762 resultados para Creative Pedagogies, Science Education, Scientific Literacy, Capacity Building, Innovation
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Nuestro objetivo es compartir la experiencia de implementación y desarrollo en OJS del Portal de Revistas Científicas de la Facultad de Humanidades y Ciencias de la Educación (FaHCE) de la Universidad Nacional de La Plata (UNLP) a través del cual se publican en acceso abierto, bajo licencias Creative Commons, las revistas científicas de esta Unidad Académica, incluyendo tanto las electrónicas como las versiones digitales de las de formato papel. El proyecto Portal de Revistas, inaugurado en diciembre de 2012, a cargo del Area de Publicaciones, logró unificar el acceso a las revistas de la institución que integran el Núcleo Básico de Revistas Científicas Argentinas (CAICYT-CONICET). Su objetivo es facilitar la gestión editorial, el cumplimiento de la periodicidad y de los parámetros de evaluación sugeridos por las bases de datos regionales e internacionales y la automatización de los envíos a bases de datos para aumentar su visibilidad optimizando los tiempos de trabajo
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The educational platform Virtual Science Hub (ViSH) has been developed as part of the GLOBAL excursion European project. ViSH (http://vishub.org/) is a portal where teachers and scientist interact to create virtual excursions to science infrastructures. The main motivation behind the project was to connect teachers - and in consequence their students - to scientific institutions and their wide amount of infrastructures and resources they are working with. Thus the idea of a hub was born that would allow the two worlds of scientists and teachers to connect and to innovate science teaching. The core of the ViSH?s concept design is based on virtual excursions, which allow for a number of pedagogical models to be applied. According to our internal definition a virtual excursion is a tour through some digital context by teachers and pupils on a given topic that is attractive and has an educational purpose. Inquiry-based learning, project-based and problem-based learning are the most prominent approaches that a virtual excursion may serve. The domain specific resources and scientific infrastructures currently available on the ViSH are focusing on life sciences, nano-technology, biotechnology, grid and volunteer computing. The virtual excursion approach allows an easy combination of these resources into interdisciplinary teaching scenarios. In addition, social networking features support the users in collaborating and communicating in relation to these excursions and thus create a community of interest for innovative science teaching. The design and development phases were performed following a participatory design approach. An important aspect in this process was to create design partnerships amongst all actors involved, researchers, developers, infrastructure providers, teachers, social scientists, and pedagogical experts early in the project. A joint sense of ownership was created and important changes during the conceptual phase were implemented in the ViSH due to early user feedback. Technology-wise the ViSH is based on the latest web technologies in order to make it cross-platform compatible so that it works on several operative systems such as Windows, Mac or Linux and multi-device accessible, such as desktop, tablet and mobile devices. The platform has been developed in HTML5, the latest standard for web development, assuring that it can run on any modern browser. In addition to social networking features a core element on the ViSH is the virtual excursions editor. It is a web tool that allows teachers and scientists to create rich mash-ups of learning resources provided by the e-Infrastructures (i.e. remote laboratories and live webcams). These rich mash-ups can be presented in either slides or flashcards format. Taking advantage of the web architecture supported, additional powerful components have been integrated like a recommendation engine to provide personalized suggestions about educational content or interesting users and a videoconference tool to enhance real-time collaboration like MashMeTV (http://www.mashme.tv/).
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Engineering aims to work with what knowledge is available to achieve society's goals (Coyle, Murphy, and Grimson 2007). The current environmental challenges and the characteristics of the labour market mean that the effectiveness of Engineering activities in Geosciences must be increased through the development of technical knowledge and the inclusion of suitable training aimed at solving real cases (European Commission 2010). Human capital – understood as the talents, skills and capabilities of higher education graduates – is perceived as an essential element for sustainable economic growth and development in the globalised economy (Sianesi and Van Reenan 2003). We need, therefore, to rethink our approaches to curriculum, instruction and assessment in science education, particularly because of the rapid growth of the scientific knowledge, tools/technologies and theories that have originated over the last 50 years (Duschl and Grandy 2013).
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Las distintas encuestas realizadas sobre la percepción social de la ciencia indican que un alto porcentaje de jóvenes no tienen interés por estas materias. Es muy importante la alfabetización científica de la población ya que ello permite tomar decisiones tanto para la vida cotidiana como sobre distintos problemas que afectan al conjunto de la sociedad. Una sociedad con más conocimiento científico--‐tecnológico lleva asociado un mayor crecimiento económico, pero desafortunadamente nos encontramos con una disminución del número de alumnos que elige estudios de Ciencia y Tecnología. Este desinterés viene influenciado tanto por factores internos al estudiante como por externos. Desde la posición docente podemos actuar sobre ellos promoviendo actividades relacionadas con la divulgación científico--‐tecnológica en clase haciendo uso de medios de comunicación que ofrezcan información procedente de fuentes fiables (prensa escrita, radio, televisión y cibermedios/web 2.0). La propuesta metodológica planteada aquí ayudará a ampliar la alfabetización científico--‐tecnológica a través de la exploración del trabajo de los investigadores actuales y de las biografías de los científicos de otras épocas. Además los alumnos crearán de forma colaborativa material propio para divulgar la Ciencia y la Tecnología en el aula. La propuesta se sitúa en el curso 1º de ESO, pero con perspectivas de extenderla en cursos sucesivos al resto de secundaria y bachillerato adaptando los contenidos . Con este trabajo pretendemos contribuir a incrementar el interés por la Ciencia y la Tecnología en el alumnado de secundaria y bachillerato. ABSTRACT The different surveys conducted in order to analyse the social perception of science show that a high percentage of young people is not interested in these subjects. The level of scientific literacy in the population is very important because it allows people to make their own decisions not only for life management skills but also for coping with the diverse problems that may affect the whole society. A society with more scientific and technological knowledge has attached a higher economic growth, but unfortunately there is a reduction in the number of students that choose Science and Tech studies. This lack of interest is influenced by the student’s internal factors as well as by the external ones. From the teacher’s point of view, it is possible to act on them, promoting activities related to scientific and technological broadcasting in the class, using mass media which can provide information from reliable sources (press, radio, television and media on the Internet/web 2.0) The methodological proposal that is made here will help to broaden scientific literacy through exploring the current researcher’s studies and the former scientifics’ biographies. Students will also create their own material in a collaborative way in order to divulgate science and technology in the classroom. The proposal is set for the first grade of secondary education, but we have in prospect to spread it during the following school years to the rest of secondary education grades and A levels only adapting its content. With this essay we want to contribute to the increasing of the interest in science and technology in high school and A levels students.
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En este estudio, tuvimos el objetivo de elaborar narrativas históricas y preguntas guías enmarcadas en la Revolución Copernicana, como un aporte para el fortalecimiento de la Alfabetización Científica (A.C). Sabemos que en un mundo incierto, acelerado, y sujeto a continuas transformaciones, se ha tornado una necesidad imperante, entre otros, promover la generación de recursos y/o espacios que permitan valorar al sujeto en formación en su integralidad. Sobre este escenario, y con base en los aportes teóricos y empíricos de alguno(as) investigadores(as) que han legitimado la A.C, la Naturaleza de la Ciencia (NdC) y la Enseñanza por Investigación como áreas de reflexión, producción y transferencia de conocimiento científico, pudimos elaborar y/o adaptar directrices metodológicas que nortearon nuestras diferentes etapas consolidadas. De esta manera, iniciamos una reconstrucción histórica-epistemológica general sobre algunos hechos enmarcados en la Revolución Copernicana, lo cual, nos permitió reflexionar y seleccionar algunos aspectos acorde a nuestra idea de NdC y convicción de educación que, al final, se materializaron en narrativas históricas y preguntas directrices desde diversos planos de desarrollo del pensamiento científico. Así, como resultado de este proceso, elaboramos 6 narrativas históricas y 126 preguntas directrices (55 en el plano instrumental-operativo, 36 en el plano personal-significativo y 35 en el plano relacional social-cultural). Finalmente, creemos que esta propuesta teórica de carácter pedagógica-didáctica y epistemológica, además de ser un recurso flexible a adaptación para complementar actividades en el aula de ciencias y/o física, se constituye como un material de reflexión o directriz para la producción de otros materiales análogos con base en la investigación didáctica
Capacitación turística en comunidades indígenas. Un caso de Investigación Acción Participativa (IAP)
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La literatura académica subraya la importancia de involucrar a la comunidad en los procesos de capacitación turística. Sin embargo, apenas hay reflexiones sobre cómo diseñar e implementar la formación en áreas rurales y remotas. En este trabajo se exponen las cuatro fases de un ciclo de Investigación Acción Participativa (IAP), desarrollada en la Selva Lacandona de México con la colaboración de los grupos originarios lacandones y ch’oles. El objetivo de estudio fue la capacitación humana en las áreas de sistemas turísticos, interpretación del patrimonio natural y cultural, y creación de producto. Todo ello complementado con una capacitación específica para mujeres y jóvenes, grupos tradicionalmente relegados en estas comunidades. El relato de las distintas fases de la IAP nos muestra cómo el conocimiento ancestral es la base para una capacitación turística sólida. La involucración de jóvenes estudiantes en los procesos de formación en comunidades, los formatos adaptados a los contextos locales, y los ejercicios de reciprocidad científica, sirven además para la revitalización cultural, el refuerzo de la autoestima y el desarrollo endógeno de los pueblos indígenas.
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The integration of mathematics and science in secondary schools in the 21st century continues to be an important topic of practice and research. The purpose of my research study, which builds on studies by Frykholm and Glasson (2005) and Berlin and White (2010), is to explore the potential constraints and benefits of integrating mathematics and science in Ontario secondary schools based on the perspectives of in-service and pre-service teachers with various math and/or science backgrounds. A qualitative and quantitative research design with an exploratory approach was used. The qualitative data was collected from a sample of 12 in-service teachers with various math and/or science backgrounds recruited from two school boards in Eastern Ontario. The quantitative and some qualitative data was collected from a sample of 81 pre-service teachers from the Queen’s University Bachelor of Education (B.Ed) program. Semi-structured interviews were conducted with the in-service teachers while a survey and a focus group was conducted with the pre-service teachers. Once the data was collected, the qualitative data were abductively analyzed. For the quantitative data, descriptive and inferential statistics (one-way ANOVAs and Pearson Chi Square analyses) were calculated to examine perspectives of teachers regardless of teaching background and to compare groups of teachers based on teaching background. The findings of this study suggest that in-service and pre-service teachers have a positive attitude towards the integration of math and science and view it as valuable to student learning and success. The pre-service teachers viewed the integration as easy and did not express concerns to this integration. On the other hand, the in-service teachers highlighted concerns and challenges such as resources, scheduling, and time constraints. My results illustrate when teachers perceive it is valuable to integrate math and science and which aspects of the classroom benefit best from the integration. Furthermore, the results highlight barriers and possible solutions to better the integration of math and science. In addition to the benefits and constraints of integration, my results illustrate why some teachers may opt out of integrating math and science and the different strategies teachers have incorporated to integrate math and science in their classroom.
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Mode of access: Internet.
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Mode of access: Internet.
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Mode of access: Internet.
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Developed under contractual agreements RD3-A9-240 and R-33-X-0442-240 between the Illinois State Board of Education, Dept. of Adult, Vocational and Technical Education, Research and Development Section and the Dept. of Vocational Education Studies, Southern Illinois University, Carbondale.
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"January, 1994."--T.p. verso.
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Mode of access: Internet.
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The aim of the study is to investigate how special education teachers talk about their teaching in relation to bilingual students with dyslexia within Swedish compulsory schools. Data consist of transcripts from in-depth interviews with 15 special education teachers. According to the teacher narratives, the special education services appeared to be biased against bilingual students, as the support provided to bilingual students with dyslexia was revealed to be more or less the same as that provided to monolingual Swedish-speaking students with dyslexia. This bias is discussed in relation to the notion of difference blindness as well as in relation to practical constraints. Nevertheless, the teachers strongly advocated collaborative work with mother tongue teachers in order to facilitate dyslexia identification in bilingual students and to gain a more comprehensive picture of their language and literacy competencies, which is a desire that contrasts and contests a pedagogical monolingual master model within special education services.
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Thesis (Ph.D.)--University of Washington, 2016-04