943 resultados para science education


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Science education is in crisis, which is evidenced by the increasing negative attitudes to Science by secondary school students and decreasing participation in post compulsory Science subjects. There is a need for re-imagining science by adopting contextual learning.

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In Australia, reform is occurring in the area of early childhood. It is in this time of reform, that a research project was instigated which studied the amount of science being undertaken in early childhood settings as well as how it was implemented. This highlighted some interesting differences across settings. This presentation will describe case studies of four pre-school settings and some of the activities undertaken by the children - both as part of the formal program and through incidental play. It will consider these through a socio-cultural framework, noting how teachers used their understandings of play and play theory, to enhance children’s understandings.

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Through a longitudinal study of one teacher's science teaching practice set in the context of her base school, this thesis records the effects of the structural and policy changes that have occurred in Victorian education over the past 6-7 years - the 'Kennett era'. Initially, the purpose of the study was to investigate the teacher's practice with the view to improving it. For this, an action research approach was adopted. Across the year 1998, the teacher undertook an innovative science program with two grades, documenting the approach and outcomes. Several other teachers were involved in the project and their personal observations and comments were to form part of the data. This research project was set in the context of a single primary school and case study methodology was used to document the broader situational and daily influences which affected the teacher's practice. It was apparent soon after starting the action research that there were factors which did not allow for the development of the project along the intended lines. By the end of the project, the teacher felt that the action research had been distorted - specifically there had been no opportunity for critical reflection. The collaborative nature of the project did not seem to work. The teacher started to wonder just what had gone wrong. It was only after a break from the school environment that the teacher-researcher had the opportunity to really reflect on what had been happening in her teaching practice. This reflection took into account the huge amount of data generated from the context of the school but essentially reflected on the massive number of changes that were occurring in all schools. Several issues began to emerge which directly affected teaching practice and determined whether teachers had the opportunity to be self-reflective. These issues were identified as changes in curriculum and the teaching role, increased workload, changed power relations and changed security/morale on the professional context. This thesis investigates the structural and policy changes occurring in Victorian education by reference to documentation and the lived experiences of teachers. It studies how the emerging issues affect the practices of teachers, particularly the teacher-researcher. The case study has now evolved to take in the broader context of the policy and structural changes whilst the action research has expanded to look at the ability of a teacher to be self-reflective: a meta-action research perspective. In concluding, the teacher-researcher reflects on the significance of the research in light of the recent change in state government and the increased government importance placed on science education in the primary context.

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In this paper the nature of technology education in relation to science and science education is explored. Ways forward are indicated for both technology and science in the curriculum so that the two areas can be mutually supportive. In the 1990s, when curriculum writers were attempting to provide technology a unique place in the curriculum, they tended to downplay the relationship between technology and science. One reason for this tendency derives from a perception that science is an academic and elitist discipline and technology is well served by emphasizing the distance between the two. The other reason is perhaps political, that science, by virtue of its status in the community, and the status of its special type of knowledge, would be in a position, if allowed, to subsume the new subject. There are philosophical and historical precedents that justify such a concern. In tracing the historical relationships between science and technology, in professional practice, in philosophical positioning, and in school curriculum, we inevitably need to deal with the politics of school subjects.

The position taken in this paper is that science and technology are different, both in their epistemological foundations, and in the nature of the professional communities and the concerns of individual practitioners within the two areas. In clarifying these differences the essential nature of technology and of science are illuminated. The paper also explores ways in which the two areas can benefit from each other’s existence in the curriculum, and ways of approaching teaching that both clarifies the special nature of each type of knowledge, and allows them to be mutually supportive. This may necessitate a reconstruction of the nature of school science.

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Across Victoria, early childhood practitioners are incorporating science activities into daily experiences for their children. A small research project, which asked teachers to describe what they did in science and how they did it, has highlighted some interesting differences. This paper will describe case studies of four kindergarten settings and some of the experiences undertaken by the children—both as part of the formal program and through incidental play. It will consider these through a socio-cultural framework, noting how teachers used their understandings of play and language theories, to enhance children's understandings in science.

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This response to the two papers (by Rodriguez and Carlone et al.) on science education reform acknowledges first the coherence of the arguments presented around four reform narratives; that of the process of becoming science-enthusiastic, the nature of beliefs of science reform teachers, the barriers to reform, and the institutional expressions of these barriers. In the commentary I first discuss the reform ‘problem’ in terms of two interacting issues—the purposes of school science and the value placed on it in an elementary school curriculum. The insights produced in these papers are then used to reflect on a range of experiences and current policy debates in Australia. Finally, in this commentary, I point out: (a) the relationship of the papers to the reform issue of opposition to Standards Based Science (SBS) from proponents’ traditional conceptions of science education, discussing how this more specific reform question relates to the two papers; and (b) the singular nature of the I-meanings characterised in the Carlone et al. paper, describing (using Australian examples) how the notions of tempered radicals and I-meanings might also be used to characterise complexities in the processes of school science reform.

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This paper questions the perceived divide between ‘science’ subject matter and ‘moral’ or ‘ethical’ subject matter. A difficulty that this assumed divide produces is that science teachers often feel that there needs to be ‘special treatment’ given to certain issues which are of an ethical or moral nature and which are ‘brought into’ the science class. The case is made in this article that dealing with ethical issues in the science class should not call for a sensitivity that is beyond the expertise of the science teacher. Indeed it is argued here that science teachers in particular have a great deal to offer in enabling ethics education. To overcome this perceived divide between science and values it needs to be recognised that the educative development of learners is both scientific and moral. I shall be using a Deweyan perspective to make the case that we as science teachers can overcome this apparent divide and significantly contribute to an ethics education of our students.