967 resultados para Magnitude estelar


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Apresentamos a fotometria de 6 campos estelares profundos distribuídos na Grande Nuvem de Magalhães obtidos com a Wide Field and Planetary Camera 2/Hubble Space Telescope em duas bandas fotométricas: F814W (~I) e F555W (~V). Foram selecionadas ao todo 15997 estrelas pela nossa amostra, que somadas às estrelas da amostra de Castro et aI. 2001 [9] contabilizaram 22239 estrelas, dentro de limites de magnitude típicos que estão no intervalo 18.5<-V <-26. Investigamos o comportamento do erro fotométrico através da tarefa PHOT/IRAF, bem como via medidas independentes de magnitude de um mesmo objeto obtidas com diferentes exposições. Implementamos um método de correção para a completeza fotométrica como função da posição no diagrama cor-magnitude, isto é, com função tanto da magnitude como da cor e analisamos a sensibilidade das funções de luminosidade obtidas para diferentes métodos de correção. Foram obtidos os diagramas cor-magnitude, com os quais ajustamos isócronas de Pádova com idades T ;S 16 Gano e metalicidades 0.001 < Z < 0.004 ou -1.3 < [Fe/H] < -0.7. A população mais velha (r~12 Gano) pode ser encontrada através do ponto de turn-off em V~22. Estrelas de idade intermediária (r~1 - 8 Gano) podem ser localizadas pela presença de um clump. Os campos próximos aos aglomerados jovens NGC1805 e NGC1818 são os campos mais populosos, apresentando estrelas com r~1 Gano. Construímos funções de luminosidade para 18.5<-V <-25, utilizando os dados das duas amostras; não foram encontradas diferenças significativas entre os campos Desenvolvemos um método para geração de diagramas cor-magnitude (CMDs) artificiais a partir de um modelo de histórico de formação estelar. Este método incorpora os efeitos de erros fotométricos, binarismo não resolvido, avermelhamento e permite o uso de formas variadas de função de massa inicial e do próprio histórico. Implementamos o Método dos Modelos Parciais para modelamento de CMDs, incluindo experimentos controlados para a comprovação da validade deste método na busca de vínculos ao histórico de formação estelar da Grande Nuvem de Magalhães em dife!entes regiões. Recuperamos SFHs confiáveis para cada um dos 6 campos da LMC. Observamos variações na formação estelar de um campo para outro. Em todos os campos encontramos uma lacuna na formação estelar com 7 rv 700 Mano. Os dois campos próximos à barra (NGC1805 e NGC1818) apresentam alguns pequenos surtos, tendo formado em sua maioria, estrelas velhas ou relativamente jovens. Já os campos próximos a NGC1831 e NGC1868 apresentam formação estelar que se aproxima de um histórico de formação estelar uniforme, com alguns pequenos surtos. Os campos NGC2209 e Hodge 11 apresentam três períodos de formação estelar muitos semelhantes.

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Apresentamos a análise de diagramas cor-magnitude (CMDs) profundos para 5 aglomerados ricos da Grande Nuvem de Magalhães (LMC). Os dados fazem parte do projeto HST G07307, entitulado "Formação e Evolução de Aglomerados Estelares Ricos da LMC", e foram obtidos através do HST/WFPC2 nos filtros F555W (~ V) e F814W (~ I), alcançando V555~25. A amostra de aglomerados é composta por NGC 1805 e NGC 1818, os mais jovens (r < 100 Myr), NGC 1831e NGC 1868,de idades intermediárias (400 < r < 1000Myr), e Hodge 14, o mais velho (r > 1200Myr). Discutimos e apresentamos um método de correção dos CMDs para incompleteza da amostra e contaminação por estrelas de campo. O uso eficiente das informações contidas nos CMDs foi feito por meio de comparações entre os CMDs observados e CMDs modelados. O processo de modelamento de CMDs gera uma Seqüência Principal (MS) sintética, que utiliza como entrada do modelo a informação sobre idade (r), metalicidade (Z), Função de Massa do Presente (PDMF), fração de binárias não resolvidas, distância e extinção da luz. As incertezas fotométricas foram empiricamente determinadas a partir dos dados e incorporadas no modelamento. Técnicas estatísticas de comparação entre CMDs em 1D e 2D são apresentadas e aplicadas como métodos objetivos capazes de determinar a compatibilidade entre modelo e observação. Modelando os CMDs da região central dos aglomerados podemos inferir a metalicidade (Z), o módulo de distância intrínseco ((V - Mv)o) e o avermelhamento (E(B-V)) para cada aglomerado. Também determinamos as idades para os 3 aglomerados mais velhos de nossa amostra. Continuação) Através da comparação em 2D os valores encontrados foram os seguintes: para NGC 1805, Z = 0.007:1+-0.003, (V - Mv)o = 18.50:1+- 0.10, E(B - V) = 0.03:1+-0.01; para NGC 1818,Z = 0.005:1+-0.002, (V - Mv)o = 18.50:1+-0.15, E(B - V)~0.00; para NGC 1831, Z = 0.012:1+-0.002, log(r /yr) = 8.70 :I+-0.05, (V - Mv)o = 18.70:1+- 0.05, E(B - V)~ 0.00; para NGC 1868, Z = 0.008:1+-0.002,log(r/yr) =8.95:1+-0.05, (V - Mv)o = 18.70:1+- 0.05, E(B - V) ~0.00; para Hodge 14, Z = 0.008+-0.004, log(r/yr) = 9.23+-0.10, (V - Mv)o = 18.50+-0.15, E(B - V) = 0.02+- 0.02. Estes valores estão de acordo, dentro das incertezas, com os valores obtidos através da análise de linhas fiduciais (lD), o que agrega confiabilidade a estas determinações. Através da análise de CMDs em regiões concêntricas determinamos a dependência espacial da inclinação da PDMF (a) nos aglomerados mais ricos. Para tanto empregamos duas abordagens distintas para a determinação de a: 1) método tradicional em 1D via conversão direta de V555em massa; 2) método em 2D via modelmento de CMDs. Independente do método de análise, todos os aglomerados analisados demonstram claramente o efeito de segregação em massa. Além disso, NGC 1818, NGC 1831 e NGC 1868 apresentam uma possível perda seletiva de estrelas de baixa massa nas suas regiões mais externas.

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This study directly measured the load acting on the abutment of the osseointegrated implant system of transfemoral amputees during level walking, and studied the variability of the load within and among amputees. Twelve active transfemoral amputees (age: 54±12 years, mass:84.3±16.3 kg, height: 17.8±0.10 m) fitted with an osseointegrated implant for over 1 year participated in the study. The load applied on the abutment was measured during unimpeded, level walking in a straight line using a commercial six-channel transducer mounted between the abutment and the prosthetic knee. The pattern and the magnitude of the three-dimensional forces and moments were revealed. Results showed a low step-to-step variability of each subject, but a high subject-to-subject variability in local extrema of body-weight normalized forces and moments and impulse data. The high subject-to-subject variability suggests that the mechanical design of the implant system should be customized for each individual, or that a fit-all design should take into consideration the highest values of load within a broad range of amputees. It also suggests specific loading regime in rehabilitation training are necessary for a given subject. Thus the loading magnitude and variability demonstrated should be useful in designing an osseointegrated implant system better able to resist mechanical failure and in refining the rehabilitation protocol.

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The process of learning symbolic Arabic digits in early childhood requires that magnitude and spatial information integrates with the concept of symbolic digits. Previous research has separately investigated the development of automatic access to magnitude and spatial information from symbolic digits. However, developmental trajectories of symbolic number knowledge cannot be fully understood when considering components in isolation. In view of this, we have synthesized the existing lines of research and tested the use of both magnitude and spatial information with the same sample of British children in Years 1, 2 and 3 (6-8 years of age). The physical judgment task of the numerical Stroop paradigm (NSP) demonstrated that automatic access to magnitude was present from Year 1 and the distance effect signaled that a refined processing of numerical information had developed. Additionally, a parity judgment task showed that the onset of the Spatial-Numerical Association of Response Codes (SNARC) effect occurs in Year 2. These findings uncover the developmental timeline of how magnitude and spatial representations integrate with symbolic number knowledge during early learning of Arabic digits and resolve inconsistencies between previous developmental and experimental research lines.

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In this study we set out to dissociate the developmental time course of automatic symbolic number processing and cognitive control functions in grade 1-3 British primary school children. Event-related potential (ERP) and behavioral data were collected in a physical size discrimination numerical Stroop task. Task-irrelevant numerical information was processed automatically already in grade 1. Weakening interference and strengthening facilitation indicated the parallel development of general cognitive control and automatic number processing. Relationships among ERP and behavioral effects suggest that control functions play a larger role in younger children and that automaticity of number processing increases from grade 1 to 3.

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A general electrical model of a piezoelectric transducer for ultrasound applications consists of a capacitor in parallel with RLC legs. A high power voltage source converter can however generate significant voltage stress across the transducer that creates high leakage currents. One solution is to reduce the voltage stress across the piezoelectric transducer by using an LC filter, however a main drawback is changing the piezoelectric resonant frequency and its characteristics. Thereby it reduces the efficiency of energy conversion through the transducer. This paper proposes that a high frequency current source converter is a suitable topology to drive high power piezoelectric transducers efficiently.

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Context: It has been theorized that a positive Trendelenburg test (TT) indicates weakness of the stance hip-abductor (HABD) musculature, results in contralateral pelvic drop, and represents impaired load transfer, which may contribute to low back pain. Few studies have tested whether weakness of the HABDs is directly related to the magnitude of pelvic drop (MPD). Objective: To examine the relationship between HABD strength and MPD during the static TT and during walking for patients with nonspecific low back pain (NSLBP) and healthy controls (CON). A secondary purpose was to examine this relationship in NSLBP after a 3-wk HABD-strengthening program. Design: Quasi-experimental. Setting: Clinical research laboratory. Participants: 20 (10 NSLBP and 10 CON). Intervention: HABD strengthening. Main Outcome Measures: Normalized HABD strength, MPD during TT, and maximal pelvic frontal-plane excursion during walking. Results: At baseline, the NSLBP subjects were significantly weaker (31%; P = .03) than CON. No differences in maximal pelvic frontal-plane excursion (P = .72), right MPD (P = 1.00), or left MPD (P = .40) were measured between groups. During the static TT, nonsignificant correlations were found between left HABD strength and right MPD for NSLBP (r = -.32, P = .36) and CON (r = -.24, P = .48) and between right HABD strength and left MPD for NSLBP (r = -.24, P = .50) and CON (r = -.41, P = .22). Nonsignificant correlations were found between HABD strength and maximal pelvic frontal-plane excursion for NSLBP (r = -.04, P = .90) and CON (r = -.14, P = .68). After strengthening, NSLBP demonstrated significant increases in HABD strength (12%; P = .02), 48% reduction in pain, and no differences in MPD during static TT and maximal pelvic frontal-plane excursion compared with baseline. Conclusions: HABD strength was poorly correlated to MPD during the static TT and during walking in CON and NSLBP. The results suggest that HABD strength may not be the only contributing factor in controlling pelvic stability, and the static TT has limited use as a measure of HABD function.

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Purpose: To examine the relationship between hip abductor muscle (HABD) strength and the magnitude of pelvic drop (MPD) for patients with non-specific low back pain (NSLBP) and controls (CON) prior to and following a 3-week HABD strengthening protocol. At baseline, we hypothesized that NSLBP patients would exhibit reduced HABD strength and greater MPD compared to CON. Following the protocol, we hypothesized that strength would increase and MPD would decrease. Relevance: The Trendelenburg test (TT) is a common clinical test used to examine the ability of the HABD to maintain horizontal pelvic position during single limb stance. However, no study has specifically tested this theory. Moreover, no study has investigated the relationship between HABD strength and pelvic motion during walking or tested whether increased HABD strength would reduce the MPD. Methods: Quasi-experimental with 3-week exercise intervention. Fifteen NSLBP patients (32.5yrs,range 21-51yrs; VAS baseline: 5.3cm) and 10 CON (29.5yrs,range 22-47yrs) were recruited. Isometric HABD strength was measured using a force dynamometer and the average of three maximal voluntary contractions were normalized to body mass (N/kg). Two-dimensional MPD (degrees) was measured using a 60 Hz camera and was derived from two retroreflective-markers placed on the posterior superior iliac spines. MPD was measured while performing the static TT and while walking and averaged over 10 consecutive footfalls. NSLBP patients completed a 3-week HABD strengthening protocol consisting of 2 open-kinetic-chain exercises then all measures were repeated. Non-parametric analysis was used for group comparisons and correlation analysis. Results: At baseline, the NSLBP patients demonstrated 31% reduced HABD strength (mean=6.6 N/kg) compared to CON (mean=9.5 N/kg: p=0.03) and no significant differences in maximal pelvic frontal plane excursion while walking (NSLBP:mean=8.1°, CON:mean=7.1°: p=0.72). No significant correlations were measured between left HABD strength and right MPD (r=-0.37, p=0.11), or between right HABD strength and left MPD (r=-0.04, p=0.84) while performing the static TT. Following the 3-week strengthening protocol, NSLBP patients demonstrated a 12% improvement in strength (Post:mean=7.4 N/kg: p=0.02), a reduction in pain (VAS followup: 2.8cm), but no significant decreases in MPD while walking (p=0.92). Conclusions: NSLBP patients demonstrated reduced HABD strength at baseline and were able to increase strength and reduce pain in a 3-week period. However, despite increases in HABD strength, the NSLBP group exhibited similar MPD motion during the static TT and while walking compared to baseline and controls. Implications: The results suggest that the HABD alone may not be primarily responsible for controlling a horizontal pelvic position during static and dynamic conditions. Increasing the strength of the hip abductors resulted in a reduction of pain in NSLBP patients providing evidence for further research to identify specific musculature responsible for controlling pelvic motion.

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Tailoring the density of random single-walled carbon nanotube (SWCNT) networks is of paramount importance for various applications, yet it remains a major challenge due to the insufficient catalyst activation in most growth processes. Here we report on a simple and effective method to maximise the number of active catalyst nanoparticles using catalytic chemical vapor deposition (CCVD). By modulating short pulses of acetylene into a methane-based CCVD growth process, the density of SWCNTs is dramatically increased by up to three orders of magnitude without increasing the catalyst density and degrading the nanotube quality. In the framework of a vapor-liquid-solid model, we attribute the enhanced growth to the high dissociation rate of acetylene at high temperatures at the nucleation stage, which can be effective in both supersaturating the larger catalyst nanoparticles and overcoming the nanotube nucleation energy barrier of the smaller catalyst nanoparticles. These results are highly relevant to numerous applications of random SWCNT networks in next-generation energy, sensing and biomedical devices. © 2011 The Royal Society of Chemistry.

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In current bridge management systems (BMSs), load and speed restrictions are applied on unhealthy bridges to keep the structure safe and serviceable for as long as possible. But the question is, whether applying these restrictions will always decrease the internal forces in critical components of the bridge and enhance the safety of the unhealthy bridges. To find the answer, this paper for the first time in literature, looks into the design aspects through studying the changes in demand by capacity ratios of the critical components of a bridge under the train loads. For this purpose, a structural model of a simply supported bridge, whose dynamic behaviour is similar to a group of real railway bridges, is developed. Demand by capacity ratios of the critical components of the bridge are calculated, to identify their sensitivity to increase of speed and magnitude of live load. The outcomes of this study are very significant as they show that, on the contrary to what is expected, by applying restriction on speed, the demand by capacity ratio of components may increase and make the bridge unsafe for carrying live load. Suggestions are made to solve the problem.

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Bi3+ ions substituting at Ba-sites in a limited concentration range with another donor dopant occupying the Ti-sites in polycrystalline BaTiO3 enhanced the positive temperature coefficient of resistance (PTCR) by over seven orders of magnitude. These ceramics did not require normal post sinter annealing or a change to an oxygen atmosphere during annealing. These ceramics had low porosities coupled with better stabilities to large applied electric fields and chemically reducing atmospheres. Bi3+ ions limited the grain growth to less than 8 mum in size, they enhanced the concentration of acceptor-type trap centres at the grain-boundary-layer regions and maintained complete tetragonality at low grain sizes in BaTiO3 ceramics.

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One of the main disturbances in EEG signals is EMG artefacts generated by muscle movements. In the paper, the use of a linear phase FIR digital low-pass filter with finite wordlength precision coefficients is proposed, designed using the compensation procedure, to minimise EMG artefacts in contaminated EEG signals. To make the filtering more effective, different structures are used, i.e. cascading, twicing and sharpening (apart from simple low-pass filtering) of the designed FIR filter Modifications are proposed to twicing and sharpening structures to regain the linear phase characteristics that are lost in conventional twicing and sharpening operations. The efficacy of all these transformed filters in minimising EMG artefacts is studied, using SNR improvements as a performance measure for simulated signals. Time plots of the signals are also compared. Studies show that the modified sharpening structure is superior in performance to all other proposed methods. These algorithms have also been applied to real or recorded EMG-contaminated EEG signal. Comparison of time plots, and also the output SNR, show that the proposed modified sharpened structure works better in minimising EMG artefacts compared with other methods considered.

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Metal-based piezoresistive sensing devices could find a much wider applicability if their sensitivity to mechanical strain could be substantially improved. Here, we report a simple method to enhance the strain sensitivity of metal films by over two orders of magnitude and demonstrate it on specially designed microcantilevers. By locally inhomogenizing thin gold films using controlled electromigration, we have achieved a logarithmic divergence in the strain sensitivity with progressive microstructural modification. The enhancement in strain sensitivity could be explained using non-universal tunneling-percolation transport. We find that the Johnson noise limited signal-to-noise ratio is an order of magnitude better than silicon piezoresistors. This method creates a robust platform for engineering low resistance, high gauge factor metallic piezoresistors that may have profound impact on micro and nanoscale self-sensing technology. (C) 2012 American Institute of Physics. http://dx.doi.org/10.1063/1.4761817]

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We address the problem of signal reconstruction from Fourier transform magnitude spectrum. The problem arises in many real-world scenarios where magnitude-only measurements are possible, but it is required to construct a complex-valued signal starting from those measurements. We present some new general results in this context and show that the previously known results on minimum-phase rational transfer functions, and recoverability of minimum-phase functions from magnitude spectrum, form special cases of the results reported in this paper. Some simulation results are also provided to demonstrate the practical feasibility of the reconstruction methodology.