847 resultados para ponderomotive broadening


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Ce travail se veut d’un rapprochement aux pratiques et savoirs des peuples amazoniens à partir de discours produits par ces nations. Nous y interpréterons des chants sacrés, des narrations ancestrales et des textes académiques de penseurs autochtones. Ce travail indique que les pratiques amazoniennes s’inscrivent dans un contexte de significations qui considèrent que tout être vivant possède des pensées et un esprit; qu’il existe des êtres spirituels qui défendent ces êtres vivants contre les abus possibles. Les êtres humains doivent transcender leur état de conscience, se déplacer vers les mondes invisibles et initier la communication avec ces esprits, pour ainsi maintenir l’équilibre existentiel. Selon les pensées de l’Amazonie, les communautés humaines ne peuvent pas se concevoir comme autosuffisantes; elles doivent plutôt maintenir de constantes relations avec les multiples êtres qui peuplent leur environnement visible et les mondes invisibles. Les trois concepts clés qui permettent de rendre compte des pratiques des peuples amazoniens sont la déprédation, la transformation et l’équilibre. Par déprédation, nous entendons les pratiques amazoniennes qui impliquent une destruction des autres êtres afin de sustenter la vie de la communauté. Selon les pensées de l’Amazonie, cette déprédation devrait être mesurée, dans le but de ne pas tuer plus que nécessaire à la survie. La déprédation est régulée par les êtres spirituels. Les pratiques amazoniennes de transformation sont destinées à la sauvegarde des liens de la communauté, en transfigurant tout ce qui entre ou sort de cette dernière, de manière à ce qu’aucun agent externe ne mette en péril les liens affectifs. Les pratiques de déprédation et de transformation sont complémentaires et elles requièrent toutes les deux de se produire de manière équilibrée, en respectant les savoirs ancestraux et les lois cosmiques établies par les esprits supérieurs. En ce qui a trait à la méthode d’analyse, nous aborderons les discours de l’Amazonie à partir leur propre logique culturelle, sans imposer des méthodologies préétablies, ce qui donne comme résultat un travail académique qui approfondie la production intellectuelle interculturelle, puisque ce sont les voix indigènes qui expriment elles-mêmes leurs conceptions et le sens de leurs pratiques. Dans son ensemble, le travail engage un dialogue critique avec son champ d’étude en discutant ou en approfondissant certaines conceptions forgées par la littérature anthropologique consacrée à l’étude de la région, à partir des savoirs ancestraux amazoniens qui nourrissent les pratiques de ces nations.

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Ce mémoire vise à élargir l’interprétation du monument funéraire d’Henri II et Catherine de Médicis (1565-70) maintenant aménagé à la Basilique Saint-Denis à Paris, une œuvre que l’historiographie attribue conjointement au Primatice et à Germain Pilon. Fortement marquée par une perspective panosfkienne, la fortune critique de ce tombeau a privilégié des approches, qu’elles soient historicistes ou iconographiques, qui ont eu pour effet d’oblitérer la médialité du dispositif dans lequel le tombeau devait originellement paraître, soit la chapelle des Valois, mieux connue sous le nom de « rotonde des Valois ». Le présent travail se penche sur ce dispositif particulier en reformulant une approche propice à développer des outils méthodologiques adaptés au médium de la sculpture. De plus, il propose une hypothèse d’interprétation en liaison avec la commanditaire du tombeau, Catherine de Médicis. Nous verrons en effet que la construction d’une chapelle funéraire renforçait l’identification à la reine antique Artémise, ainsi que cela était suggéré dans un ouvrage composé par l’apothicaire de la reine, Nicolas Houel. Dans un contexte hostile aux prises de pouvoir féminin, Catherine se serait ainsi servie d’une fable amoureuse pour faciliter la construction de sa persona politique. Le mémoire s’attache plus précisément à examiner comment l’image traduit cette opération de refiguration du soi. Aussi, il s’inspire de l’importante réflexion menée ces dernières années en histoire de l’art et en anthropologie autour de la pensée d’Aby Warburg et s’applique à inscrire l’interprétation de l’image dans le champ de sa figurabilité.

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Mise en garde : Ce mémoire a été réalisé grâce au soutien financier du Fonds d’éducation et de saine gouvernance de l'Autorité des marchés financiers. Les informations, opinions et avis exprimés n'engagent que la responsabilité de Marie-Annick Laurendeau.

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This thesis is entitled “OPTICAL EMISSION DIAGNOSTICS OF LASER PRODUCED PLASMA FROM GRAPHITE AND YBa2Cu3O7. The work presented in this thesis covers the experimental results on the plasma produced with moderately high power laser with irradiance range in between 10 GW cm 2 to 100 GW cm -2. The characterization of laser produced plasma from solid targets viz. graphite and high temperature superconducting material like YBa2Cu3O7 have been carried out. The fundamental frequency from a Q - switched Nd: YAG laser with 9 ns pulse duration is used for the present studies. Various optical emission emission diagnostic techniques were employed for the the characterization of the LPP which include emission spectroscopy, time resolved studies, line broadening method etc. In order to understand the physical nature of the LPP like recombination, collisional excitation and the laser interaction with plasma, the time resolved studies offer the most logical approach

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Optical emission from TiO2 plasma, generated by a nanosecond laser is spectroscopically analysed. The main chemical species are identified and the spatio-temporal distribution of the plasma parameters such as electron temperature and density are characterized based on the study of spectral distribution of the line intensities and their broadening characteristics. The parameters of laser induced plasma vary quickly owing to its expansion at low background pressure and the possible deviations from local thermodynamic equilibrium conditions are tested to show its validity.

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Optical emission from TiO2 plasma, generated by a nanosecond laser is spectroscopically analysed. The main chemical species are identified and the spatio-temporal distribution of the plasma parameters such as electron temperature and density are characterized based on the study of spectral distribution of the line intensities and their broadening characteristics. The parameters of laser induced plasma vary quickly owing to its expansion at low background pressure and the possible deviations from local thermodynamic equilibrium conditions are tested to show its validity.

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Optical emission from TiO2 plasma, generated by a nanosecond laser is spectroscopically analysed. The main chemical species are identified and the spatio-temporal distribution of the plasma parameters such as electron temperature and density are characterized based on the study of spectral distribution of the line intensities and their broadening characteristics. The parameters of laser induced plasma vary quickly owing to its expansion at low background pressure and the possible deviations from local thermodynamic equilibrium conditions are tested to show its validity

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Optical emission from TiO2 plasma, generated by a nanosecond laser is spectroscopically analysed. The main chemical species are identified and the spatio-temporal distribution of the plasma parameters such as electron temperature and density are characterized based on the study of spectral distribution of the line intensities and their broadening characteristics. The parameters of laser induced plasma vary quickly owing to its expansion at low background pressure and the possible deviations from local thermodynamic equilibrium conditions are tested to show its validity.

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Laser radiation at 1.06 µm from a pulsed Nd:YAG laser was focused onto a multielement YBa2Cu3O7 target in vacuum and the plasma thus generated was studied using time-resolved spectroscopic techniques. Line broadening of the Ba I emission line at 553.5 nm was monitored as a function of time elapsed after the incidence of a laser pulse on the target. Measured line profiles of barium species were used to infer the electron density and temperature, and the time evolution of these important plasma parameters has been worked out.

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Time and space resolved studies of emission from CN molecules have been carried out in the plasma produced from graphite target by 1.06 urn pulses from a Q-switched Nd:YAG laser. Depending on the laser pulse energy, time of observation and position of the sampled volume of the plasma, the features of the emission spectrum are found to change drastically. The vibrational temperature and population distribution in the different vibrational levels have been studied as functions of distance, time, laser energy and ambient gas pressure. Evidence for nonlinear effects of the plasma medium such as self focusing which exhibits threshold-like behaviour are also obtained. Temperature and electron density of the plasma have been evaluated using the relative line intensities of successive ionization stages of carbon atom. These electron density measurements are verified by using Stark broadening method.

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Doppler limited high resolution spectrum in the wavelength region 17224 to 17236 cm−1 of the first positive system (B 3Π g −A 3Σ u + ) of the N2 molecule is recorded by optogalvanic spectroscopic technique using a single mode ring dye laser. It is observed that the intensity and line width of the rotational line increase with the discharge current. Dependence of the collision broadening coefficient on the current was also evaluated.

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Biotechnology is currently considered as a useful altemative to conventional process technology in industrial and catalytic fields. The increasing awareness of the need to create green and sustainable production processes in all fields of chemistry has stimulated materials scientists to search for innovative catalysts supports. lmmobilization of enzymes in inorganic matrices is very useful in practical applications due to the preserved stability and catalytic activity of the immobilized enzymes under extreme conditions. Nanostructured inorganic, organic or hybrid organic-inorganic nanocomposites present paramount advantages to facilitate integration and miniaturization of the devices (nanotechnologies), thus affording a direct connection between the inorganic, organic and biological worlds. These properties, combined with good chemical stability, make them competent candidates for designed biocatalysts, protein-separation devices, drug delivery systems, and biosensors Aluininosilicate clays and layered double hydroxides, displaying, respectively, cation and anion exchange properties, were found to be attractive materials for immobilization because of their hydrophilic, swelling and porosity properties, as well as their mechanical and thermal stability.The aim of this study is the replacement of inorganic catalysts by immobilized lipases to obtain purer and healthier products.Mesocellular silica foams were synthesized by oil-in-water microemulsion templating route and were functionalized with silane and glutaraldehyde. " The experimental results from IR spectroscopy and elemental analysis demonstrated the presence of immobilized lipase and also functionalisation with silane and glutaraldehyde on the supports.The present work is a comprehensive study on enzymatic synthesis of butyl isobutyrate through esterification reaction using lipase immobilized onto mesocellular siliceous foams and montmorillonite K-10 via adsorption and covalent binding. Moreover, the irnrnobil-ization does not modify the nature of the kinetic mechanism proposed which is of the Bi-Bi Ping—Pong type with inhibition by n-butanol. The immobilized biocatalyst can be commercially exploited for the synthesis of other short chain flavor esters. Mesocellular silica foams (MCF) were synthesized by microemusion templating method via two different routes (hydrothermal and room temperature). and were functionalized with silane and glutaraldehyde. Candida rugosa lipase was adsorbed onto MCF silica and clay using heptane as the coupling medium for reactions in non-aqueous media. I From XRD results, a slight broadening and lowering of d spacing values after immobilization and modification was observed in the case of MCF 160 and MCF35 but there was no change in the d-spacing in the case of K-10 which showed that the enzymes are adsorbed only on the external surface. This was further confirmed from the nitrogen adsorption measurements

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In the present thesis, possibility of beam shaping of sectoral horns and corner reflector systems'has been studied in detail. The experimental results obtained in the above two cases are compared. As far as the flanged sectoral horns are concerned, the special advantage is that the gain is increased without impairing impedance conditions. An intense study on corner reflector antennas shows that the been broadening or focussing will be possible by adjusting parameters involved. Beam tilting by imposing asymmetries is another interesting property of the systems. A comprehensive study of these fields has been presented in Chapter II. Chapter III is exclusively for describing the experimental techniques used in the present investigation. In Chapter IV, experimental results on flanged sectoral horns and corner reflector eyetses are presented. A comparative analysis of the experimental results obtained with flanged sectoral horns and corner reflector systems is presented in the Chapter V. The similarity and close resemblance in each aspects are shown by presenting typical results from these two eysteee. Theoretical aspects of both types of antennas are considered in Chapter VI. Attempts are made for co-ordinating the theoretical aspects and drawing a final conclusion. In Chapter VII. the final conclusion that the flanged sectoral horn may be considered as a corner reflector system has been drawn. The importance of the conclusions and usefulness are pointed out. The scope for further work in these lines has been indicated.

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Silver silica nanocomposites were obtained by the sol–gel technique using tetraethyl orthosilicate (TEOS) and silver nitrate (AgNO3) as precursors. The silver nitrate concentration was varied for obtaining composites with different nanoparticle sizes. The structural and microstructural properties were determined by x-ray diffractometry (XRD), Fourier transform infrared spectroscopy (FTIR) and transmission electron microscopy (TEM). X-ray photoelectron spectroscopic (XPS) studies were done for determining the chemical states of silver in the silica matrix. For the lowest AgNO3 concentration, monodispersed and spherical Ag crystallites, with an average diameter of 5 nm, were obtained. Grain growth and an increase in size distribution was observed for higher concentrations. The occurrence of surface plasmon resonance (SPR) bands and their evolution in the size range 5–10 nm is studied. For decreasing nanoparticle size, a redshift and broadening of the plasmon-related absorption peak was observed. The observed redshift and broadening of the SPR band was explained using modified Mie scattering theory

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Nanoparticles of manganese ferrite were prepared by the chemical co-precipitation technique. The dielectric parameters, namely, real and imaginary dielectric permittivity (ε and ε ), ac conductivity (σac) and dielectric loss tangent (tan δ), were measured in the frequency range of 100 kHz–8MHz at different temperatures. The variations of dielectric dispersion (ε ) and dielectric absorption (ε ) with frequency and temperature were also investigated. The variation of dielectric permittivity with frequency and temperature followed the Maxwell–Wagner model based on interfacial polarization in consonance with Koops phenomenological theory. The dielectric loss tangent and hence ε exhibited a relaxation at certain frequencies and at relatively higher temperatures. The dispersion of dielectric permittivity and broadening of the dielectric absorption suggest the possibility of a distribution of relaxation time and the existence of multiple equilibrium states in manganese ferrite. The activation energy estimated from the dielectric relaxation is found to be high and is characteristic of polaron conduction in the nanosized manganese ferrite. The ac conductivity followed a power law dependence σac = Bωn typical of charge transport assisted by a hopping or tunnelling process. The observed minimum in the temperature dependence of the frequency exponent n strongly suggests that tunnelling of the large polarons is the dominant transport process