1000 resultados para Estrelas. Momentum angular. Planeta extra-solar


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La mesura de la irradiància solar en superfície es fa mitjançant piranòmetres amb sensor termoelèctric o amb sensor de silici. Aquests darrers presenten una resposta espectral no uniforme i limitada a la banda de 400 a 1100 nm, i, a més, la seva sensibilitat depèn fortament de la temperatura. Els piranòmetres termoelèctrics, en canvi, presenten una resposta espectral uniforme en la banda solar, i un coeficient de temperatura reduït. L’objectiu de l’estudi que es presenta ha estat millorar l’acord entre les mesures d’irradiància global preses amb un piranòmetre termoelèctric CM11 de Kipp & Zonen, i diversos piranòmetres fotovoltaics o de silici Li200SA de Li-Cor. Com que la resposta angular dels sensors s’aparta en general de la resposta cosinus ideal, es proposen unes correccions a tal efecte. S’han analitzat les dades minutals corresponents a un cicle anual de mesures d’irradiància preses pels dos tipus de piranòmetres a l’estació radiomètrica de la Universitat de Girona. Les correccions proposades per la resposta angular dels instruments es basen en bibliografia prèvia, i també en simulacions realitzades amb un model espectral de transferència radiativa multicapa. La simulació ha permès obtenir correccions per compensar les diferents respostes angulars i espectrals dels dos tipus d’instruments. Per a cels serens, les correccions angulars i espectrals milloren notablement l’acord entre les mesures dels dos tipus de piranòmetres. També es proposa una correcció de l’efecte de la temperatura sobre la mesura dels piranòmetres de silici, obtinguda empíricament. Malgrat que les correccions s’han obtingut per a cels serens, han estat també aplicades a condicions de cel ennuvolat, caracteritzades objectivament mitjançant un algorisme basat en mesures d’irradiància global i difusa. Finalment s’ha comprovat que les correccions també milloren l’acord entre les mesures dels dos tipus de sensors independentment de l’extensió de la coberta de núvols

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The relationship between the magnetic dipole-dipole potential energy function and its quantum analogue is presented in this work. It is assumed the reader is familiar with the classical expression of the dipolar interaction and has basic knowledge of the quantum mechanics of angular momentum. Except for these two points only elementary steps are involved.

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El Nadal és una època plena de simbolisme, on les converses amb familiars i amics són protagonistes. Hi ha una frase bíblica,"I el Verb es va fer home i va conviure amb nosaltres" (Joan1,1-14), que sempre m'hi fa pensar, atès que en un context religiós el mot verb pot significar precisament això, "expressió d'idees i pensaments mitjançant la paraula" (DIEC2). Actualment al nostre planeta es parlen més de 6.800 idiomes. Hi ha idiomes tonals, com el mandarí i el ioruba, on el to amb què es pronuncia una paraula afecta el seu significat [...].

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Nous analysons les oscillations torsionnelles se développant dans une simulation magnétohydrodynamique de la zone de convection solaire produisant des champs magnétiques de type solaire (champs axisymétriques subissant des inversions de polarités régulières sur des échelles temporelles décadaires). Puisque ces oscillations sont également similaires à celles observées dans le Soleil, nous analysons les dynamiques zonales aux grandes échelles. Nous séparons donc les termes aux grandes échelles (force de Coriolis exercée sur la circulation méridienne et les champs magnétiques aux grandes échelles) de ceux aux petites échelles (les stress de Reynolds et de Maxwell). En comparant les flux de moments cinétiques entre chacune des composantes, nous nous apercevons que les oscillations torsionnelles sont maintenues par l’écoulement méridien aux grandes échelles, lui même modulé par les champs magnétiques. Une analyse d’échange d’énergie confirme ce résultat, puisqu’elle montre que seul le terme comprenant la force de Coriolis injecte de l’énergie dans l’écoulement. Une analyse de la dynamique rotationnelle ayant lieu à la limite de la zone stable et de la zone de convection démontre que celle-ci est fortement modifiée lors du passage de la base des couches convectives à la base de la fine tachocline s’y formant juste en-dessous. Nous concluons par une discussion au niveau du mécanisme de saturation en amplitude dans la dynamo s’opérant dans la simulation ainsi que de la possibilité d’utiliser les oscillations torsionnelles comme précurseurs aux cycles solaires à venir.

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Atmospheric surface boundary layer parameters vary anomalously in response to the occurrence of annular solar eclipse on 15th January 2010 over Cochin. It was the longest annular solar eclipse occurred over South India with high intensity. As it occurred during the noon hours, it is considered to be much more significant because of its effects in all the regions of atmosphere including ionosphere. Since the insolation is the main driving factor responsible for the anomalous changes occurred in the surface layer due to annular solar eclipse, occurred on 15th January 2010, that played very important role in understanding dynamics of the atmosphere during the eclipse period because of its coincidence with the noon time. The Sonic anemometer is able to give data of zonal, meridional and vertical wind as well as the air temperature at a temporal resolution of 1 s. Different surface boundary layer parameters and turbulent fluxes were computed by the application of eddy correlation technique using the high resolution station data. The surface boundary layer parameters that are computed using the sonic anemometer data during the period are momentum flux, sensible heat flux, turbulent kinetic energy, frictional velocity (u*), variance of temperature, variances of u, v and w wind. In order to compare the results, a control run has been done using the data of previous day as well as next day. It is noted that over the specified time period of annular solar eclipse, all the above stated surface boundary layer parameters vary anomalously when compared with the control run. From the observations we could note that momentum flux was 0.1 Nm 2 instead of the mean value 0.2 Nm-2 when there was eclipse. Sensible heat flux anomalously decreases to 50 Nm 2 instead of the mean value 200 Nm 2 at the time of solar eclipse. The turbulent kinetic energy decreases to 0.2 m2s 2 from the mean value 1 m2s 2. The frictional velocity value decreases to 0.05 ms 1 instead of the mean value 0.2 ms 1. The present study aimed at understanding the dynamics of surface layer in response to the annular solar eclipse over a tropical coastal station, occurred during the noon hours. Key words: annular solar eclipse, surface boundary layer, sonic anemometer

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El CEIP Manuel P??rez de Bollullos Par del Condado (Huelva) ha recibido el Primer Premio de P??ginas Web Educativas de la Junta de Andaluc??a, y ha sido galardonado con la Medalla de Oro al M??rito Educativo

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Para ver el contenido de los CD es necesario ejecutar el instalador (volumen 20). Para utilizar el atlas se necesita también el CD Atlas II

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Para ver el contenido de los CD es necesario ejecutar el instalador (volumen 20). Para utilizar el atlas se necesita también el CD Atlas I

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Se presenta un objeto digital educativo pensado para alumnos de sexto curso de Primaria. Se pretende que conozcan los distintos planetas y estrellas que componen el Sistema Solar; saber ubicar la Tierra dentro del universo, conociendo a qué galaxia y planeta pertenece; conocer algunas características de los astros que componen el sistema solar; reforzar en el alumnado el hábito de participar activamente en su aprendizaje.

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Neste artigo pretendemos abordar a relação entre museologia e proteção do meio ambiente tendo em conta que há necessidade premente de por todos os meios disponíveis salvaguardarmos a continuidade da vida de todos os Seres que habitam este Planeta. Com essa finalidade apresentamos algumas soluções técnicas relativamente à utilização da energia solar com utilização na produção de eletricidade passível de ser aplicada nos edifícios destinados a Museus ou Centros Culturais. Propõe-se e desenvolve-se a energia solar fotovoltaica como solução de elevado nível de eficiência para produção de energia elétrica uma vez que é de fácil integração em praticamente todos os revestimentos e/ou estruturas de edifícios quer existentes quer a construir de raiz.

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We use a simplified atmospheric general circulation model (AGCM) to investigate the response of the lower atmosphere to thermal perturbations in the lower stratosphere. The results show that generic heating of the lower stratosphere tends to weaken the sub-tropical jets and the tropospheric mean meridional circulations. The positions of the jets, and the extent of the Hadley cells, respond to the distribution of the stratospheric heating, with low latitude heating displacing them poleward, and uniform heating displacing them equatorward. The patterns of response to the low latitude heating are similar to those found to be associated with solar variability in previous observational data analysis, and to the effects of varying solar UV radiation in sophisticated AGCMs. In order to investigate the chain of causality involved in converting the stratospheric thermal forcing to a tropospheric climate signal we conduct an experiment which uses an ensemble of model spin-ups to analyse the time development of the response to an applied stratospheric perturbation. We find that the initial effect of the change in static stability at the tropopause is to reduce the eddy momentum flux convergence in this region. This is followed by a vertical transfer of the momentum forcing anomaly by an anomalous mean circulation to the surface, where it is partly balanced by surface stress anomalies. The unbalanced part drives the evolution of the vertically integrated zonal flow. We conclude that solar heating of the stratosphere may produce changes in the circulation of the troposphere even without any direct forcing below the tropopause. We suggest that the impact of the stratospheric changes on wave propagation is key to the mechanisms involved.

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The last 50 years have seen enormous advances in our knowledge and understanding of the stratosphere and mesosphere, which together comprise the middle atmosphere. Beginning from a phase of basic discovery, we have now reached the stage where most observed phenomena can be modelled from first principles with a reasonable degree of fidelity, and where there is an overall theoretical framework which can be tested against measurements and models. This review surveys a number of major surprises in middle atmosphere science over the past 50 years. A phenomenological and historical approach is adopted in each case, leading up to the current literature. Along the way, a common thread emerges: the central role of waves, of various types, in redistributing angular momentum within the atmosphere, and the global nature of the atmospheric response to such redistribution

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Since the advent of wide-angle imaging of the inner heliosphere, a plethora of techniques have been developed to investigate the three-dimensional structure and kinematics of solar wind transients, such as coronal mass ejections, from their signatures in single- and multi-spacecraft imaging observations. These techniques, which range from the highly complex and computationally intensive to methods based on simple curve fitting, all have their inherent advantages and limitations. In the analysis of single-spacecraft imaging observations, much use has been made of the fixed φ fitting (FPF) and harmonic mean fitting (HMF) techniques, in which the solar wind transient is considered to be a radially propagating point source (fixed φ, FP, model) and a radially expanding circle anchored at Sun centre (harmonic mean, HM, model), respectively. Initially, we compare the radial speeds and propagation directions derived from application of the FPF and HMF techniques to a large set of STEREO/Heliospheric Imager (HI) observations. As the geometries on which these two techniques are founded constitute extreme descriptions of solar wind transients in terms of their extent along the line of sight, we describe a single-spacecraft fitting technique based on a more generalized model for which the FP and HM geometries form the limiting cases. In addition to providing estimates of a transient’s speed and propagation direction, the self-similar expansion fitting (SSEF) technique provides, in theory, the capability to estimate the transient’s angular extent in the plane orthogonal to the field of view. Using the HI observations, and also by performing a Monte Carlo simulation, we assess the potential of the SSEF technique.

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Anthropogenic aerosols in the atmosphere have the potential to affect regional-scale land hydrology through solar dimming. Increased aerosol loading may have reduced historical surface evaporation over some locations, but the magnitude and extent of this effect is uncertain. Any reduction in evaporation due to historical solar dimming may have resulted in an increase in river flow. Here we formally detect and quantify the historical effect of changing aerosol concentrations, via solar radiation, on observed river flow over the heavily industrialized, northern extra-tropics. We use a state-of-the-art estimate of twentieth century surface meteorology as input data for a detailed land surface model, and show that the simulations capture the observed strong inter-annual variability in runoff in response to climatic fluctuations. Using statistical techniques, we identify a detectable aerosol signal in the observed river flow both over the combined region, and over individual river basins in Europe and North America. We estimate that solar dimming due to rising aerosol concentrations in the atmosphere around 1980 led to an increase in river runoff by up to 25% in the most heavily polluted regions in Europe. We propose that, conversely, these regions may experience reduced freshwater availability in the future, as air quality improvements are set to lower aerosol loading and solar dimming.

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We study the causal chain of events by which variations in the solar wind dynamic pressure cause the magnetopause boundary to move and excite magnetic perturbations at the ground. The observation of large ground magnetic transients is argued to be due to the coupling of the magnetohydrodynamic compressional wave to the field-guided Alfvén wave, which carrying current, can thereby transfer momentum to the ionosphere. The study highlights the similarity of the ionospheric signatures at a single station arising from the response of the coupled magnetosphere-ionosphere system to disparate impulsive processes at the magnetopause.