993 resultados para Estimador de Horvitz-Thompson


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La pratique d’un sport de type esthétique est aujourd’hui considérée par plusieurs (Sundgot-Borgen & Torstveit, 2004; Thompson & Sherman, 2010) comme un facteur de risque à l’adoption d’attitudes et de comportements alimentaires inappropriés à l’égard de l’alimentation et de l’image corporelle (ACIAI) et ultimement au développement d’un trouble des conduites alimentaires (TCA). Les études actuelles portant sur cette problématique rapportent toutefois des résultats contradictoires. De plus, certains aspects méthodologiques associés notamment à l’hétérogénéité des échantillons limitent la portée interprétative de ces résultats. Afin de pallier les limites actuelles des écrits empiriques, cette thèse a pour but de tracer le portrait de la problématique des désordres alimentaires chez les jeunes athlètes québécoises de haut niveau en sport esthétique. Pour ce faire, un échantillon homogène de 145 adolescentes âgées de 12 à 19 ans a été constitué soit 52 athlètes de haut niveau et 93 non-athlètes. Les sports représentés sont le patinage artistique, la nage synchronisée et le ballet. À partir de cet échantillon, deux études sont réalisées. L’objectif de la première étude est de comparer l’intensité des ACIAI et la prévalence des TCA dans les deux groupes à l’aide de deux questionnaires soit le Eating Disorder Examination Questionnaire (EDE-Q) et le Eating Disorder Inventory-3 (EDI-3). Les résultats obtenus suggèrent qu’il n’y a pas de différence significative entre les athlètes et les non-athlètes de l’échantillon en ce qui a trait à l’intensité des ACIAI et à la prévalence des TCA. La deuxième étude est constituée de deux objectifs. Tout d’abord, comparer les deux groupes relativement aux caractéristiques personnelles suivantes : l’insatisfaction de l’image corporelle (IIC), le sentiment d’efficacité personnelle envers l’alimentation normative (SEP-AN) et l’image corporelle (SEP-IC), le perfectionnisme (P), l’ascétisme (As), la dysrégulation émotionnelle (DÉ) et le déficit intéroceptif (DI). De nature plus exploratoire, le second objectif de cette étude est de décrire et de comparer les caractéristiques personnelles qui sont associées aux ACIAI dans chacun des groupes. Afin de réaliser ces objectifs, deux autres questionnaires ont été utilisés soit le Eating Disorder Recovery Self-efficacy Questionnaire-f (EDRSQ-f) et le Body Shape Questionnaire (BSQ). En somme, les analyses indiquent que les athlètes de l’échantillon présentent des niveaux plus faibles de SEP-AN et de DÉ. Ce faisant, elles auraient moins confiance en leur capacité à maintenir une alimentation normative, mais réguleraient plus efficacement leurs émotions que les adolescentes non-athlètes. Une fois l’âge et l’indice de masse corporelle contrôlés, les résultats démontrent également que le SEP-AN et l’IIC contribuent à prédire dans chaque groupe les ACIAI tels que mesurés par la recherche de minceur. Le SEP-AN a aussi été associé dans les deux groupes à l’intensité des symptômes boulimiques. Les modèles obtenus diffèrent cependant quant aux variables prédictives principales. Chez les athlètes de l’échantillon, l’intensité des conduites boulimiques est associée à la DÉ alors qu’elle est davantage liée au DI chez les adolescentes non sportives. Enfin, en plus de discuter et de comparer l’ensemble de ces résultats aux autres travaux disponibles, les apports distinctifs de la thèse et les principales limites des études sont abordés. Des pistes sont également suggérées afin d’orienter les recherches futures et des implications cliniques sont proposées.

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Afin de mieux cerner les enjeux de la transition entre le secondaire et le postsecondaire, nous proposons un examen du passage de la notion de fonction à celle de dérivée. À la lumière de plusieurs travaux mettant en évidence des difficultés inhérentes à ce passage, et nous basant sur les recherches de Carlson et ses collègues (Carlson, 2002; Carlson, Jacobs, Coe, Larsen et Hsu, 2002; Carlson, Larsen et Jacobs, 2001; Oehrtman, Carlson et Thompson, 2008) sur le raisonnement covariationnel, nous présentons une analyse de la dynamique du développement de ce raisonnement chez des petits groupes d’élèves de la fin du secondaire et du début du collégial dans quatre situations-problèmes différentes. L’analyse des raisonnements de ces groupes d’élèves nous a permis, d’une part, de raffiner la grille proposée par Carlson en mettant en évidence, non seulement des unités de processus de modélisation (ou unités de raisonnement) mises en action par ces élèves lors des activités proposées, mais aussi leurs rôles au sein de la dynamique du raisonnement. D’autre part, cette analyse révèle l’influence de certaines caractéristiques des situations sur les interactions non linéaires entre ces unités.

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This thesis details the development of a model of a seven degree of freedom manipulator for position control. Then, it goes on to discuss the design and construction of a the PHD, a robot built to serve two purposes: first, to perform research on joint torque control schemes, and second, to determine the important dynamic characteristics of the Harmonic Drive. The PHD, is a planar, three degree of freedom arm with torque sensors integral to each joint. Preliminary testing has shown that a simple linear spring model of the Harmonic Drive's flexibility is suitable in many situations.

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In this thesis I present a language for instructing a sheet of identically-programmed, flexible, autonomous agents (``cells'') to assemble themselves into a predetermined global shape, using local interactions. The global shape is described as a folding construction on a continuous sheet, using a set of axioms from paper-folding (origami). I provide a means of automatically deriving the cell program, executed by all cells, from the global shape description. With this language, a wide variety of global shapes and patterns can be synthesized, using only local interactions between identically-programmed cells. Examples include flat layered shapes, all plane Euclidean constructions, and a variety of tessellation patterns. In contrast to approaches based on cellular automata or evolution, the cell program is directly derived from the global shape description and is composed from a small number of biologically-inspired primitives: gradients, neighborhood query, polarity inversion, cell-to-cell contact and flexible folding. The cell programs are robust, without relying on regular cell placement, global coordinates, or synchronous operation and can tolerate a small amount of random cell death. I show that an average cell neighborhood of 15 is sufficient to reliably self-assemble complex shapes and geometric patterns on randomly distributed cells. The language provides many insights into the relationship between local and global descriptions of behavior, such as the advantage of constructive languages, mechanisms for achieving global robustness, and mechanisms for achieving scale-independent shapes from a single cell program. The language suggests a mechanism by which many related shapes can be created by the same cell program, in the manner of D'Arcy Thompson's famous coordinate transformations. The thesis illuminates how complex morphology and pattern can emerge from local interactions, and how one can engineer robust self-assembly.

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Vertically aligned carbon nanotubes have been grown using Ni as catalyst by plasma enhanced chemical vapor deposition system (PECVD) in various pre-patterned substrates. Ni was thermally evaporated on silicon substrates with anodized alumina mask prepared in different methods including 2 step anodization of porous alumina template and interference lithography assisted array of pores. The templates helped to define Ni nanodots inside the pores which in turn catalyzed the growth of carbon nanotubes inside the PECVD system at temperature of 700-750C using mixture of ammonia and acetylene gases. The resulting well-aligned multi-walled carbon nanotubes were further investigated using SEM, TEM and Raman spectroscopy. The size, shape and structure of the grown carbon nanotubes were also discussed.

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Uniformly distributed ZnO nanorods with diameter 70-100 nm and 1-2μm long have been successfully grown at low temperatures on GaN by using the inexpensive aqueous solution method. The formation of the ZnO nanorods and the growth parameters are controlled by reactant concentration, temperature and pH. No catalyst is required. The XRD studies show that the ZnO nanorods are single crystals and that they grow along the c axis of the crystal plane. The room temperature photoluminescence measurements have shown ultraviolet peaks at 388nm with high intensity, which are comparable to those found in high quality ZnO films. The mechanism of the nanorod growth in the aqueous solution is proposed. The dependence of the ZnO nanorods on the growth parameters was also investigated. While changing the growth temperature from 60°C to 150°C, the morphology of the ZnO nanorods changed from sharp tip (needle shape) to flat tip (rod shape). These kinds of structure are useful in laser and field emission application.

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The periodic silane burst technique was employed during metalorganic chemical vapor deposition of epitaxial GaN on AlN buffer layers grown on Si (111). Periodic silicon delta doping during growth of both the AlN and GaN layers led to growth of GaN films with decreased tensile stresses and decreased threading dislocation densities, as well as films with improved quality as indicated by x-ray diffraction, micro-Raman spectroscopy, atomic force microscopy, and transmission electron microscopy. The possible mechanism of the reduction of tensile stress and the dislocation density is discussed in the paper.

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Uniformly distributed ZnO nanorods with diameter 80-120 nm and 1-2µm long have been successfully grown at low temperatures on GaN by using the inexpensive aqueous solution method. The formation of the ZnO nanorods and the growth parameters are controlled by reactant concentration, temperature and pH. No catalyst is required. The XRD studies show that the ZnO nanorods are single crystals and that they grow along the c axis of the crystal plane. The room temperature photoluminescence measurements have shown ultraviolet peaks at 388nm with high intensity, which are comparable to those found in high quality ZnO films. The mechanism of the nanorod growth in the aqueous solution is proposed. The dependence of the ZnO nanorods on the growth parameters was also investigated. While changing the growth temperature from 60°C to 150°C, the morphology of the ZnO nanorods changed from sharp tip with high aspect ratio to flat tip with smaller aspect ratio. These kinds of structure are useful in laser and field emission application.

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Three dimensional (3-D) integrated circuits can be fabricated by bonding previously processed device layers using metal-metal bonds that also serve as layer-to-layer interconnects. Bonded copper interconnects test structures were created by thermocompression bonding and the bond toughness was measured using the four-point test. The effects of bonding temperature, physical bonding and failure mechanisms were investigated. The surface effects on copper surface due to pre-bond clean (with glacial acetic acid) were also looked into. A maximum average bond toughness of approximately 35 J/m² was obtained bonding temperature 300 C.

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Three terminal ‘dotted-I’ interconnect structures, with vias at both ends and an additional via in the middle, were tested under various test conditions. Mortalities (failures) were found in right segments with jL value as low as 1250 A/cm, and the mortality of a dotted-I segment is dependent on the direction and magnitude of the current in the adjacent segment. Some mortalities were also found in the right segments under a test condition where no failure was expected. Cu extrusion along the delaminated Cu/Si₃N₄ interface near the central via region was believed to cause the unexpected failures. From the time-to-failure (TTF), it is possible to quantify the Cu/Si₃N₄ interfacial strength and bonding energy. Hence, the demonstrated test methodology can be used to investigate the integrity of the Cu dual damascene processes. As conventionally determined critical jL values in two-terminal via-terminated lines cannot be directly applied to interconnects with branched segments, this also serves as a good methodology to identify the critical effective jL values for immortality.

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1er Premio en la categor??a de Ciencia Ingenier??a y Valores de la novena edici??n de 'Ciencia en Acci??n' organizada por El Consejo Superior de Investigaciones Cient??ficas, la Fundaci??n Espa??ola para la Ciencia y la Tecnolog??a, la Real Sociedad Espa??ola de F??sica, la Real Sociedad Matem??tica Espa??ola y la Universidad Nacional de Educaci??n a Distancia, en 2008. Premio 'Operi Bene Peracto' de la Real Academia Espa??ola de Qu??mica, en su edici??n de 2008

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We will discuss several examples and research efforts related to the small world problem and set the ground for our discussion of network theory and social network analysis. Readings: An Experimental Study of the Small World Problem, J. Travers and S. Milgram Sociometry 32 425-443 (1969) [Protected Access] Optional: The Strength of Weak Ties, M.S. Granovetter The American Journal of Sociology 78 1360--1380 (1973) [Protected Access] Optional: Worldwide Buzz: Planetary-Scale Views on an Instant-Messaging Network, J. Leskovec and E. Horvitz MSR-TR-2006-186. Microsoft Research, June 2007. [Web Link, the most recent and comprehensive study on the subject!] Originally from: http://kmi.tugraz.at/staff/markus/courses/SS2008/707.000_web-science/