974 resultados para Paleography, Indo-Aryan.


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Terrestrial water storage (TWS) plays a key role in the global water cycle and is highly influenced by climate variability and human activities. In this study, monthly TWS, rainfall and Ganga-Brahmaputra river discharge (GBRD) are analysed over India for the period of 2003-12 using remote sensing satellite data. The spatial pattern of mean TWS shows a decrease over a large and populous region of Northern India comprising the foothills of the Himalayas, the Indo-Gangetic Plains and North East India. Over this region, the mean monthly TWS exhibits a pronounced seasonal cycle and a large interannual variability, highly correlated with rainfall and GBRD variations (r > 0.8) with a lag time of 2 months and 1 month respectively. The time series of monthly TWS shows a consistent and statistically significant decrease of about 1 cm year(-1) over Northern India, which is not associated with changes in rainfall and GBRD. This recent change in TWS suggests a possible impact of rapid industrialization, urbanization and increase in population on land water resources. Our analysis highlights the potential of the Earth-observation satellite data for hydrological applications.

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The seasonality and mutual dependence of aerosol optical properties and cloud condensation nuclei (CCN) activity under varying meteorological conditions at the high-altitude Nainital site (2km) in the Indo-Gangetic Plains were examined using nearly year-round measurements (June 2011 to March 2012) at the Atmospheric Radiation Measurement mobile facility as part of the Regional Aerosol Warming Experiment-Ganges Valley Aerosol Experiment of the Indian Space Research Organization and the U.S. Department of Energy. The results from collocated measurements provided enhanced aerosol scattering and absorption coefficients, CCN concentrations, and total condensation nuclei concentrations during the dry autumn and winter months. The CCN concentration (at a supersaturation of 0.46) was higher during the periods of high aerosol absorption (single scattering albedo (SSA)<0.80) than during the periods of high aerosol scattering (SSA>0.85), indicating that the aerosol composition seasonally changes and influences the CCN activity. The monthly mean CCN activation ratio (at a supersaturation of 0.46) was highest (>0.7) in late autumn (November); this finding is attributed to the contribution of biomass-burning aerosols to CCN formation at high supersaturation conditions.

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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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The aerosol mass concentrations over several Indian regions have been simulated using the online chemistry transport model, WRF-Chem, for two distinct seasons of 2011, representing the pre-monsoon (May) and post-monsoon (October) periods during the Indo-US joint experiment `Ganges Valley Aerosol Experiment (GVAX)'. The simulated values were compared with concurrent measurements. It is found that the model systematically underestimates near-surface BC mass concentrations as well as columnar Aerosol Optical Depths (AODs) from the measurements. Examining this in the light of the model-simulated meteorological parameters, we notice the model overestimates both planetary boundary layer height (PBLH) and surface wind speeds, leading to deeper mixing and dispersion and hence lower surface concentrations of aerosols. Shortcoming in simulating rainfall pattern also has an impact through the scavenging effect. It also appears that the columnar AODs are influenced by the unrealistic emission scenarios in the model. Comparison with vertical profiles of BC obtained from aircraft-based measurements also shows a systematic underestimation by the model at all levels. It is seen that concentration of other aerosols, viz., dust and sea-salt are closely linked with meteorological conditions prevailing over the region. Dust is higher during pre-monsoon periods due to the prevalence of north-westerly winds that advect dust from deserts of west Asia into the Indo-Gangetic plain. Winds and rainfall influence sea-salt concentrations. Thus, the unrealistic simulation of wind and rainfall leads to model simulated dust and sea-salt also to deviate from the real values; which together with BC also causes underperformance of the model with regard to columnar AOD. It appears that for better simulations of aerosols over Indian region, the model needs an improvement in the simulation of the meteorology.

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Se establecieron una serie de ensayos preliminares y un ensayo definitivo con el propósito de lograr establecer en condiciones in vitro embriones cigóticos de semillas de frutas maduras e inmaduras de níspero (Manilkara zapota L). En los ensayos preliminares se trató de lograr la germinación de la semilla y el desarrollo de plántulas en diferentes condiciones: platos petri con papel filtro y agua destilada estéril, medio de cultivo líquido con y sin reguladores de crecimiento; y con y sin tela de venda como nodriza. El ensayo definitivo constó de dos fases: A) Establecimiento in vitro de nispero a partir de embriones cigóticos de semillas de frutas en sus dos estados de madurez (inmaduros-maduros), en trece variantes del medio de cultivo básico MS (1962), suplementado con diversas concentraciones y combinaciones de los reguladores de crecimiento ANA (Ácido Naftalen Acético), ffiA (Ácido Indo! Butírico), CA (Carbón activado), GA3 (Ácido Giberélico). B) La micropropagación de níspero en cuatro variantes del medio de cultivo MS (1962) a partir de trozos de tallos conteniendo yemas axilares de las plantas desarrolladas en la fase A de este ensayo. En ambos ensayos se utilizaron 20 repeticiones por tratamiento. Se logró obtener la germinación de semilla de nispero en ensayos de laboratorio en platos petri con papel filtro y agua destilada estéril, en tubos de ensayos conteniendo medio de cultivo líquido, el cual facilita la imbibición de la semilla pero puede causar afixia. En el establecimiento de los explantes la contaminación causada por hongos y bacterias fue inferior en los medios de cultivo conteniendo embriones cigóticos provenientes de frutas inmaduras. Las mayores alturas promedio por plantas se presentaron en los embriones provenientes de frutas maduras; las mismas alcanzaron el estadio de desarrollo número III (plantas formadas con las primeras hojas verdaderas y raíz), por el contrario las mayores longitudes promedios de raíces por plantas se obtuvieron en plantas desarrolladas a partir de embriones cigóticos provenientes de frutas inmaduras. El medio de cultivo 6 (MS + 2 mg/l de IBA) indujo los mejores resultados en altura y longitud promedio de raíces de plantas provenientes de ambos estados de madurez de la fruta. La micropropagación de plántulas a partir de trozos de tallos con yemas axilares no fue posible debido a que los explantes no lograron desarrollar raíces, aunque sí presentaron primordios foliares desarrollados.

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Presentado en el III Workshop F.E.R.C.A.N (Fontes Epigraphici Religionum Celticarum Aantiquarum)

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Apresenta a urna eletrônica como agente essencial para a manutenção da democracia. São apresentadas as origens do voto no Brasil, indo até a proposta e execução do ambicioso projeto de eleições gerais com base em urnas eletrônicas. Descreve como se deu o desenvolvimento do equipamento. Os requisitos de segurança da informação são apresentados no contexto da votação eletrônica tendo como parâmetro a norma ISO 27.002. Observa que há melhorias que devem ser continuamente realizadas a fim de garantir a efetiva realização de um processo eleitoral seguro e confiável.

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Iker bilduma = Colección Iker, nº 17

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[ES] Se ofrecen los nuevos nombres, repetidos o no, de unidades organizativas indígenas (cognationes, gentes y gentilitates) aparecidos desde la década de los 90 del pasado siglo y documentados en la epigrafía latina y celtibérica de la Hispania indoeuropea

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Indole concentrations of 114 samples of tropical shrimp, 3 samples of crayfish, and 3 samples of cold water crustaceans were determined. Cold water crustaceans contained less than 15 μg/kg indole, whereas crayfish contained between 62 and 123 μg indole/kg. In 81 samples (70 %) of tropical shrimp indole content was less than 50 μg/kg, but in 12 samples (11 %) indole content exceeded 250 μg/kg. Different batches of some products with high indole levels as well as of some products with low indole levels were analysed. Except for one sample high as well as low indole levels could be confirmed. Highest indole concentrations were determined in samples which origin was specified as South Pacific, Indo-Pacific, Malaysia, India and India/Vietnam

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Home to hundreds of millions of souls and land of excessiveness, the Himalaya is also the locus of a unique seismicity whose scope and peculiarities still remain to this day somewhat mysterious. Having claimed the lives of kings, or turned ancient timeworn cities into heaps of rubbles and ruins, earthquakes eerily inhabit Nepalese folk tales with the fatalistic message that nothing lasts forever. From a scientific point of view as much as from a human perspective, solving the mysteries of Himalayan seismicity thus represents a challenge of prime importance. Documenting geodetic strain across the Nepal Himalaya with various GPS and leveling data, we show that unlike other subduction zones that exhibit a heterogeneous and patchy coupling pattern along strike, the last hundred kilometers of the Main Himalayan Thrust fault, or MHT, appear to be uniformly locked, devoid of any of the “creeping barriers” that traditionally ward off the propagation of large events. The approximately 20 mm/yr of reckoned convergence across the Himalaya matching previously established estimates of the secular deformation at the front of the arc, the slip accumulated at depth has to somehow elastically propagate all the way to the surface at some point. And yet, neither large events from the past nor currently recorded microseismicity nearly compensate for the massive moment deficit that quietly builds up under the giant mountains. Along with this large unbalanced moment deficit, the uncommonly homogeneous coupling pattern on the MHT raises the question of whether or not the locked portion of the MHT can rupture all at once in a giant earthquake. Univocally answering this question appears contingent on the still elusive estimate of the magnitude of the largest possible earthquake in the Himalaya, and requires tight constraints on local fault properties. What makes the Himalaya enigmatic also makes it the potential source of an incredible wealth of information, and we exploit some of the oddities of Himalayan seismicity in an effort to improve the understanding of earthquake physics and cipher out the properties of the MHT. Thanks to the Himalaya, the Indo-Gangetic plain is deluged each year under a tremendous amount of water during the annual summer monsoon that collects and bears down on the Indian plate enough to pull it away from the Eurasian plate slightly, temporarily relieving a small portion of the stress mounting on the MHT. As the rainwater evaporates in the dry winter season, the plate rebounds and tension is increased back on the fault. Interestingly, the mild waggle of stress induced by the monsoon rains is about the same size as that from solid-Earth tides which gently tug at the planets solid layers, but whereas changes in earthquake frequency correspond with the annually occurring monsoon, there is no such correlation with Earth tides, which oscillate back-and-forth twice a day. We therefore investigate the general response of the creeping and seismogenic parts of MHT to periodic stresses in order to link these observations to physical parameters. First, the response of the creeping part of the MHT is analyzed with a simple spring-and-slider system bearing rate-strengthening rheology, and we show that at the transition with the locked zone, where the friction becomes near velocity neutral, the response of the slip rate may be amplified at some periods, which values are analytically related to the physical parameters of the problem. Such predictions therefore hold the potential of constraining fault properties on the MHT, but still await observational counterparts to be applied, as nothing indicates that the variations of seismicity rate on the locked part of the MHT are the direct expressions of variations of the slip rate on its creeping part, and no variations of the slip rate have been singled out from the GPS measurements to this day. When shifting to the locked seismogenic part of the MHT, spring-and-slider models with rate-weakening rheology are insufficient to explain the contrasted responses of the seismicity to the periodic loads that tides and monsoon both place on the MHT. Instead, we resort to numerical simulations using the Boundary Integral CYCLes of Earthquakes algorithm and examine the response of a 2D finite fault embedded with a rate-weakening patch to harmonic stress perturbations of various periods. We show that such simulations are able to reproduce results consistent with a gradual amplification of sensitivity as the perturbing period get larger, up to a critical period corresponding to the characteristic time of evolution of the seismicity in response to a step-like perturbation of stress. This increase of sensitivity was not reproduced by simple 1D-spring-slider systems, probably because of the complexity of the nucleation process, reproduced only by 2D-fault models. When the nucleation zone is close to its critical unstable size, its growth becomes highly sensitive to any external perturbations and the timings of produced events may therefore find themselves highly affected. A fully analytical framework has yet to be developed and further work is needed to fully describe the behavior of the fault in terms of physical parameters, which will likely provide the keys to deduce constitutive properties of the MHT from seismological observations.

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O dano e sua causa apresentam-se, em conjunto, como um dilema inerente a uma sociedade que incorporou o risco como produto do seu próprio desenvolvimento. Desde tempos imemoriais a solidariedade figura como instrumento imprescindível à composição das diferentes formas possíveis para minimizar os efeitos negativos do implemento de um risco seja através da transferência de suas consequências econômicas para quem, por sua atividade o produziu ou, esteja melhor preparado para suportá-lo. Entretanto, as formas privadas tradicionais, isoladamente mostram-se insuficientes para responder satisfatoriamente à necessidade de reparação dos danos na atualidade. Isto porque, via de regra, os instrumentos para tal foram desenvolvidas em uma perspectiva individual, tendo como premissa a identificação da causa do dano e, a partir daí, a possibilidade de imputação de responsabilidade. Contemporaneamente, contudo, os danos usualmente resultam de causas múltiplas e, mesmo quando decorrem de causa única, essa pode estar relacionada a um conjunto de agentes, de forma a não ser possível a individuação do ofensor. Neste contexto, torna-se imprescindível a construção de uma noção jurídica de causalidade, apta a solucionar questões críticas, tais como a do dano causado por membro indeterminado de um grupo. Esta noção, por seu turno, requer uma base solidária mais aprofundada, de sorte a permitir a reparação do dano injusto sofrido pela vítima, sem arruinar o ofensor. Afirma-se, então, que a reparação integral dos danos em uma sociedade de risco depende de uma nova concepção acerca da solidariedade: a solidariedade global. E, indo além, a fase atual impõe a necessidade de se repensar a própria base do sistema de responsabilidade civil, como decorrência necessária de uma nova orientação jus-filosófica, inspirada por valores personalistas e solidaristas e também em razão da própria evolução social que potencializou os problemas que gravitam em torno da solidariedade e do risco, notadamente em razão da coletivização das causas dos danos. Assim, se há cada vez mais solidariedade nas causas e nos danos, deve haver também solidariedade na reparação. Nessa perspectiva, a presente dissertação tratará da coletivização da responsabilidade civil em relação à causa dos danos, na hipótese de responsabilidade grupal, e em referência à reparação dos danos em uma perspectiva convergente dos institutos do seguro e da responsabilidade civil.

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O presente trabalho possui como objetivo central investigar a teoria acerca da origem da significação, presente na obra Ser e tempo, de Martin Heidegger, procurando mostrar em que medida a significação dos entes traz consigo a interpretação do conhecimento teórico como sendo uma transformação modal da relação semântica em que se movimenta medianamente o existente humano. Para tanto, procuraremos mostrar a partir da idéia de que existem dois extremos de um mesmo movimento de transformação semântica que caracterizam um processo de objetivação ou perda de sentido que a origem de sentido ou instância de produção de todos os conceitos e enunciados filosóficos reside no próprio ser-aí não como um sujeito cognoscente ou representacional, mas como um eu no sentido do si-mesmo próprio que, ao assumir a responsabilidade por seu ser, se mostra como sendo o ponto de vista modal a partir do qual é possível recorrer o sentido indo de encontro com sua própria atividade fundamental.

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The main objective of this 3.5 year project was to increase the productivity of reservoir fisheries and provide sustainable livelihoods to the rural poor through a series of interventions in tropical reservoirs. The main project activities focused on two reservoirs in the Indo-Gangetic basin (Dahob in Madhya Pradesh, and Pahuj in Uttar Pradesh, both in India), the Lake Nasser in Egypt as part as the Nile basin, and the Volta Lake in Ghana as part as the Volta basin. The project also encompassed an initial data inventory from a wide variety of tropical reservoirs within the three basins, and the detailed assessment of the selected reservoirs, including market evaluation and post-capture improvements. (PDF contains 117 pages)