobin in samples that show abnormally high glycemic index, and HbA(1c) must be estimated using an alternative method. (C) 2015 Elsevier Inc. All rights reserved.

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We study the variations in the Cyclotron Resonant Scattering Feature (CRSF) during 2011 outburst of the high mass X-ray binary 4U 0115+63 using observations performed with Suzaku, RXTE, Swift and INTEGRAL satellites. The wide-band spectral data with low-energy coverage allowed us to characterize the broad-band continuum and detect the CRSFs. We find that the broad-band continuum is adequately described by a combination of a low temperature (kT similar to 0.8 keV) blackbody and a power law with high energy cutoff (E-cut similar to 5.4 keV) without the need for a broad Gaussian at similar to 10 keV as used in some earlier studies. Though winds from the companion can affect the emission from the neutron star at low energies (<3 keV), the blackbody component shows a significant presence in our continuum model. We report evidence for the possible presence of two independent sets of CRSFs with fundamentals at similar to 11 and similar to 15 keV. These two sets of CRSFs could arise from spatially distinct emitting regions. We also find evidence for variations in the line equivalent widths, with the 11 keV CRSF weakening and the 15 keV line strengthening with decreasing luminosity. Finally, we propose that the reason for the earlier observed anticorrelation of line energy with luminosity could be due to modelling of these two independent line sets (similar to 11 and similar to 15 keV) as a single CRSF.

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Grain boundaries (GBs) are undesired in large area layered 2D materials as they degrade the device quality and their electronic performance. Here we show that the grain boundaries in graphene which induce additional scattering of carriers in the conduction channel also act as an additional and strong source of electrical noise especially at the room temperature. From graphene field effect transistors consisting of single GB, we find that the electrical noise across the graphene GBs can be nearly 10 000 times larger than the noise from equivalent dimensions in single crystalline graphene. At high carrier densities (n), the noise magnitude across the GBs decreases as proportional to 1/n, suggesting Hooge-type mobility fluctuations, whereas at low n close to the Dirac point, the noise magnitude could be quantitatively described by the fluctuations in the number of propagating modes across the GB.

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The design and synthesis of two structurally close and complementarily fluorescent boron based molecular siblings 2 and 3 are reported. The luminescence properties of individual triads are modulated to complement each other by controlling the intramolecular energy transfer in 2 and 3. The binary mixture of 2 and 3 emits white-light.

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Este estudio Se desarrolló en el periodo de julio a diciembre de 1990 en el Centro de Investigación Zootecnia “La Polvosa” de la UCA (Universidad Centroamericana), situada en el km 23 112 de la carretera nueva a León, depto. de Managua. El centro se ubica a una elevación de 40 msnrn a 1 2 grados 12 minutos, Latitud norte y 86 grados 22 minutos, longitud oeste registra temperaturas promedio anuales de 32 grados centígrados los y unos 8OO mm de precipitación media por año, por lo cual, es posible calificar su zona agroecológica como de trópico seco se evaluó la respuesta en términos de valor nutritivo del pasto Pangola (Digitaria decumbens Stent.) vr. Transvala, utilizándose un diseño experimental en bloques completos al azar (BCA) con arreglo factorial, se estudió el efecto de dos factores (Niveles de fertilizantes-edades de cortes) con cuatro repeticiones, formándose un total de 16 tratamientos El ensayo contó con un área experimental total de 357.75 mt2 para la toma de muestras, se empleó el método del metro cuadrado realizándose en las parcelas un muestreo sin reemplazo para cada frecuencia en estudio. Previo al momento experimental, se efectúo una poda de control procediéndose después a aplicar de una sola vez los respectivos niveles de fertizante. El estudio estadístico contempló el uso del análisis de varianza (ANDEVA), se hizo una separción de medias por Tukey, y se midió la influencia porcentual (Individual y asociada) de 4 niveles de fertilizante (0, 50,100 y150 kg urea (46%N2) / mz) y 4 edades de corte (15, 30.. 45y 60 días), sobre nueve variables o componentes bromatológicos (MS, PB,FC, ELN, EE, EB (Kcal/ 100g), Cz, Ca y P). Todos los componentes bromatológicos evaluados excepto el EE.. presentaron una variación significativa (P<0.05), bajo el efecto de los factores en estudio. Los niveles de fertilizante influyeron ios valores de mayor mérito con la dosis •150 kg urea / rnz, observando la PB.. 9.76% ;el ELN, 56.54 y la EB,190.97 Kcal ,' 100 g. En tanto que los 50 kg1mz mostraron !os mayores índices en FC (28.88), EE (2.75) y Cz. (11.:39) las parcelas no fertilizadas brindaron los porcentajes más altos de MS (23.78) y Ca (0.60),y el nivel 100 kg/ mz El mejor en P (0.39) y el más bajo en FC (26.61). A su vez con O kg / mz_. Observaron sus níveles minimos la PB (6.91), el ELN (53.58). el valor energético (175.45 Kcal/ 100 g) y el P (O.28), y con 100 kg/ mz los menores en MS y Cz (25.08 y 10.38 respectivamente), a. los 150kg/mz el EE (2.29) y el Ca (0.49), rindieron sus índices más bajos. En cuanto a la frecuencia de corte, la edad 15 días presentó los máximos contenidos en PH (11.95), ELN (56.45),EB (202.40 Kcal/ 100g), EE (2.65) y el mínimo en FC (27.09). Observando el corte a los 60 días, las mayores proporciones en MS (30.91) Cz (12.43) )'Ca (0.58),en tanto que con 30 y 45 días se dieron los más altos valores de P (0.34) FC (28.55) respectivamente los índices más bajos de PB (6.48),ELN (52.63), Ca (0.47)y P (0.30), se obtuvieron a los 45 días de madurez mientras que la MS (22.88) y la Cz (9.56),alcanzaron sus valores más pequeños con 15 días de corte a los 60 días, la EB (175. 42 Kcal ./ 100g) y el EE (2.20) respondieron con sus por cientos más bajos. Para los tratamientos resultantes de la combinación de un nivel de fertilizante y una edad de corte, la interacción 50 kg/mz-60 días reportó el mayor contenido en MS (32.72), sobresaliendo el tratamiento 150 kg / mz-15 días al presentar los valores más altos en EB (214.39 Kcal/100g), PB (14.30) y ELN (59.02), aunque la combinación 50 kg/mz-30 días brindó igual valor en ELN y el máximo en Cz (13.10) con aplicaciones de 100 kg/mz y frecuencia de 15 días se obtuvieron los menores índices en FC (24.82) y Cz (9.37). Consiguiéndose en O kg / mz-15 días el valor más alto en Ca (0.76) y el menor en P (0.22), observando la MS su índice más bajo (18.37) con el tratamiento 100 kg / mz-15 días. Finalmente, en las interacciones que incluyen la frecuencia 45 días, se encontró que las parcelas no fertilizadas presentaron los menores contenidos en PB (5.02), ELN (48.95) y EB (165.44 Kcal/ 1oo g). en cambio al aplicar 100 kg /rnz, se obtuvieron (para la misma interacción) los valores más bajos en EE (1.72), Ca (0.43) y el mayor en P (0.44),en tanto los niveles 50 y 150 kg / mz influyeron los índices más altos en EE (3.85) y FC (30.75) respectivamente.

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Peptides and proteins possess an inherent propensity to self-assemble into generic fibrillar nanostructures known as amyloid fibrils, some of which are involved in medical conditions such as Alzheimer disease. In certain cases, such structures can self-propagate in living systems as prions and transmit characteristic traits to the host organism. The mechanisms that allow certain amyloid species but not others to function as prions are not fully understood. Much progress in understanding the prion phenomenon has been achieved through the study of prions in yeast as this system has proved to be experimentally highly tractable; but quantitative understanding of the biophysics and kinetics of the assembly process has remained challenging. Here, we explore the assembly of two closely related homologues of the Ure2p protein from Saccharomyces cerevisiae and Saccharomyces paradoxus, and by using a combination of kinetic theory with solution and biosensor assays, we are able to compare the rates of the individual microscopic steps of prion fibril assembly. We find that for these proteins the fragmentation rate is encoded in the structure of the seed fibrils, whereas the elongation rate is principally determined by the nature of the soluble precursor protein. Our results further reveal that fibrils that elongate faster but fracture less frequently can lose their ability to propagate as prions. These findings illuminate the connections between the in vitro aggregation of proteins and the in vivo proliferation of prions, and provide a framework for the quantitative understanding of the parameters governing the behavior of amyloid fibrils in normal and aberrant biological pathways.

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El Presente trabajo consta de dos fases, realizadas durante la época de primera y postrera del año 2000, en la Estación Experimental La Compañía localizada en el municipio de San Marcos, departamento de Carazo. El trabajo tuvo como objetivo obtener líneas promisorias de frijol común a partir de tres poblaciones locales recolectadas en diferentes localidades de Nicaragua, a través del método de mejoramiento de selección individual, y se evaluó considerando parámetros agronómicos como caracteres de desarrollo, componentes del rendimiento, rendimiento por planta, rendimiento por línea, rendimiento relativo, tipo de planta y condición fitosanitaria. Los resultados indican que todos los materiales evaluados presentaron susceptibilidad a mosaico común. De las 90 líneas seleccionadas al final del estudio, 20 líneas presentaron síntomas ausentes a débiles (1 a 3), 70 líneas presentaron síntomas moderados a generales (4 a 6). En cuanto a la variable rendimiento relativo, 47 líneas superaron al testigo comercial DOR-364 entre 101.27 a 202.73 por ciento y 75 líneas superaron a la variedad original entre 104.47 a 169.11 por ciento, el resto de las líneas se seleccionaron por ser sobresalientes en los demás caracteres de selección, 3 líneas presentaron la mayor precocidad con 52 días, seguido por 30 líneas con 53 días a madurez fisiológica.

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Plasma enhanced chemical vapour deposition (PECVD) is a controlled technique for the production of vertically aligned multiwall carbon nanotubes for field emission applications. In this paper, we investigate the electrical properties of individual carbon nanotubes which is important for designing field emission devices. PECVD nanotubes exhibit a room temperature resistance of 1-10 kΩ/μm length (resistivity 10-6 to 10-5 Ω m) and have a maximum current carrying capability of 0.2-2 mA (current density 107-108 A/cm2). The field emission characteristics show that the field enhancement of the structures is strongly related to the geometry (height/radius) of the structures and maximum emission currents of ∼ 10 μA were obtained. The failure of nanotubes under field emission is also discussed. © 2002 Elsevier Science B.V. All rights reserved.

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We demonstrate the production of integrated-gate nanocathodes which have a single carbon nanotube or silicon nanowire/whisker per gate aperture. The fabrication is based on a technologically scalable, self-alignment process in which a single lithographic step is used to define the gate, insulator, and emitter. The nanotube-based gated nanocathode array has a low turn-on voltage of 25 V and a peak current of 5 μA at 46 V, with a gate current of 10 nA (i.e., 99% transparency). These low operating voltage cathodes are potentially useful as electron sources for field emission displays or miniaturizing electron-based instrumentation.