90 resultados para primary science

em Deakin Research Online - Australia


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Provides insights into the experiences of school officials in improving their method of teaching science within the School Innovation in Science (SIS) initiative. Involvement of all science teachers on the project; Management of educators and the analysis of existing teaching practices; Evidence of change in teaching methods and discussion of the stage process.

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Focuses on teaching principles and practices of Australian primary science teachers as part of the School Innovation in Science (SIS) program in Victoria, Australia. Inadequacy of traditional teaching in developing and changing student's science understandings; Case descriptions of effective teachers in primary science; Analysis of the case descriptions and the implication of results for educational practice.

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Examines the amount of time spent on science education in primary schools in Australia. Quality of teaching; Profile of science in the school; Presence of science in the curriculum.

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Drawing as a means of recording is a very common practice in junior primary science lessons. This is largely due to the availability of necessary materials. Also, most youg children have some degree of drawing skill and enjoy drawing activities. Since 1956 the science curriculum to be implemented in primary classrooms in Victoria has changed from one that was based largely on nature study (biological) to one that includes physical and technological aspects. Further, there have been changes in the teaching methodologies advocated for use in science lessons. A modified Interactive Teaching Approach was used for the studies. Drawing was the main means by which the children recorded information. The topic of 'shells' was used to enable collection of data about the children's enjoyment of the activity and satisfaction with their achievement. This study was replicated using the topic 'rocks'; again data were collected concerning satisfaction and enjoyment. During a series of lessons on 'snails' data were collected concerning the achievement of 'process' and 'objective' purposes that teachers might have in mind when setting a drawing activity. In addition to providing data about purposes the study stimulated some questions regarding the techniques the children had used in their drawings. Accordingly, data concerning the use of graphic techniques by the children were collected during a series of lessons on 'oils'. The data collected and analysed in the various studies highlighted the value of drawing in junior primary school science lessons. It also validated strategies developed by the author and designed to help teachers and children use drawing effectively in science activities.

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This thesis examined the praxis of a group of highly regarded primary teachers who encouraged their students to generate, clarify and use investigable questions in science. The findings revealed the importance of a teacher's beliefs, understanding of the nature of questioning, and pedagogical reasoning about teaching and learning in science.

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Amidst an international call for a re-formed and re-envisaged science education agenda, the actual state of teaching science in primary schools is still much the same as it was 15 years or more ago. Whilst much research has provided insights into possible approaches for primary science education, we still find ‘blockers’ to a fully implemented science curriculum in schools. Pre-service teachers, as part of their assessment in a science education unit, interviewed primary teachers and asked the reason behind the approach to science in schools. The responses were varied, with some schools and teachers paying lip service to science education, whereas, in schools where science is a critical element of the curriculum, it is still mainly through the driving force of one enthusiastic teacher. This research will report on the aggregated responses from the surveys and attempt to identify possible ways forward, as suggested by data analysis.

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This presentation reports on the methodological issues confronting an Australian-German-Taiwanese team planning comparative video ethnographic research into primary science classrooms. The issues that will be canvassed include: the benefits of cross-cultural comparisons in providing perspectives on local practice, the theoretical justifications of such comparisons, selection of cases for comparison and possibilities for claiming cultural representativeness, the planning of appropriate data sets, the different comparative stories offered by different analytical frames, practical issues of communication and data sharing, and issues of entanglement of language and culture in the analysis.

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This paper uses cultural historical activity theory to examine the interactions between the choices primary teachers make in the use of practical activities in their teaching of science and the purposes they attribute to these; their emotions, background and beliefs; and the construction of their identities as teachers of science. It draws on four case studies of science lessons taught over a term by four exemplary teachers of primary science. The data collected includes video recordings of science lessons, interviews with each teacher and some of their students, student work, teachers’ planning documents and observation notes. In this paper, we examine the reflexive relationship between emotion and identity, and the teachers’ objectives for their students’ learning; the purposes (scientific and social) the teachers attributed to practical activities; and the ways in which the teachers incorporated practical activities into their lessons. The findings suggest that it is not enough to address content knowledge, pedagogy and pedagogical content knowledge in teacher education, but that efforts also need to be made to influence prospective primary teachers’ identities as scientific thinkers and their emotional commitment to their students’ learning of science.

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The Primary Science Specialist (PrimSS) Professional Learning Program consisted of a fifteen day program, of which Deakin delivered 5 days of pedagogy and content in science education, followed by 3 days of leading change in schools and developing other teachers' capacities. Delivered in several phases, it was possible to provide teachers with ideas and models for them to trial within their schools and to report back to the group, during the program.

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The purpose of this report is to describe the 8 day Deakin professional learning program and to examine the outcomes of the program based on feedback from participants, using a variety of data sources within the program. This evaluation of the Deakin professional learning program for primary science specialists is conducted for formative purposes, using mainly teachers' perceptions of the 5 day Professional development with science content and pedagogy focus (day 2-4, day 6-7) and the 3 day leading change focus (day 11-13). Feedback was acted on over the period of the professional development program.