989 resultados para Computer lab


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This paper presents a guide for teachers about the computer lab at Central Institute for the Deaf.

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This paper investigates what happened in one Australian primary school as part of the establishment, use and development of a computer laboratory over a period of two years. As part of a school renewal project, the computer lab was introduced as an ‘innovative’ way to improve the skills of teachers and children in information and communication technologies (ICT) and to lead to curriculum change. However, the way in which the lab was conceptualised and used worked against achieving these goals. The micropolitics of educational change and an input-output understanding of computers meant that change remained structural rather pedagogical or philosophical.

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This project involved the complete refurbishment and extension of a 1980’s two-storey domestic brick building, previously used as a Boarding House (Class 3), into Middle School facilities (Class 9b) on a heritage listed site at Nudgee College secondary school, Brisbane. The building now accommodates 12 technologically advanced classrooms, computer lab and learning support rooms, tuckshop, art room, mini library/reading/stage area, dedicated work areas for science and large projects with access to water on both floors, staff facilities and an undercover play area suitable for assemblies and presentations. The project was based on a Reggio Emilia approach, in which the organisation of the physical environment is referred to as the child’s third teacher, creating opportunities for complex, varied, sustained and changing relationships between people and ideas. Classrooms open to a communal centre piazza and are integrated with the rest of the school and the school with the surrounding community. In order to achieve this linkage of the building with the overall masterplan of the site, a key strategy of the internal planning was to orientate teaching areas around a well defined active circulation space that breaks out of the building form to legibly define the new access points to the building and connect up to the pathway network of the campus. The width of the building allowed for classrooms and a generous corridor that has become ‘breakout’ teaching areas for art, IT, and small group activities. Large sliding glass walls allow teachers to maintain supervision of students across all areas and allow maximum light penetration through small domestic window openings into the deep and low-height spaces. The building was also designed with an effort to uphold cultural characteristics from the Edmund Rice Education Charter (2004). Coherent planning is accompanied by a quality fit-out, creating a vibrant and memorable environment in which to deliver the upper primary curriculum. Consistent with the Reggio Emilia approach, materials, expressive of the school’s colours, are used in a contemporary, adventurous manner to create panels of colour useful for massing and defining the ‘breakout’ teaching areas and paths of travel, and storage elements are detailed and arranged to draw attention to their aesthetic features. Modifications were difficult due to the random placement of load bearing walls, minimum ceiling heights, the general standard of finishes and new fire and energy requirements, however the reuse of this building was assessed to be up to 30% cheaper than an equivalent new building, The fit out integrates information technology and services at a level not usually found in primary school facilities. This has been achieved within the existing building fabric through thoughtful detailing and co-ordination with allied disciplines.

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A central topic in economics is the existence of social preferences. Behavioural economics in general has approached the issue from several angles. Controlled experimental settings, surveys, and field experiments are able to show that in a number of economic environments, people usually care about immaterial things such as fairness or equity of allocations. Findings from experimental economics specifically have lead to large increase in theories addressing social preferences. Most (pro)social phenomena are well understood in the experimental settings but very difficult to observe 'in the wild'. One criticism in this regard is that many findings are bound by the artificial environment of the computer lab or survey method used. A further criticism is that the traditional methods also fail to directly attribute the observed behaviour to the mental constructs that are expected to stand behind them. This thesis will first examine the usefulness of sports data to test social preference models in a field environment, thus overcoming limitations of the lab with regards to applicability to other - non-artificial - environments. The second major contribution of this research establishes a new neuroscientific tool - the measurement of the heart rate variability - to observe participants' emotional reactions in a traditional experimental setup.

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La démarche scientifique (ou expérimentale) en milieu scolaire nécessite des savoir-faire expérimentaux qui ne s’acquièrent habituellement qu’en présentiel, c’est-à-dire en laboratoire institutionnel où l’enseignant ou le technicien sont présents et peuvent, à tout moment, assister pleinement l’apprenant dans sa démarche d’investigation scientifique et technologique. Ils peuvent l’orienter, le diriger, susciter sa réflexion, faire des démonstrations réelles ou contrôler son expérimentation en lui montrant comment paramétrer les outils d’expérimentation assistée par ordinateur (ExAO). Pour répondre aux besoins de la formation à distance, cette recherche de développement en didactique des sciences et de la technologie propose de mettre à la disposition des apprenants et des enseignants un environnement de laboratoire informatisé, contrôlé et assisté à distance. Cet environnement, axé sur un microlaboratoire d’ExAO (MicrolabExAO), que nous avons nommé Ex@O pour le distinguer, a été testé de manière fonctionnelle, puis évalué en situation réelle par des étudiants-maîtres et des élèves de l’éducation des adultes qui ont pratiqué et expérimenté la démarche scientifique, en situation de laboratoire réel, mais à distance. Pour ce faire, nous avons couplé le logiciel MicrolabExAO à un logiciel de prise en main à distance avec outils audio et vidéo (Teamviewer). De plus, nous avons créé et inséré, dans le logiciel MicrolabExAO, une aide en ligne pour télécharger et faciliter la prise en main à distance. Puisque cet environnement Ex@O permet de multiplier les contacts des apprenants avec une expérimentation concrète, ce prototype répond bien à l’un des objectifs du Programme de formation de l’école québécoise (PFEQ) qui est de rendre l’apprenant plus actif dans ses apprentissages. Et parce que ce premier prototype d’environnement Ex@O permet d’effectuer des activités en laboratoire à distance, nous avons pu vérifier qu’il met aussi l’accent, non seulement sur les savoirs, mais également sur les savoir-faire expérimentaux en sciences et technologie, traditionnellement développés dans les locaux des laboratoires institutionnels. Notons ici que la démarche expérimentale s’acquiert très majoritairement en laboratoire en pratiquant, souvent et régulièrement, le processus inductif et déductif propre à cette démarche. Cette pratique de la démarche expérimentale, à distance, avec la technologie Ex@O qui l’accompagne, nous a permis de vérifier que celle-ci était possible, voire comparable à la réalisation, pas-à-pas, d’un protocole expérimental effectué dans un laboratoire institutionnel.

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Se conformó el primer archivo docente digital de patología específica del seno en la modalidad de mamografía a nivel nacional, el cuál permitirá el entrenamiento de radiólogos y residentes de radiología según el sistema de lectura BI-RADS, buscando la unificación de criterios y mejoría de las competencias en la interpretación de las imágenes con la finalidad de aumentar la detección temprana del carcinoma de seno

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O presente artigo discute estratégias utilizadas em um processo de formação continuada que se destina a promover a inserção da informática nas aulas de Química, organizado com base na racionalidade prática e na reflexão crítica sobre o trabalho docente. Esse processo envolveu professores de escolas estaduais localizadas na região de Jaú (SP) e utilizou a educação a distância como recurso para mediar os períodos entre os encontros presenciais. As estratégias selecionadas para discussão neste artigo, dentre as utilizadas no processo de formação, são: a elaboração de material didático e o desenvolvimento de aulas nas Salas Ambiente de Informática das escolas. Tais propostas se revelaram importantes por considerarem o professor como autor dos recursos didáticos para trabalho em sala de aula, e o contexto escolar como subsídio à própria ação de formação.

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A digital-desk pilot program, named One Laptop Per Child (OPLC), in Brazil uses a unique display design to provide an interactive interface developed to enhance education and minimize ergonomic concerns. The one-to-one computer strategy as proposed by Nicholas Negroponte is a way of circumventing the tragedy of the locked computer lab because it gives children full access to computers anytime. The OLPC program has focused on a solution that minimizes power consumption, which also limits the display's maximum size and processor performance because the LCD backlights are responsible for a significant part of the power consumption in laptops. The government has also developed a new type of low-cost tablet that is based on a resistive principle. High transparencies can be obtained in the 90% range in the tablet, while robustness is guaranteed by the outstanding tribological characteristics of Sn02 on glass.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)