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141.
Anne Kahr‐Hjland 《Curator: The Museum Journal》2010,53(4):501-509
Abstract EGO‐TRAP is a cellphone‐facilitated interactive narrative game created at the Experimentarium in Copenhagen. Designed to support scientific literacy among students from upper secondary schools, the project is part of a reform that has increased focus on educational methods and alternative learning resources in Denmark since 2005, and that explores the educational potential of museums and science centers outside formal school settings. EGO‐TRAP can be called a “digital narrative” or Augmented Reality (AR)—a digital extension of a physical setting. 相似文献
142.
In universities, development as a teacher may be contradicted with developing as a researcher. Most previous studies have investigated pedagogical development merely as a result of pedagogical training and ignored the dual teacher-researcher identity. This study examines what kind of meaningful experiences are perceived to have triggered and influenced the process of developing as a teacher in the fields of science and technology. The data were gathered by interviewing 10 academics who had participated in a pedagogical training offered by a Finnish technical university between 1999 and 2009. Based on a narrative analysis utilizing dimensions of transformative learning, the results highlight the influence of the working environment and experiences, and imply that teacher development process in the fields of science and technology can be better understood in terms of becoming a teacher, rather than as a continual, conscious development process. The resulting teacher-researcher identity provides a basis for pedagogical development. 相似文献
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Academics’ teacher identities is a relatively little explored area. This paper explores this through an analysis of drawings by academics. The data consist of 90 drawings. The participants are academics who have attended basic courses in university pedagogy. The drawings were content analysed. In the drawings, the academics expressed themselves as teachers through the teaching context and the actors, artefacts and activities of teaching and learning. By drawing attention to these elements, academics can be encouraged to reflect on their beliefs about teaching and teacher role. 相似文献
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Anne‐Lise Arnesen Reetta Mietola Elina Lahelma 《International Journal of Inclusive Education》2013,17(1):97-110
The terrain of inclusion studies in discussed in this paper from the perspective of policy discourses and teachers’ constructions on student diversity. We start by discussing the concept of inclusion from normative and analystic perspectives. We then look at the kinds of discourses that can be found in the Finnish and Norwegian curricula, as well as teachers’ interviews when they talk about their students. On this basis we analyse how the patterns of diversity and inclusion are conceived and constructed; the phenomenon of ‘diversity’, as it is formulated in policy documents and as it is expressed in categories with which teachers operate and act upon in school; and, ‘diversity’ in the context of inclusive practices. We draw from ethnographic studies in Finnish and Norwegian schools; both from mainstream and from special classes. 相似文献
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As part of a doctoral dissertation, Ben (2010) completed a study that extends to 462 pages. After a careful examination of this study and others that are in print, there seems to be a direct relationship between the decline in physics enrollment at the postsecondary level and the increase in the number of studies that have been carried out to determine why have we been off the mark in identifying the real problems that are contributing to the declining enrollment and the decreased student success in physics courses? One problem is introductory physics books are generally written using a deductive approach, and because the teachers follow the organization of these books, they teach in a deductive, boring, and confusing way, and then, blame the students for being unprepared when they do not succeed. This approach distances the teachers--and physics--from the experience, knowledge, and initial interest of many beginning students. Another problem has been the absence of any alternative curriculum to the deductive one. In this paper, we describe a fully-developed alternative curriculum, really a detailed course design for Introductory College Physics I and II, each with its own text presented in the format of a three-ring binder, one for students and one for teachers which closely parallel one another. The course content is constructed to be both teacher and student friendly, so that a teacher can teach physics in an inductive, exciting, and clear manner. In addition, we describe and provide examples of the pedagogical and classroom management techniques that have proven extremely successful. 相似文献