461 resultados para Hamed, Amir


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A parametric study was carried out to determine the Stress Intensity Factor (SIF) in a cracked circular ring by using the photoelastic technique. The stress intensity factors for mode I deformation were determined by subjecting the specimens to the tensile loading from inner boundary and through the holes. The results of Non-Dimensional Stress Intensity Factor (NDSIF) variation with non-dimensional crack length for both methods of loading are compared with each other and with published results.

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In this paper we present the design of ``e-SURAKSHAK,'' a novel cyber-physical health care management system of Wireless Embedded Internet Devices (WEIDs) that sense vital health parameters. The system is capable of sensing body temperature, heart rate, oxygen saturation level and also allows noninvasive blood pressure (NIBP) measurement. End to end internet connectivity is provided by using 6LoWPAN based wireless network that uses the 802.15.4 radio. A service oriented architecture (SOA) 1] is implemented to extract meaningful information and present it in an easy-to-understand form to the end-user instead of raw data made available by sensors. A central electronic database and health care management software are developed. Vital health parameters are measured and stored periodically in the database. Further, support for real-time measurement of health parameters is provided through a web based GUI. The system has been implemented completely and demonstrated with multiple users and multiple WEIDs.

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Gold-silica hybrids are appealing in different fields of applications like catalysis, sensorics, drug delivery, and biotechnology. In most cases, the morphology and distribution of the heterounits play significant roles in their functional behavior. Methods of synthesizing these hybrids, with variable ordering of the heterounits, are replete; however, a complete characterization in three dimensions could not be achieved yet. A simple route to the synthesis of Au-decorated SiO2 spheres is demonstrated and a study on the 3D ordering of the heterounits by scanning transmission electron microscopy (STEM) tomography is presentedat the final stage, intermediate stages of formation, and after heating the hybrid. The final hybrid evolves from a soft self-assembled structure of Au nanoparticles. The hybrid shows good thermal stability up to 400 degrees C, beyond which the Au particles start migrating inside the SiO2 matrix. This study provides an insight in the formation mechanism and thermal stability of the structures which are crucial factors for designing and applying such hybrids in fields of catalysis and biotechnology. As the method is general, it can be applied to make similar hybrids based on SiO2 by tuning the reaction chemistry as needed.

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A mathematical model is developed to simulate the transport and deposition of virus-sized colloids in a cylindrical pore throat considering various processes such as advection, diffusion, colloid-collector surface interactions and hydrodynamic wall effects. The pore space is divided into three different regions, namely, bulk, diffusion and potential regions, based on the dominant processes acting in each of these regions. In the bulk region, colloid transport is governed by advection and diffusion whereas in the diffusion region, colloid mobility due to diffusion is retarded by hydrodynamic wall effects. Colloid-collector interaction forces dominate the transport in the potential region where colloid deposition occurs. The governing equations are non-dimensionalized and solved numerically. A sensitivity analysis indicates that the virus-sized colloid transport and deposition is significantly affected by various pore-scale parameters such as the surface potentials on colloid and collector, ionic strength of the solution, flow velocity, pore size and colloid size. The adsorbed concentration and hence, the favorability of the surface for adsorption increases with: (i) decreasing magnitude and ratio of surface potentials on colloid and collector, (ii) increasing ionic strength and (iii) increasing pore radius. The adsorbed concentration increases with increasing Pe, reaching a maximum value at Pe = 0.1 and then decreases thereafter. Also, the colloid size significantly affects particle deposition with the adsorbed concentration increasing with increasing particle radius, reaching a maximum value at a particle radius of 100 nm and then decreasing with increasing radius. System hydrodynamics is found to have a greater effect on larger particles than on smaller ones. The secondary minimum contribution to particle deposition has been found to increase as the favorability of the surface for adsorption decreases. The sensitivity of the model to a given parameter will be high if the conditions are favorable for adsorption. The results agree qualitatively with the column-scale experimental observations available in the literature. The current model forms the building block in upscaling colloid transport from pore scale to Darcy scale using Pore-Network Modeling. (C) 2014 Elsevier By. All rights reserved.

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Nanoparticle deposition behavior observed at the Darcy scale represents an average of the processes occurring at the pore scale. Hence, the effect of various pore-scale parameters on nanoparticle deposition can be understood by studying nanoparticle transport at pore scale and upscaling the results to the Darcy scale. In this work, correlation equations for the deposition rate coefficients of nanoparticles in a cylindrical pore are developed as a function of nine pore-scale parameters: the pore radius, nanoparticle radius, mean flow velocity, solution ionic strength, viscosity, temperature, solution dielectric constant, and nanoparticle and collector surface potentials. Based on dominant processes, the pore space is divided into three different regions, namely, bulk, diffusion, and potential regions. Advection-diffusion equations for nanoparticle transport are prescribed for the bulk and diffusion regions, while the interaction between the diffusion and potential regions is included as a boundary condition. This interaction is modeled as a first-order reversible kinetic adsorption. The expressions for the mass transfer rate coefficients between the diffusion and the potential regions are derived in terms of the interaction energy profile. Among other effects, we account for nanoparticle-collector interaction forces on nanoparticle deposition. The resulting equations are solved numerically for a range of values of pore-scale parameters. The nanoparticle concentration profile obtained for the cylindrical pore is averaged over a moving averaging volume within the pore in order to get the 1-D concentration field. The latter is fitted to the 1-D advection-dispersion equation with an equilibrium or kinetic adsorption model to determine the values of the average deposition rate coefficients. In this study, pore-scale simulations are performed for three values of Peclet number, Pe = 0.05, 5, and 50. We find that under unfavorable conditions, the nanoparticle deposition at pore scale is best described by an equilibrium model at low Peclet numbers (Pe = 0.05) and by a kinetic model at high Peclet numbers (Pe = 50). But, at an intermediate Pe (e.g., near Pe = 5), both equilibrium and kinetic models fit the 1-D concentration field. Correlation equations for the pore-averaged nanoparticle deposition rate coefficients under unfavorable conditions are derived by performing a multiple-linear regression analysis between the estimated deposition rate coefficients for a single pore and various pore-scale parameters. The correlation equations, which follow a power law relation with nine pore-scale parameters, are found to be consistent with the column-scale and pore-scale experimental results, and qualitatively agree with the colloid filtration theory. These equations can be incorporated into pore network models to study the effect of pore-scale parameters on nanoparticle deposition at larger length scales such as Darcy scale.

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A real-space high order finite difference method is used to analyze the effect of spherical domain size on the Hartree-Fock (and density functional theory) virtual eigenstates. We show the domain size dependence of both positive and negative virtual eigenvalues of the Hartree-Fock equations for small molecules. We demonstrate that positive states behave like a particle in spherical well and show how they approach zero. For the negative eigenstates, we show that large domains are needed to get the correct eigenvalues. We compare our results to those of Gaussian basis sets and draw some conclusions for real-space, basis-sets, and plane-waves calculations. (C) 2016 AIP Publishing LLC.

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Abstract: During extensive salvage excavations carried out during the years 2004-2008 in a large Early Islamic industrial area at the vicinities of Ramla, in Central Israel, an unparalleled industrial device was unearthed. The star-shaped, soil embedded installation, whose lower part was preserved, consisted of a central pottery jar surrounded by five minor jars, linked by ceramic pipes. Evidence of heat was observed mainly around the central vessel, and metal hollow cones perforated in the tip were found inside the surrounding jars. Although the manufacturing procedures and operation techniques of the installation are not completely clear, it is proposed that the installation is part of an industrial workshop or an alchemy laboratory. Both industry and alchemy were well-developed during the Early Islamic period and very often closely related, to the point that sometimes it is difficult to distinguish between them. The identification proposed is based on comparisons with tools described in literary sources, and somewhat later drawings and etchings. Circumstantial ceramic evidence was found, as well as the proximity of a bathhouse whose guests could have been the consumers of perfumes and unguents seem to reinforce this possibility. Due to the poor state of preservation of the device and the lack of available comparisons, the identification proposed here is tentative, and future research coupled with eventual new discoveries is needed in order to clarify this matter.

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Sumario -- Colaboraciones -- Iron Age Complex, Radiocarbon Dates and Edom: Working with the Data and Debates / Thomas E. Levy ; Mohammad Najjar ; Thomas Higham -- Some Notes on Inscriptional Genres and the Siloam Tunnel Inscription / Rochelle I. Altman -- Redistribution and Markets in the Economy of Ancient Mesopotamia: Updating Polanyi / Morris Silver -- De la evocación del pasado: la narrative bíblica y la historiografía clásica en comparación / Emanuel Pfoh -- Réalité et importance de la chasse dans les communautés halafiennes en Mésopotamie du Nord et au Levant Nord au VI millénaire avant J.-C. / Alain Gaulon -- “Lo que nuestros padres nos contaron” (Sal 78,3): el Antiguo Testamento y la Historia de Israel / Gabriel M. Nápole -- Mummy 61074: a Strange Case of Mistaken Identity / Shawn McAvoy -- The Pig´s Testimony / Gidi Yahalom -- Centro y Periferia en el Antiguo Israel: Nuevas aproximaciones a las prácticas funerarias del Calcolítico en la Planicie Costera / Amir Gorzalczany -- El Moderno Sistema-Mundo y la Evolución / Immanuel Wallerstein -- Reportes de excavación -- The Rope Cave at Mersa Gawasis: A Preliminary Report / André J. Veldmeijer & Chiara Zazzaro -- Reseñas bibliográficas

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CONTENTS: First one-stop aqua shop in Pakistan, by Syed Nadeem Sharib and Muhammad Junaid Wattoo. Dad Karim: a fisherman of Gwadar, by Abdul Rahim. Learning to fish in the deep sea of Sindh Province, by Muhammad Alam. Freshwater prawn fishery of Pakistan, by Muhammad Yaqoob. Cephalopod fishery: a local technique to catch cuttlefish in the coastal waters of Pakistan, by Shabir Ali Amir. Grouper culture in Pakistan, by S. Makhdoom Hussain and Zakia Khatoon.

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Duración (en horas): Más de 50 horas. Destinatario: Estudiante y Docente

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Mechanical resonators are the most basic and ubiquitous physical systems known. In on-chip form, they are used to process high frequency signals in every cell phone, television, and laptop. They have also been in the last few decades in different shapes and forms, a critical part of progress in quantum information sciences with kilogram-scale mirrors for gravitational wave detection measuring motion at its quantum limits, and the motion of single ions being used to link qubits for quantum computation.

Optomechanics is a field primarily concerned with coupling light to the motion of mechanical structures. This thesis contains descriptions of recent work with mechanical systems in the megahertz to gigahertz frequency range, formed by nanofabricating novel photonic/phononic structures on a silicon chip. These structures are designed to have both optical and mechanical resonances, and laser light is used to address and manipulate their motional degrees of freedom through radiation pressure forces. We laser cool these mechanical resonators to their ground states, and observe for the first time the quantum zero-point motion of a nanomechanical resonator. Conversely, we show that engineered mechanical resonances drastically modify the optical response of our structures, creating large effective optical nonlinearities not present in bulk silicon. We experimentally demonstrate aspects of these nonlinearities by proposing and observing ``electromagnetically induced transparency'' and light slowed down to 6 m/s, as well as wavelength conversion, and generation of nonclassical optical radiation. Finally, the application of optomechanics to longstanding problems in quantum and classical communications are proposed and investigated.

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Na década de 20, Mário de Andrade e Sérgio Buarque de Holanda, fizeram parte do Movimento Modernista Brasileiro que tinha como objetivo modificar um sistema de valores culturais e estéticos e inaugurou uma nova época na história do pensamento artístico, literário e social brasileiro. Ao buscar uma originalidade literária inspirada em assuntos nacionais e no respeito as nossas tradições, o Modernismo abriu um amplo debate entre os escritores daquela geração sobre como uma nacionalidade deveria ser expressa para que o país tivesse uma literatura própria e universal e uma cultura considerada autêntica. A ideia de buscar uma autenticidade cultural brasileira na arte foi compartilhada pelos escritores modernistas, mas como essa busca seria feita foi vista de diferentes formas pelos autores do movimento, como Sérgio Buarque de Holanda e Mário de Andrade, que assumiram posições contrárias sobre como uma identidade nacional deveria ser construída. O objetivo do trabalho será examinar o diálogo travado pelos dois autores, onde eles definem suas posições diante da modernidade e seus impasses, no Brasil e na literatura brasileira. Serão analisadas também as divergências que existiam nos ideais dos autores, já que trilharam caminhos distintos dentro do movimento modernista e se posicionaram de forma diferente diante da questão da construção nacional e da busca de uma cultura nacional.

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Nivel educativo: Grado. Duración (en horas): Más de 50 horas

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A tese procura compreender quais ações sociais estão presentes na recepção e produção de obras de arte contemporânea. O ponto de vista da etnometodologia é de que os processos de interação são originários e formais, pois o sujeito fenomenológico não se percebe, é sempre o outro para o qual se dirige. E, ao mesmo tempo, as ações sociais e interpretações são orientadas por métodos (pressupostos e subentendidos) compartilhados entre agentes. Para investigar estes métodos, deve-se situá-los no contexto de uso, as circunstâncias concretas, que os tornam observáveis e relatáveis (accountable) por meio de operações de visibilização e/ou ocultamento, antecipação e/ou aguardo. A etnometodologia observa as ações sociais em situações rotineiras, nas quais os agentes lançam mão do conhecimento que compartilham e esperam que os outros façam o mesmo. É quando se age sem pensar. As artes são frequentemente analisadas segundo as diferenças produzidas nas relações cotidianas, oferecendo outros olhares e deslocamentos para o que já é habitual. Não negamos esta condição, mas compreendemos também que a observação de artes não se dá fora do mundo social. Cotidianamente, os agentes utilizam recursos de identificação das circunstâncias em que se encontram, do interlocutor com quem interage e do ambiente onde se insere. O que significa que estes recursos estão disponíveis a qualquer pessoa e são levados para o interior de galerias e museus, à revelia de observadores, artistas e instituições. Para qualquer um que ocupe a posição de observador da obra, as circunstâncias concretas da recepção (a obra, o texto da crítica, a fala do artista, a ação dos outros visitantes, etc.), exigem, deste agente, operações semelhantes às utilizadas no cotidiano. Estas operações foram investigadas nas entrevistas com público e artistas, nas quais se buscou reconhecer quais recursos e métodos compartilhados com a obra, o público, os outros artistas e a crítica, eles lançam mão quando ocupam as posições de observador ou produtor de obras de arte.

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O escritor, jornalista e literato Afonso Henriques de Lima Barreto deixou registrados, em praticamente todos os seus escritos, suas impressões sobre as mudanças sociais, políticas e urbanas, sofridas pela cidade do Rio, na Primeira República. A partir de trechos de sua obra e de sua biografia, vão ser analisadas tais transformações à luz da própria avaliação do autor. Serão abordadas as marcas deixadas por modificações urbanas e topográficas ocorridas na então cidade-capital Rio de Janeiro, que se calcaram sobre o velho cenário da cidade, afundando-o, a fim de apagá-lo da memória dos habitantes, ao mesmo tempo em que se erigiam como metáforas de suposto progresso e de modernidade. Metáforas formam em nós, engramas, isto é, marcas que podem ficar retidas em nossa memória pela ação da literariedade que possuem. Literariedade que tem sempre algum espaço nos mais diversos tipos e gêneros de narrativa. Estas marcas de transformações urbanas atingiram de algum modo a rotina diária de parte considerável dos atores que viveram naquele período, entre eles o próprio Lima Barreto. Este trabalho se sustenta, então, no tripé biografia-literatura-metáfora, alinhavado pelas marcas de remodelação da cidade do Rio. Cidade contada por Lima Barreto, durante a Primeira República, numa narrativa que flerta com a etnografia.