12 resultados para Curricula.

em Instituto Politécnico do Porto, Portugal


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O Ensino Superior Politécnico deve aproveitar o Processo de Bolonha para assumir um papel de relevo na resposta às necessidades do mercado de trabalho, seja através da adequação dos planos curriculares das suas licenciaturas e mestrados às reais necessidades dos empregadores, seja através da realização de formações que permitam aos trabalhadores no activo ou no desemprego aumentar, actualizar, diversificar e aprofundar os seus conhecimentos, para melhorarem a sua empregabilidade e melhor competirem a nível nacional e internacional, de modo a constituirem uma mais valia para as organizações onde trabalham. O ISCAP tentou já essa via com sucesso, com a oferta de dois cursos, um na área da contabilidade e fiscalidade e outro na área da tradução.

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Numa sociedade onde as correntes migrações desenham um novo contexto de sociabilização e onde a globalização conduz ao aumento incomensurável das reuniões interculturais, é fulcral recentrar a importância do ensino da interpretação dita de comunidade. A inauguração do Mestrado em Tradução e Interpretação Especializadas, no ano lectivo de 2007/2008, no Instituto Superior de Contabilidade e Administração do Porto, reformulado a partir da Licenciatura Bi-Etápica homónima, veio apresentar um desenho dos curricula em Interpretação cujo entendimento é mais pragmático. Assim sendo, à tradicional divisão entre Interpretação Simultânea e Interpretação Consecutiva sucedeu a introdução das unidades curriculares de Interpretação de Conferência, Interpretação Remota e de Teleconferência e de Interpretação de Acompanhamento. Este estudo pretende apresentar e discutir as diferentes abordagens pedagógicas ensaiadas no decorrer da implementação da unidade curricular de Interpretação de Acompanhamento, sustentadas por uma reflexão de cariz científico-pedagógico, filtrada pelas tendências de investigação mais recentes nesta área. Adoptámos a designação de Interpretação de Acompanhamento para descrever uma situação comunicativa que decorre em contextos variados e heterogéneos, em detrimento de outras designações de abrangência mais restrita, como Interpretação de Liaison – que remete para um acompanhamento em contexto de negócios ou de visita cultural ou turística – e Interpretação de Comunidade – reportando-se à mediação linguística de alguém que não fala a linguagem da maioria, normalmente no âmbito judicial, social, ou de saúde. Concentraremos, por conseguinte, a nossa atenção nas questões que se seguem: Que estratégias pedagógicas melhor se adaptam ao ensino desta disciplina? Como reproduzir a heterogeneidade dos contextos comunicativos que a Interpretação de Acompanhamento envolve numa sala de aula? Que ponderação deve assumir o desempenho linguístico em comparação com as competências de mediação intercultural? Como integrar, na prática, conceitos e teorias no domínio da Interpretação de Acompanhamento?

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Robotics research in Portugal is increasing every year, but few students embrace it as one of their first choices for study. Until recently, job offers for engineers were plentiful, and those looking for a degree in science and technology would avoid areas considered to be demanding, like robotics. At the undergraduate level, robotics programs are still competing for a place in the classical engineering graduate curricula. Innovative and dynamic Master’s programs may offer the solution to this gap. The Master’s degree in autonomous systems at the Instituto Superior de Engenharia do Porto (ISEP), Porto, Portugal, was designed to provide a solid training in robotics and has been showing interesting results, mainly due to differences in course structure and the context in which students are welcomed to study and work

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Worldwide competitiveness poses enormous challenges on managers, demanding a continuous quest to increase rationality in the use of resources. As a management philosophy, Lean Manufacturing focuses on the elimination of activities that do not create any type of value and therefore are considered waste. For companies to successfully implement the Lean Manufacturing philosophy it is crucial that the human resources of the organization have the necessary training, for which proper tools are required. At the same time, higher education institutions need innovative tools to increase the attractiveness of engineering curricula and develop a higher level of knowledge among students, improving their employability. This paper describes how Lean Learning Academy, an international collaboration project between five EU universities and five companies, from SME to Multinational/Global companies, developed and applied an innovative training programme for Engineers on Lean Manufacturing, a successful alternative to the traditional teaching methods in engineering courses.

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Engineering education practices have evolved not only due to the natural changes in the contents of the curricula and skills but also, and more recently, due to the requirements imposed by the Bologna revision process. In addition, industry is becoming more demanding, as society is becoming more and more aware of the global needs and consequences of industrial practices. Under this scope, higher education needs not only to follow but also to lead these trends. Therefore, the School of Engineering of the Polytechnic Institute of Porto (ISEP), a Global Reporting Initiative (GRI) training partner in Portugal, prepared and presented its Sustainability Action Plan (PASUS), with the main objective of creating a new kind of engineers, with Sustainable Development at the core of their graduation and MsC degrees. In this paper, the main strategies and activities of the referred plan along with the strategic approach, which guided its development and implementation, will be presented in detail. Additionally, a reflection about the above mentioned bridge between concept and application will be established and justified, in the framework of the action plan. Although in most of the situations, there was no prior discussion or specific request, many of the graduation and post-graduation programmes offered by ISEP already include courses that attend to PASUS philosophy. As a consequence, the number of Master thesis, Graduation projects and R&D projects that address sustainability problems has grown substantially, a proof that for ISEP community, sustainability really matters!

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It is widely accepted that solving programming exercises is fundamental to learn how to program. Nevertheless, solving exercises is only effective if students receive an assessment on their work. An exercise solved wrong will consolidate a false belief, and without feedback many students will not be able to overcome their difficulties. However, creating, managing and accessing a large number of exercises, covering all the points in the curricula of a programming course, in classes with large number of students, can be a daunting task without the appropriated tools working in unison. This involves a diversity of tools, from the environments where programs are coded, to automatic program evaluators providing feedback on the attempts of students, passing through the authoring, management and sequencing of programming exercises as learning objects. We believe that the integration of these tools will have a great impact in acquiring programming skills. Our research objective is to manage and coordinate a network of eLearning systems where students can solve computer programming exercises. Networks of this kind include systems such as learning management systems (LMS), evaluation engines (EE), learning objects repositories (LOR) and exercise resolution environments (ERE). Our strategy to achieve the interoperability among these tools is based on a shared definition of programming exercise as a Learning Object (LO).

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Porto Polytechnical Engineering School (ISEP), a Global Reporting Initiative training partner in Portugal, has just presented its Sustainable Development Action Plan (PASUS), which main objective is the formation of a new kind of engineers, with a Sustainable Development (SD) philosophy in the core of their academic curricula courses.

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Some of the main challenges in Incorporating Sustainable Development practices into Engineering Education reside in establishing the bridge between concept and application. In particular the relation between value creation and the knowledge economy, innovation and entrepreneurship, as the main vehicles to a relevant application of the sustainable development concept, is not yet part of the majority of the engineering curricula in schools. Porto Polytechnical Engineering School (ISEP), a Global Reporting Initiative training partner in Portugal, as just presented its Sustainable Development Action Plan, with the main objective of creating a new kind of engineers, with Sustainable Development at the core of their degrees. The plan has several issues like publish an annual sustainability report, sustainable buildings, minimization of energy consumption and water policy, waste management, sustainable mobility, green procurement, EMAS certification, research and postgraduate activity and promotion of lectures and seminars in Sustainable Development.

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This paper discusses the changes brought by the communication revolution in teaching and learning in the scope of LSP. Its aim is to provide an insight on how teaching which was bi-dimensional, turned into a multidimensional system, gathering other complementary resources that have transformed, in a incredibly short time, the ways we receive share and store information, for instance as professionals, and keep in touch with our peers. The increasing rise of electronic publications, the incredible boom of social and professional networks, search engines, blogs, list servs, forums, e-mail blasts, Facebook pages, YouTube contents, Tweets and Apps, have twisted the way information is conveyed. Classes ceased to be predictable and have been empowered by digital platforms, innumerous and different data repositories (TILDE, IATE, LINGUEE, and so many other terminological data banks) that have definitely transformed the academic world in general and tertiary education in particular. There is a bulk of information to be digested by students, who are no longer passive but instead responsible and active for their academic outcomes. The question is whether they possess the tools to select only what is accurate and important for a certain subject or assignment, due to that overflow? Due to the reduction of the number of course years in most degrees, after the implementation of Bologna and the shrinking of the curricula contents, have students the possibility of developing critical thinking? Both teaching and learning rely on digital resources to improve the speed of the spreading of knowledge. But have those changes been effective to promote really communication? Furthermore, with the increasing Apps that have already been developed and will continue to appear for learning foreign languages, for translation among others, will the students feel the need of learning them once they have those Apps. These are some the questions we would like to discuss in our paper.

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Currently, the teaching-learning process in domains, such as computer programming, is characterized by an extensive curricula and a high enrolment of students. This poses a great workload for faculty and teaching assistants responsible for the creation, delivery, and assessment of student exercises. The main goal of this chapter is to foster practice-based learning in complex domains. This objective is attained with an e-learning framework—called Ensemble—as a conceptual tool to organize and facilitate technical interoperability among services. The Ensemble framework is used on a specific domain: computer programming. Content issues are tacked with a standard format to describe programming exercises as learning objects. Communication is achieved with the extension of existing specifications for the interoperation with several systems typically found in an e-learning environment. In order to evaluate the acceptability of the proposed solution, an Ensemble instance was validated on a classroom experiment with encouraging results.

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Robotics research in Portugal is increasing every year, but few students embrace it as one of their first choices for study. Until recently, job offers for engineers were plentiful, and those looking for a degree in science and technology would avoid areas considered to be demanding, like robotics. At the undergraduate level, robotics programs are still competing for a place in the classical engineering graduate curricula. Innovative and dynamic Master's programs may offer the solution to this gap. The Master's degree in autonomous systems at the Instituto Superior de Engenharia do Porto (ISEP), Porto, Portugal, was designed to provide a solid training in robotics and has been showing interesting results, mainly due to differences in course structure and the context in which students are welcomed to study and work.

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O presente relatório é um dos elementos que contribuirão para a concretização da avaliação individual da Unidade Curricular de Dissertação/Projeto/Estágio Profissional, inserida no plano de estudos do Mestrado em Engenharia de Instrumentação e Metrologia e traduz o trabalho realizado na empresa Caetano Aeronautic. O estágio, com a duração de sete meses, permitiu a concretização de finalidades e objetivos que deram suporte ao desenvolvimento das aprendizagens e mobilização dos saberes científicos relativos a domínios e conteúdos curriculares, nomeadamente inseridos nas áreas da Metrologia e Qualidade. A Metrologia é circunscrita como a ciência da medição. A medição é uma operação de extrema relevância em diversas atividades, porque é através da Metrologia que se garante um elevado nível de qualidade pretendido para a conceção, fabricação e utilização de serviços ou produtos. Face à indústria aeronáutica envolver um elevado conjunto de processos, de normas e documentação, foi necessário inicialmente um envolvimento integrado com o Sistema de Gestão da Qualidade da Caetano Aeronautic e com as operações inerentes, nomeadamente de melhoria contínua. Foram desenvolvidas, dentro do possível, propostas de melhoria no processo de inspeção dos componentes aeronáuticos. Dentro das mesmas destacam-se a alteração dos registos de medição, o estudo e posterior proposta de aquisição de ferramentas adicionais para equipamentos de medição. O fluxo de medição tornou-se mais fluído através da concretização da proposta de alteração do layout do laboratório. De salientar o trabalho desenvolvido na área da Engenharia da Qualidade, nomeadamente no tratamento de não conformidades, o que contribuiu para que o processo se encontre atualmente bastante simplificado na empresa.