838 resultados para Teaching with geospatial technologies


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Dissertation submitted in partial fulfillment of the requirements for the Degree of Master of Science in Geospatial Technologies.

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Dissertation submitted in partial fulfillment of the requirements for the Degree of Master of Science in Geospatial Technologies.

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Dissertation submitted in partial fulfillment of the requirements for the Degree of Master of Science in Geospatial Technologies.

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Dissertation submitted in partial fulfillment of the requirements for the Degree of Master of Science in Geospatial Technologies.

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Dissertation submitted in partial fulfillment of the requirements for the Degree of Master of Science in Geospatial Technologies.

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Dissertation submitted in partial fulfillment of the requirements for the Degree of Master of Science in Geospatial Technologies.

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Dissertation submitted in partial fulfillment of the requirements for the Degree of Master of Science in Geospatial Technologies.

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Dissertation submitted in partial fulfillment of the requirements for the Degree of Master of Science in Geospatial Technologies.

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Dissertation submitted in partial fulfillment of the requirements for the Degree of Master of Science in Geospatial Technologies.

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Dissertation submitted in partial fulfillment of the requirements for the Degree of Master of Science in Geospatial Technologies

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In recent years it has been noticed the progressive disappearance of vernacular sustainable building technologies all over the world mainly due to a strong urban rehabilitation process with modern technologies not compatible with ancient knowledge. Simultaneously new dwellings are needed all over the world and in this sense it was decided to study an ecological and cost-controlled building technology of monolithic walls that can combine the use of low carbon footprint materials, such as earth, fibres and lime using an invasive species: giant reed cane (Arundo Donax). This paper explains the development of this building technology through testing diverse prototypes.

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This study concerns teachers’ use of digital technologies in student assessment, and how the learning that is developed through the use of technology in mathematics can be evaluated. Nowadays math teachers use digital technologies in their teaching, but not in student assessment. The activities carried out with technology are seen as ‘extra-curricular’ (by both teachers and students), thus students do not learn what they can do in mathematics with digital technologies. I was interested in knowing the reasons teachers do not use digital technology to assess students’ competencies, and what they would need to be able to design innovative and appropriate tasks to assess students’ learning through digital technology. This dissertation is built on two main components: teachers and task design. I analyze teachers’ practices involving digital technologies with Ruthven’s Structuring Features of Classroom Practice, and what relation these practices have to the types of assessment they use. I study the kinds of assessment tasks teachers design with a DGE (Dynamic Geometry Environment), using Laborde’s categorization of DGE tasks. I consider the competencies teachers aim to assess with these tasks, and how their goals relate to the learning outcomes of the curriculum. This study also develops new directions in finding how to design suitable tasks for student mathematical assessment in a DGE, and it is driven by the desire to know what kinds of questions teachers might be more interested in using. I investigate the kinds of technology-based assessment tasks teachers value, and the type of feedback they give to students. Finally, I point out that the curriculum should include a range of mathematical and technological competencies that involve the use of digital technologies in mathematics, and I evaluate the possibility to take advantage of technology feedback to allow students to continue learning while they are taking a test.

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Evacuation route planning is a fundamental task for building engineering projects. Safety regulations are established so that all occupants are driven on time out of a building to a secure place when faced with an emergency situation. As an example, Spanish building code requires the planning of evacuation routes on large and, usually, public buildings. Engineers often plan these routes on single building projects, repeatedly assigning clusters of rooms to each emergency exit in a trial-and-error process. But problems may arise for a building complex where distribution and use changes make visual analysis cumbersome and sometimes unfeasible. This problem could be solved by using well-known spatial analysis techniques, implemented as a specialized software able to partially emulate engineer reasoning. In this paper we propose and test an easily reproducible methodology that makes use of free and open source software components for solving a case study. We ran a complete test on a building floor at the University of Alicante (Spain). This institution offers a web service (WFS) that allows retrieval of 2D geometries from any building within its campus. We demonstrate how geospatial technologies and computational geometry algorithms can be used for automating the creation and optimization of evacuation routes. In our case study, the engineers’ task is to verify that the load capacity of each emergency exit does not exceed the standards specified by Spain’s current regulations. Using Dijkstra’s algorithm, we obtain the shortest paths from every room to the most appropriate emergency exit. Once these paths are calculated, engineers can run simulations and validate, based on path statistics, different cluster configurations. Techniques and tools applied in this research would be helpful in the design and risk management phases of any complex building project.

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The common view that research informs teaching assumes a linear approach whereby teaching is considered an output of research. This paper reports the findings of an action research project that identified the issues and challenges faced by those working across health and social care when working with people with dementia from minority ethnic communities. It explored the research-teaching nexus by using an approach to teaching that was research-based as opposed to research-led. A storyboarding technique was used which involved identifying and dissecting real life experiences for discussion. The realisation that each story was unique to the individual demonstrated the benefits and importance of education and training for applying a person-centred approach to dementia care. This project also revealed the benefits of actively engaging course participants with research moving them from being recipients of research, to research- active. Such a process not only encouraged their intrinsic motivations but, also, critical thinking and reflective practice to support deep learning. Such findings demonstrate the benefits of linking teaching with research.

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Perante a fragilidade da atual conjuntura mundial nos contextos económico, social e ambiental, urge a necessidade de educar os novos cidadãos para a sustentabilidade, pelo conhecimento interativo do local onde vivem e do mundo que os integra. “Ensinar a pensar” e a encontrar soluções criativas sustentáveis, torna-se incontornável. Reconhecendo-se que este propósito carece da integração do conhecimento presencial no território, e a importância das competências de saber pensar o espaço e intervir no meio, partilhadas pela Educação Geográfica (EG) e pela Educação para o Desenvolvimento Sustentável (EDS), onde a dimensão “Espaço” é crítica e aglutinadora das aprendizagens, no presente trabalho propõe-se dar resposta à questão de como desenvolver o Pensamento Espacial Crítico, com recurso a Tecnologias de Informação Geográfica (TIG), de forma a promover aprendizagens significativas em EDS, ao nível do 3.º Ciclo do Ensino Básico (CEB) e no contexto da Escola Básica de Campia. Tendo como grande finalidade a inovação das práticas educativas, espera-se com esta investigação contribuir para o alargamento de fronteiras do conhecimento em Multimédia em Educação e da EG, assumindo-se a importância desta no domínio da EDS, estimulando o Pensamento Espacial (PE), o Pensamento Crítico (PC) e a forma como os alunos e restante comunidade educativa olham e atuam sobre o meio. Face à finalidade apresentada e dado o caráter inovador da presente investigação, adotou-se a metodologia de investigação-ação (I/A), no contexto do paradigma sóciocrítico, de pendor qualitativo. Este estudo foi desenvolvido por intermédio de uma Oficina de Formação, em dois ciclos de I/A, tendo como objetivo a conceção e implementação de estratégias transdisciplinares de ensino e aprendizagem (E/A) em EDS, visando o desenvolvimento de capacidades de PEC e sendo suportadas por TIG. Foram concebidos diversos instrumentos de recolha de dados, para cada ciclo de I/A, e o corpo de dados foi analisado essencialmente através da técnica de análise de conteúdo e pontualmente através da análise estatística de cariz descritivo. O modelo de análise de dados centrou-se numa análise SWOT para identificação das forças, fraquezas, oportunidades e ameaças, e numa matriz TOWS para identificação das ações a empreender entre os ciclos de I/A. Propõe-se, para o efeito, um referencial teórico didático para o conceito de PEC, através de uma taxonomia de capacidades e competências resultante da implementação dos ciclos de I/A. Os resultados obtidos permitem observar que: i) a EG, pelas competências que preconiza e pelo enfoque da dimensão espacial, é potencialmente aglutinadora das aprendizagens, no currículo do 3.º CEB, e pode favorecer a transdisciplinaridade, essencial na EDS; ii) as estratégias de ensino e aprendizagem assentes na EG e com recurso a TIG são promotoras de aprendizagens significativas em EDS pelo desenvolvimento de capacidades de PEC. Contudo, as limitações evidenciadas na investigação suscitaram, através dos ciclos de I/A, a redefinição do percurso formativo proposto e dos instrumentos de recolha de dados concebidos, bem como a introdução de melhorias à taxonomia de PEC desenvolvida no âmbito da presente tese. Entre outras limitações discutidas (como a resistência à utilização de tecnologia em contexto de E/A), salientamos uma limitação sistémica, inerente aos atuais contextos educativos formais (currículo, distribuição do serviço docente, etc.), que desincentiva uma efetiva implementação de estratégias transdisciplinares e do trabalho colaborativo entre professores. Apesar das limitações elencadas consideramos que este estudo contribui para um aprofundamento do conhecimento sobre a potencialidade das TIG na promoção de competências e capacidades de PEC dos alunos, nomeadamente pelo avanço na clarificação das mesmas, plasmadas no instrumento desenvolvido no âmbito desta tese (taxonomia de PEC). Como disseminação desta investigação, salienta-se que o referido instrumento integrará o referencial teórico de um projeto europeu Erasmus + (ENAbLE), para suporte à conceção dos dispositivos didáticos que acompanharão uma aplicação de TIG que será concebida especificamente para o contexto de E/A.