943 resultados para Science Education


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This study examines the self-reported, topic-specific professional knowledge (TSPK) of Danish geography teachers seen as an aspect of their pedagogical content knowledge (PCK) when teaching weather formation and climate change. This topic is considered representative of geography teaching in Denmark. In the last ten years Danish primary and lower-secondary schooling has undergone several significant changes, including the introduction of a final multiple-choice exam in geography in 2007, and a fundamental reconstruction of the curriculum in 2014. These changes are expected to influence the TSPK of geography teachers in ways that potentially have an impact on their classroom practice. Teachers´ responses to specific questions relating to their choice of learning goals and the content and organisation of their lessons show that geography teachers take into account not only the knowledge aspects which point to the final multiple-choice exam, but also the ‘bildung’ perspectives of the subject equipping students to develop their own opinions when dealing with socio-scientific issues (SSI).

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School geography is often quite different from academic geography and there are good reasons for that, as school is preparing young people to be able to lead the life they value instead of just training them to learn specific subject contents. In some countries school geography is understood as being mainly a social science. Nonetheless physical geography often plays an important part in textbooks and in everyday teaching in these countries. This presentation will examine how physical geography topics are justified in specialist teacher magazines in Germany. Are they justified by simply pointing at the value of the academic knowledge itself? Are they justified by claiming students’ special interest in these topics? Or are they justified by showing the value of physical geography in promoting social aims such as sustainable development, freedom or equality?

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This paper investigates how textbook design may influence students’ visual attention to graphics, photos and text in current geography textbooks. Eye tracking, a visual method of data collection and analysis, was utilised to precisely monitor students’ eye movements while observing geography textbook spreads. In an exploratory study utilising random sampling, the eye movements of 20 students (secondary school students 15–17 years of age and university students 20–24 years of age) were recorded. The research entities were double-page spreads of current German geography textbooks covering an identical topic, taken from five separate textbooks. A two-stage test was developed. Each participant was given the task of first looking at the entire textbook spread to determine what was being explained on the pages. In the second stage, participants solved one of the tasks from the exercise section. Overall, each participant studied five different textbook spreads and completed five set tasks. After the eye tracking study, each participant completed a questionnaire. The results may verify textbook design as one crucial factor for successful knowledge acquisition from textbooks. Based on the eye tracking documentation, learning-related challenges posed by images and complex image-text structures in textbooks are elucidated and related to educational psychology insights and findings from visual communication and textbook analysis.

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New paradigms in science education are focused on moving towards a sustainable society, meaning redefining the educational practices and developing new methods in order to establish better relationships among individuals, groups, and the society. Being able to reflect upon developing new pedagogic strategies, that support collective action, is crucial to favour social change. Education in the twenty-first century should be based on critical and social theories of the environment and development, in order to link the prospects for sustainability to new forms of economy, social welfare, governance and education (Barraza et al., Environ Educ Res 9(3):347-357, 2003). The nature of contemporary knowledge and knowledge construction demands increasing collaboration and communication between once isolated disciplines. Curriculum integration can reduce curriculum fragmentation, promoting a better awareness of the way different forms of knowledge work and contribute to collaborative knowledge construction, stimulating a critical and a reflexive perspective in their learners. This chapter will focus on the pedagogic strategies used in a research project aiming to provide potential young scientists from rural communities of Mexico and Alaska with a unique opportunity to learn more about their own local knowledge whilst gaining a better understanding of how it intersects with global processes. The project has helped students make cognitive links between their scientific knowledge and life experience, and has established affective and behavioral links which have intensified the ways in which they value their environment, culture, traditions and communities (Tytler et al. 2010; Bodenhorn, Learning about environmental research in a context of climate change: an international scholastic interchange (pilot project). Final report. BASC (Barrow Arctic Science Consortium)). The conjunction of collaborative, interdisciplinary work and multiple pedagogic strategies applied in this specific educational practice has shown the potential of implementing research group initiatives in science education. We believe that educational approaches that create spaces for students to work together towards a goal defined as a common good, can contribute significantly to develop effective science programs in schools.

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Community-school partnerships are an established practice within environmental science education, where a focus on how local phenomena articulate with broader environmental issues and concerns brings potential benefits for schools, community organisations and local communities. This paper contributes to our understanding of such educational practices by tracing of the diverse socio-material flows that constitute a community environmental monitoring project, where Australian school students became investigators of and advocates for particular sites in their neighbourhood. The theoretical resources of Actor-Network Theory are drawn upon to describe how the project—as conceptualised by its initiators—was enacted as both human and non-human actors sought to progress their own agendas thus translating the concept-project into multiple project realities. We conclude by identifying implications for sustaining educational innovations of this kind.

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This paper presents an Interpretive Framework stemming from a longitudinal and iterative multiple case study of five Australian universities examining the cogent and unique practices underpinning their established and successful school-based science teacher education programs. Results from interviews with teacher educators, school staff and pre-service teachers, show four components that guide the successful and sustainable use of university-school partnerships. These components: Guiding Pedagogical Principles; Growing University-School Partnerships; Representations of Partnership; and Growth Model provide a scaffold for initiating, growing and sustaining partnerships that maximise the benefits for all. The essential role of both university and school staff is also highlighted.

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It has been most encouraging to see science (and innovation)at the forefront of Australian domestic politics in recentmonths. It is also reassuring to see broader bipartisanagreement from the major political parties on the importance ofscience and research to the nation’s future. Governments maychoose to prioritise the areas of scientific endeavour thatwarrant greater support but the acknowledgement by ourpolitical leaders (federal and state) that science and innovationis vital for the nation’s future has not always been forthcoming.The funding mechanisms (e.g. grant schemes) and businessincentives (e.g. taxation) put in place by governments areimportant catalysts of ideally spontaneous processes leading toinnovation and economic advances. However, this pathway isvery complicated.

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Scientific ethics is and should be part of a science education (Chemistry in Australia, February 2014 issue, page 38). The Australian Curriculum implies ethical practice as early as year 2 when collecting and recording observations, and explicitly discussing ethical considerations from as early as year 3, in which students are expected to learn that science knowledge helps people to understand the effect of their actions, and in particular, considering how materials including solids and liquids affect the environment in different ways, and deciding what characteristics make a material a pollutant. As students progress through various year levels, this becomes more involved, for example at year 7, they learn that solutions to contemporary issues that are found using science and technology, may impact on other areas of society and may involve ethical considerations. At tertiary level, students are also expected to have an awareness of the ethical requirements that are appropriate for the discipline. Professional organisations, like the RACI, have long had a Code of Ethics (By-Law 13), and more employers are also introducing formal or informal codes: for example, the Victorian government requires that all public sector employees uphold the following values: responsiveness, integrity, impartiality, accountability, respect, leadership, and human rights.

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Over the last few months I have been watching Madam Secretary on DVD. The television series revolves around the professional and personal life of a female US Secretary of State, and also features a female Chair of the Joint Chiefs of Staff (head of the military), a female Attorney General, and a female director of the FBI. In real life, the United States has had three female Secretaries of State in recent administrations, including one who could be the next President, significant numbers of women at the top levels of government, and more than thirty 4 star admirals and generals.

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This paper presents an Interpretive Framework stemming from a longitudinal and iterative multiple case study of five Australian universities examining the cogent and unique practices underpinning their established and successful school-based science teacher education programs. Results from interviews with teacher educators, school staff and pre-service teachers, show four components that guide the successful and sustainable use of university-school partnerships. These components: Guiding Pedagogical Principles; Growing University-School Partnerships; Representations of Partnership; and Growth Model provide a scaffold for initiating, growing and sustaining partnerships that maximise the benefits for all. The essential role of both university and school staff is also highlighted.

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This chapter explores Dewey’s construct of aesthetic experience and the role that the aesthetic plays in knowing: knowing as a coherence of things to be known, developing one’s sense of identity in relation to that knowing, and the passions that emerge in an ‘aesthetic experience’ that lays the foundation for future knowing, identity and passions. Drawing on Dewey’s ideas, Girod, Rau and Schepige developed the construct ‘Aesthetic understanding’ to provide a theoretical lens for describing students’ experience of coming to know science content. This chapter develops the aesthetic understanding construct further into a methodological framework, called a Knowledge-Identity-Passion (KIP) Analysis, that can be applied to research exploring aesthetic experience in two ‘research moments’: the immediate effects of an aesthetic experience on knowledge, identity and passion; and the life trajectory that follows an aesthetic experience. A KIP analysis can be applied to research examining the effects and meanings attached to experiences through close analysis of knowledge, identity and passion, both individually and in relation to each other. To illustrate the power of a KIP analysis narratives of four science educators are provided. The practical applications and methodological possibilities and limitations of a KIP Analysis are then discussed.

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El Centro de Enseñanza Aprendizaje de la Universidad del Rosario (cea-ur), acorde con su compromiso por el mejoramiento continuo y la búsqueda de la innovación en los procesos de enseñanza-aprendizaje, pone a disposición de la comunidad académica el Boletín Reflexiones Pedagógicas. Esta colección presentará diversas alternativas para mejorar nuestros procesos didácticos y fortalecer los procesos de aprendizaje de nuestros estudiantes, de una manera sencilla y fácil de entender. En este primer número se presenta el tema de aprendizaje activo centro de nuestro proyecto educativo enunciado en el pei 2014.En él encontrarán no solo a qué se refiere este tipo de aprendizaje, sino también la descripción de algunas estrategias para desarrollarlo y referencias para profundizar en este tema.

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O trabalho apresentado, foi realizado no âmbito do mestrado em Química para o ensino, da Universidade de Évora e tem como tema " Moléculas Simples de Aplicação na Medicina". A abordagem deste tema deve-se à necessidade cada vez maior de um ensino que motive os alunos e lhes proporcione um gosto maior pelo estudo das ciências, uma vez que cada vez mais os jovens estudantes revelam pouca motivação e gosto pelo estudo das áreas científicas quer ao nível do ensino secundário quer ao nível do ensino superior. Pretende-se também tentar compreender e explicar o porquê das suas desmotivações e tentar adaptar novas abordagens a temas que suscitem nos jovens um maior interesse, uma melhor compreensão da importância das ciências, da tecnologia na vida quotidiana de todos nós no que respeita ao nosso bem-estar e à nossa saúde. Numa primeira parte é feita uma revisão sobre os principais conteúdos propostos a desenvolver em sala de aula, conteúdos esses que sustentam o estudo do xénon como anestésico e dos perfluorocarbonetos como substitutos do sangue. A segunda parte integra um programa orientador, seguindo as metodologias e estrutura do programa homologado pelo ME para o 12º ano de escolaridade, e protocolos de algumas actividades de carácter experimental laboratorial propostas. Estas actividades têm como finalidade estimular a curiosidade e facilitar a consolidação das matérias. ABSTRACT: The present study was carried out under the Master's Degree in Chemistry for Teaching, taught at the University of Évora under the theme "lmplementation of Simple Molecules in Medicine". The approach to this issue is due to an increasing need for teaching that motivates students and sharpen their senses for the study of science because, increasingly, young students show little motivation and passion for the study of science, both at secondary school and higher education terms. The aim is also trying to understand and explain the reason of their discouragement and try new approaches to issues that raise young in a better understanding of the importance of science and technology in everyday life for all of us in what concerns to our welfare and our health. ln the first part there is an overview of the major content areas to develop in the classroom. These contents support the study of xenon as an anesthetic and perfluorocarbons as blood substitutes. The second part includes the syllabus, following the methodologies and structure of the curriculum approved by the ME to the 12th grade and protocols of some activities for an experimental laboratory. These activities intend to stimulate curiosity and facilitate the consolidation of materials.