999 resultados para basic matrix


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L’objet de ce mémoire est d’explorer le lien étroit qui existe entre la pratique de l’autobiographie et l’écriture comme forme d’engagement dans l’œuvre de Simone de Beauvoir, grâce à une analyse du genre ambigu de L’Amérique au jour le jour et des discours politiques qu’il renferme. Bien que L’Amérique au jour le jour constitue le corpus principal de ce mémoire, nous utiliserons aussi des textes contemporains à la rédaction du journal de voyage américain pour guider notre classification générique, dont les Lettres à Nelson Algren, les Lettres à Sartre et Les Mandarins, ainsi que les volumes de l’ensemble autobiographique beauvoirien qui portent sur l’après-guerre, même si ceux-ci sont postérieurs à la rédaction du journal. À l’aide de concepts issus de la poétique des genres, comme les questions de hiérarchie, de proportion, d’intention et de programme, et de l’éthique de l’engagement de l’écrivain telle que définie par la notion sartrienne de l’engagement, nous tenterons de démontrer que l’ambiguïté générique de L’Amérique au jour le jour relève d’une action délibérée de l’auteure visant à mettre en péril son capital symbolique pour assurer la crédibilité de son engagement intellectuel. Une fois les concepts précités définis, le deuxième chapitre de notre mémoire s’attardera à explorer toutes les facettes de l’ambiguïté générique du journal américain, alors que le troisième chapitre démontrera le lien entre les écritures intimes et l’engagement, tout en explorant les formes que prend l’engagement dans le livre. Pour ce faire, nous analyserons trois discours politiques tenus par Beauvoir dans son œuvre : la critique du consumérisme américain, la critique de la condition des Noirs et la critique de la femme américaine. Nous conclurons notre mémoire en démontrant que L’Amérique au jour le jour est devenu une sorte de matrice dans la pratique autobiographique et scripturaire de Simone de Beauvoir, ainsi que dans son engagement.

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Thèse numérisée par la Division de la gestion de documents et des archives de l'Université de Montréal

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Mémoire numérisé par la Division de la gestion de documents et des archives de l'Université de Montréal

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De la capacité d’une société à repenser ses liens sociaux, dépend son développement à la fois politique, social et économique. L’État peut, pour contribuer de manière déterminante à la production de sens, développer des outils, entre autres des mécanismes de redistribution, susceptibles d’assurer la solidarité et la cohésion sociale. L’enjeu est d’importance pour certains pays comme la Namibie, dont l'histoire est marquée par le colonialisme et l'apartheid ─desquels il s'est libéré il y a à peine plus de vingt ans─ et qui sont construits sur une logique de séparation inégalitaire des droits et des ressources. À partir de l'exemple du Basic Income Grant (BIG), projet-pilote de revenu citoyen garanti mis en place dans un village de la Namibie entre 2007 et 2009, ce mémoire propose d'explorer l'apport du concept d'empowerment dans ce projet en tant qu'outil de déconstruction de ces structures inégalitaires. Après avoir exposé différentes conceptions des notions de pauvreté, de richesse et de développement, nous aborderons la question du revenu citoyen garanti et de la place qu'il peut prendre dans différents systèmes de protection sociale. Puis, nous tenterons de mieux cerner le concept d'empowerment pour finalement arriver à répondre à notre principal questionnement: le projet BIG permet-il effectivement l'émancipation ou au contraire, fait-il en sorte de renforcer le sentiment de dépendance et d'impuissance vécu par la communauté isolée, vivant dans des conditions d'extrême précarité? Des entrevues ont pour ce faire été conduites auprès de 15 participants, soit des membres du village d'Otjivero, des intervenants engagés dans le regroupement d'acteurs de la société civile namibienne étant à la source de l'initiative, et des représentants gouvernementaux. L’analyse de ces résultats est présentée en dernière partie de travail.

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La présente thèse de doctorat porte sur la relation entre la santé psychologique au travail, les besoins fondamentaux et la compétence en emploi. En plus de valider un questionnaire de compétences en emploi (QCE), cette thèse propose que les compétences en emploi puissent prédire la santé psychologique au travail par la satisfaction des besoins fondamentaux dans le domaine de l’enseignement. Le premier article a pour objectif de présenter la conception et la validation de l’instrument de mesure des compétences en emploi dans le domaine de l’enseignement. Une première étape dans notre étude a permis l’identification de trois solutions factorielles possibles : structure à un seul facteur, structure à deux facteurs et structure à un facteur de deuxième ordre. Les matrices des corrélations des énoncés étaient fiables, se prêtaient bien à l’analyse factorielle exploratoire et présentaient de bonnes cohérences internes. La deuxième étape de notre étude a été de type confirmatif. Chacune des trois solutions factorielles proposées a été analysée, ce qui a permis l’identification du modèle le mieux ajusté compte tenu des seuils empiriques des indices retenus pour l’analyse par équations structurelles. L’étude réalisée sur un échantillon d’enseignants québécois démontre que nous pouvons conclure aux bonnes qualités psychométriques de l’instrument analysé. Les limites et les apports de cette étude seront aussi présentés. Le deuxième article examine les liens entre les compétences en emploi dans le domaine de l’enseignement, la santé psychologique au travail et la satisfaction des trois besoins fondamentaux (autonomie, compétence et affiliation). Un modèle de médiation est testé par des analyses de modélisation par équations structurelles. Dans ce modèle, on considère que la satisfaction des trois besoins fondamentaux (autonomie, compétence et affiliation sociale) agisse comme médiateur dans la relation entre les compétences en emploi et la santé psychologique au travail. Une relation de médiation partielle (Baron & Kenny, 1986) a été trouvée dans notre échantillon, en utilisant l’analyse de rééchantillonnage par « bootstrap », dans le cadre de la modélisation par équations structurelles. Les limites de la recherche, ainsi que des suggestions de recherches futures seront proposées.

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This paper deals with a prevailing assumption that basic goods are accessory to claims of justice. Against such an assumption, the paper advances the idea that basic goods (the core of what I wish to call the sufficiency threshold) are fundamental as a matter of justice. The paper then addresses the question as to what is the elemental justifiability of a social minimum and how that relates to theories of justice, particularly to emerging theories of global justice. The arguments against the aforementioned assumption call upon the strengths of a general theory of justice already in place, namely, John Rawls’s theory of justice and the enriching response and criticism thereof—particularly David Miller’s theory of justice.

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Laser induced photoacoustic (PA) technique is used in the study of photostability of polymethyl methacrylate (PMMA) films doped with Rhodamine 6G -Rhodamine B dye system. Energy transfer from a donor molecule to an acceptor molecule in a dye mixture affects the output of the dye system. Details of investigations on the role of laser power, modulation frequency and the irradiation wavelength on the photosensitivity of the dye mixture doped PMMA films are presented.

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A new polymer matrix sensitized with methylene blue for use as an optical recording material is described here. The characterization is done to determine the optimal recording conditions. These films need no chemical development and are found to be stable for several months. The matrix has excellent shelf life and needs an exposure only as short as 20 s. Direct imaging was done on this material.

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The objectives of the proposed work are preparation of ceramic nickel zinc ferrite belonging to the series Ni1-XZnXFe2O4 with x varying from 0 to 1in steps of 0.2, structrural, magnetic and electrical characterization of Ni1-XZnXFe2O4, preparation and evaluation of Cure characteristics of Rubber Ferrite Composites (RFCs), magnetic characterization of RFCs using vibrating sample magnetometer (VSM), electrical characterization of RFCs and estimation of magnetostriction constant form HL parameters. The study deals with the structural and magnetic properties of ceramic fillers, variation of coercivity with composition and the variation of magnetization for different filler loadings are compared and correlated. The dielectric properties of ceramic Ni1-XZnXFe2O4 and rubber ferrite composites containing Ni1-XZnXFe2O4 were evaluated and the ac electrical conductivity (ac) of ceramic as well as composite samples can be calculated by using a simple relationship of the form ac = 2f tan 0r, with the data available from dielectric measurements. The results suggest that the ac electrical conductivity is directly proportional to the frequency

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In this paper, we report the measurements of thermal diffusivity of nano Ag metal dispersed ceramic alumina matrix sintered at different temperatures using laser induced non-destructive photoacoustic technique. Measurements of thermal diffusivity also have been carried out on specimens with various concentration of nano metal. Analysis of the data is done on the basis of one-dimensional model of Rosencwaig and Gersho. The present measurements on the thermal diffusivity of nano metal dispersed ceramic alumina shows that porosity has a great influence on the heat transport and the thermal diffusivity value. The present analysis also shows that the inclusion of nano metal into ceramic matrix increases its interconnectivity and hence the thermal diffusivity value. The present study on the samples sintered at different temperature shows that the porosity of the ceramics varies considerably with the change in sintering temperature. The results are interpreted in terms of phonon assisted heat transfer mechanism and the exclusion of pores with the increase in sintering temperature.

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In this paper, we report the measurements of thermal diffusivity of nano Ag metal dispersed ceramic alumina matrix sintered at different temperatures using laser induced non-destructive photoacoustic technique. Measurements of thermal diffusivity also have been carried out on specimens with various concentration of nano metal. Analysis of the data is done on the basis of one-dimensional model of Rosencwaig and Gersho. The present measurements on the thermal diffusivity of nano metal dispersed ceramic alumina shows that porosity has a great influence on the heat transport and the thermal diffusivity value. The present analysis also shows that the inclusion of nano metal into ceramic matrix increases its interconnectivity and hence the thermal diffusivity value. The present study on the samples sintered at different temperature shows that the porosity of the ceramics varies considerably with the change in sintering temperature. The results are interpreted in terms of phonon assisted heat transfer mechanism and the exclusion of pores with the increase in sintering temperature

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In this paper, we report the measurements of thermal diffusivity of nano Ag metal dispersed ceramic alumina matrix sintered at different temperatures using laser induced non-destructive photoacoustic technique. Measurements of thermal diffusivity also have been carried out on specimens with various concentration of nano metal. Analysis of the data is done on the basis of one-dimensional model of Rosencwaig and Gersho. The present measurements on the thermal diffusivity of nano metal dispersed ceramic alumina shows that porosity has a great influence on the heat transport and the thermal diffusivity value. The present analysis also shows that the inclusion of nano metal into ceramic matrix increases its interconnectivity and hence the thermal diffusivity value. The present study on the samples sintered at different temperature shows that the porosity of the ceramics varies considerably with the change in sintering temperature. The results are interpreted in terms of phonon assisted heat transfer mechanism and the exclusion of pores with the increase in sintering temperature

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Cryptosystem using linear codes was developed in 1978 by Mc-Eliece. Later in 1985 Niederreiter and others developed a modified version of cryptosystem using concepts of linear codes. But these systems were not used frequently because of its larger key size. In this study we were designing a cryptosystem using the concepts of algebraic geometric codes with smaller key size. Error detection and correction can be done efficiently by simple decoding methods using the cryptosystem developed. Approach: Algebraic geometric codes are codes, generated using curves. The cryptosystem use basic concepts of elliptic curves cryptography and generator matrix. Decrypted information takes the form of a repetition code. Due to this complexity of decoding procedure is reduced. Error detection and correction can be carried out efficiently by solving a simple system of linear equations, there by imposing the concepts of security along with error detection and correction. Results: Implementation of the algorithm is done on MATLAB and comparative analysis is also done on various parameters of the system. Attacks are common to all cryptosystems. But by securely choosing curve, field and representation of elements in field, we can overcome the attacks and a stable system can be generated. Conclusion: The algorithm defined here protects the information from an intruder and also from the error in communication channel by efficient error correction methods.

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The study shows that standard plastics like polypropylene and high density polyethylene can be reinforced by adding nylon short fibres. Compared to the conventional glass reinforced thermoplastics this novel class of reinforced thermoplastics has the major advantage of recyclability. Hence such composites represent a new spectrum of recyclable polymer composites. The fibre length and fibre diameter used for reinforcement are critical parameters While there is a critical fibre length below which no effective reinforcement takes place, the reinforcement improves when the fibre diameter decreases due to increased surface area.While the fibres alone give moderate reinforcement, chemical modification of the matrix can further improve the strength and modulus of the composites. Maleic anhydride grafting in presence of styrene was found to be the most efficient chemical modification. While the fibre addition enhances the viscosity of the melt at lower shear rates, the enhancement at higher shear rate is only marginal. This shows that processing of the composite can be done in a similar way to that of the matrix polymer in high shear operations such as injection moulding. Another significant observation is the decrease in melt viscosity of the composite upon grafting. Thus chemical modification of matrix makes processing of the composite easier in addition to improving the mechanical load bearing capacity.For the development of a useful short fibre composite, selection of proper materials, optimum design with regard to the particular product and choosing proper processing parameters are most essential. Since there is a co-influence of many parameters, analytical solutions are difficult. Hence for selecting proper processing parameters 'rnold flow' software was utilized. The orientation of the fibres, mechanical properties, temperature profile, shrinkage, fill time etc. were determined using the software.Another interesting feature of the nylon fibre/PP and nylon fibre/HDPE composites is their thermal behaviour. Both nylon and PP degrade at the same temperature in single steps and hence the thermal degradation behaviour of the composites is also being predictable. It is observed that the thermal behaviour of the matrix or reinforcement does not affect each other. Almost similar behaviour is observed in the case of nylon fibre/HDPE composites. Another equally significant factor is the nucleating effect of nylon fibre when the composite melt cools down. In the presence of the fibre the onset of crystallization occurs at slightly higher temperature.When the matrix is modified by grafting, the onset of crystallization occurs at still higher temperature. Hence it may be calculated that one reason for the improvement in mechanical behaviour of the composite is the difference in crystallization behaviour of the matrix in presence of the fibre.As mentioned earlier, a major advantage of these composites is their recyclability. Two basic approaches may be employed for recycling namely, low temperature recycling and high temperature recycling. In the low temperature recycling, the recycling is done at a temperature above the melting point of the matrix, but below that of the fibres while in the high temperature route. the recycling is done at a temperature above the melting points of both matrix and fibre. The former is particularly interesting in that the recycled material has equal or even better mechanical properties compared to the initial product. This is possible because the orientation of the fibre can improve with successive recycling. Hence such recycled composites can be used for the same applications for which the original composite was developed. In high temperature recycling, the composite is converted into a blend and hence the properties will be inferior to that of the original composite, but will be higher than that of the matrix material alone.

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Cochin University of Science & Technology