130 resultados para Television Broadcasts in Science


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This paper reports a study of science graduates who are employed in positions outside their discipline specialisation. The research was designed to uncover the reasons for them choosing to study science at university, the competencies they utilise in their work and their lives, and how these relate to their undergraduate education in science. The study is seen as important in that already about one-half of science graduates are in such positions and it is argued that there is a need in scientific and technologically based societies to have a greater representation of such people in decision-making positions in government and industry. The directions for the science degree that can be drawn from the data gathered are congruent with those arising from other relevant studies. That is, attention should be paid to widely used skills, such as communication and problem-solving, and to developing an understanding of science within its social and ethical context. An argument is mounted for considering the way the science degree is presented to potential students and to the general public.

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As the number of students pursuing mathematics and science in higher education decline, it becomes imperative· that we look for the causes of the decline. As part of the Australian Improving Middle Years Mathematics and Science (IMYMS) project, students were asked to rate their perceptions of classroom practice in mathematics and science and their attitudes to these subjects. Results of this survey reveal little difference in perceptions of classroom practice, but significant differences in students' attitudes between mathematics and science. Differences were particularly evident for items relating to the usefulness of mathematics and science (mathematics was more useful) and enjoyment of the subjects (science is more fun). If teachers are aware of such perspectives, it may be possible to change students' attitudes.

Effective student engagement depends on students enjoying their studies in mathematics and science, being confident in their ability and recognising the relevance of these subjects to everyday life, now and in the future.
(Education Training Committee, 2006, p. xvii)

Science and technology are the widely acknowledged foundation of Australia's future development. Underpinning these are the key learning areas of mathematics and science. However, Australia is experiencing a decline in numbers of mathematics and science students in higher education. Moreover, studies over the last two decades have shown a general decline in Australian students' interest and enjoyment of science across the compulsory secondary school years, with a particularly sharp decline across the primary to secondary school transition (e.g. Adams, Doig, & Rosier 1991; Goodrum, Hackling, & Rennie, 200 I) and a decline in the numbers of students studying' advanced mathematical courses in upper secondary school (Thomas, 2000).

Improving teaching and learning in the middle years of schooling (Years 5 to 9) is receiving particular attention because of the coincidence of the disengagement of students with the significance of these years for the preparation of students for their future role in society. Thus the Improving Middle Years Mathematics and Science: The role of subject cultures in school and teacher change (IMYMS) project, which is the source of data for this paper, is investigating the role of mathematics and science' knowledge and subject cultures in mediating change processes in the middle years of schooling.

Mathematics and science are sometimes seen as "love-hate" subjects, rating highest for subjects disliked, but also rating relatively highly among preferred subjects (Hendley & Stables, 1996). Students, even primary aged students, can often shed light on what constitutes good practice (see, for example, 'van den Heuvel-Panhuizen, 2005). Students' attitudes towards mathematics and science and their perceptions of what they regard as positive aspects of classroom practice have been shown to decline from the primary years to junior secondary (Race, 2000). The decline in interest in science in the early years of secondary school is of particular concern, since it is in these years that attitudes to the pursuit of science subjects and careers are formed (Speering & Rennie, 1996). Students' negative attitude towards the relevance of science ,content for their lives was a strong theme in the report by Goodrum, Hackling, & Rennie (2001) on the status and quality of teaching and learning of science.

As part of the IMYMS project, the IMYMS Student Survey was administered to all students in 2004 and 2005. The survey included a 36 item section on students' perceptions of classroom practice and attitudes towards mathematics and science, and a 24 item section on students' learning preferences. Students completed separate, parallel surveys for mathematics and science.

This paper focuses on students' perceptions and attitudes. It explores the differences in 700 Year 5 and 6 students' perceptions of their learning environment and their attitudes to mathematics and science during 2005, the second (and final) year of schools , involvement in the IMYMS project.

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Recently, two seemingly divergent approaches have emerged in outcomes-based medical research. Proponents of evidence-based medicine (EBM) argue that the most effective treatments will be found by adopting a hierarchical approach that gives pre-eminence to randomized controlled clinical trials, where these are available. Proponents of participatory medical research argue that research undertaken with consumers and other partners in the community will produce the best outcomes. While one approach marginalizes consumer experience the other approach draws consumers into it. EBM assumes a high level of consensus in a scientific community, while participatory medical research relies on co-opting consumer experience. This paper indicates that each approach involves a particular view of social structure in science. The paper uses theories of social relations among scientists for the purpose of critically assessing EBM and the participatory model.

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In 1938, Joseph Oldham, a leading British Christian ecumenist, formed a discussion group that came to be known as the Moot. The Moot met in a retreat setting for several long weekends each year until early 1947, its discussions carefully organized and convened by Oldham. More than anything else, the discussions of the Moot revolved around the topic of order and, more particularly, around the problem of how order might be restored in British society and culture in the context of a ‘world turned upside down’. Oldham and most members of the group sought a central place for Christian ideas and ideals in British social life.

A striking feature of the Moot was the intellectual stature and the diversity of interests of its members. Among its 16 or so regular members were Oldham (1874-1969), his close friend T.S. Eliot (1888-1963) and Karl Mannheim (1893-1947). Among the later ‘visitors’ to Moot meetings was Michael Polanyi (1891-1976), who first came to the 20th Moot meeting in June of 1944.1

This article presents several papers that were produced for the Moot discussion of 15-18 December 1944 by Eliot, Mannheim and Polanyi. These papers have intrinsic and historical interest, and are published together for the first time here. The initial paper, written by Eliot, treats the role in society of ‘the clerisy’2 - a term borrowed from Samuel Taylor Coleridge that points to an intellectual elite or vanguard. Eliot requested that Oldham solicit responses to his paper from Mannheim and Polanyi. Mannheim’s response was a set of detailed answers to four questions that Eliot posed at the end of his essay. Polanyi’s response was a short, coherent essay, which he identified as ‘my own position with respect’ to Eliot’s discussion; his essay outlines a brief account of the role of the clerisy in science.3 Eliot wrote short comments on the responses of both Mannheim and Polanyi. These five pieces, which have a natural unity, should be of interest to anyone working in the history of social thought. We have abridged only Mannheim’s lengthy response and have eliminated a few lines of illustrative material from Eliot’s reply to Mannheim, but these excisions in no way detract from the clarity of the authors’ perspectives in this rich trilogue.

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Constructivism, as a set of theories about how learners learn, has been an important discourse in the educational research literature for a number of years. Interestingly, it has been far more visible in science education research than in environmental education research. This article considers conceptual change theory within constructivism as a contested concept, outlines differing expressions of constructivism in science education and environmental education, and argues for approaches to environmental education that adopt socially constructivist perspectives with respect to the character of the subject matter content as well as to learners' apprehension of such content. In considering implications for research, this perspective is juxtaposed with a recent United States Education Act, which prescribes a far more objectivist approach to educational research and which serves as a reminder that research itself is a powerful factor in shaping how we construct the nature of subject matter, learning and the implications of these for teaching practice.

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Although I have been teaching and researching in primary science for the past decade, I began my career in science teaching in secondary and tertiary institutions and my views on science teaching were formed in these environments. Because I have never been a classroom primary teacher it has only been slowly that I have come to recognise some of the unique characteristics of science teaching in primary schools and come to value them. This paper is an attempt to begin a discussion about what science teaching can learn from the culture of teaching in primary schools by examining some of the ways in which science is taught.

This paper is based on research conducted for my doctorate. It was done in two parts: first a pilot study, Current Primary Science Practice, to try and get a feel for the way science is taught in primary schools in Victoria, N.S.W. and the A.C.T., followed by an in study of a term-long unit of science teaching done by four teachers at four different schools in Victoria and N.S.W, The Role of Practical Activities in Science Teaching.

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This presentation reports on a two-phase research program which focuses on the experiences of Islamic-background learners in science/environmental education. The research program explores perceived dissonances between western science and Islamic belief as an issue for: the highly visible discourse of constructivism in science and environmental education; the policy challenges of ‘internationalising the university curriculum’; and the pedagogical challenge of ‘Quality Learning’ – in particular responding to ‘faith-based’ commitments in education.
Conceptually, the research program is conducted within a constructivist discourse. Essentially, we are proposing that dissonances experienced by Islamic-background learners in a western science curriculum (as reported in Sharifah, 2003), and the effects of these dissonances on how learners construct meaning in science, can be understood within a constructivist discourse. Further, we believe the research has the promise of not only exploring and explicating some of the issues experienced by teachers and learners in Islamic science education contexts (and thereby contributing to our understanding of the idea of ‘quality learning’), but also expanding our grasp of the expressions, implications and limitations of the constructivist hypothesis in education. In this sense it has a transformative agenda by working to improve access to and experience in the science curriculum for Muslim students.

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Purpose
To compare the ability of alternative measures of physical activity and fitness to quantify associations with health outcomes.

Methods
Associations between a range of subjective and objective physical activity and fitness measures and cardiometabolic risk factors were examined using data from 1,631 Australians aged 26–36 years. Anthropometry, fitness, blood pressure, and fasting blood glucose, insulin, and lipids were measured at study clinics. Participants completed the International Physical Activity Questionnaire (IPAQ) and 7-day pedometer diaries; they also reported sedentary behavior (sitting, television viewing).

Results
In men and women, associations were strongest for fitness, with those in the highest (vs. lowest) fitness quarter having a 75% to 80% lower prevalence of two or more primary risk factors (waist circumference, high-density lipoprotein cholesterol, and insulin resistance). In men, a 60% to 70% reduced prevalence of two or more risk factors was observed across extreme quarters of IPAQ leisure, IPAQ vigorous, sitting duration, and pedometer measures. Similar reductions in prevalence were observed only across extreme quarters of pedometer activity and television viewing in women.

Conclusions
Associations between alternative measures and cardiometabolic risk were relatively independent, suggesting that a range of physical activity and fitness measures may be needed to most accurately quantify associations between physical activity and health.

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This article reports on two research projects (one in Malaysia and one in Australia) that studied the experiences of Islamic background learners studying western science. Conceptually, this research program is conducted within a socially constructivist discourse and employs both quantitative and qualitative forms of data collection. The article illustrates ways in which learners' meaning-making in science education is shaped by faith and culture and has the potential to expand our grasp of the expressions, implications and limitations of the constructivist hypothesis in education. In this sense it has an `equality of opportunity' agenda by working to improve access to, and experience in, the science curriculum for Muslim students.

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The article discusses project funded by the Australian Learning and Teaching Council which is designed to establish excellence in science learning and teaching in Australian universities. Six universities across the country were chosen for the initial implementation of the project. According to the article, during the duration of the project, leaders will undergo leadership training to equip them with skills necessary to foster change in classroom practices.

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Models are used routinely in science classes to help explain scientific concepts; however, students are often unaware of the role, limitations and purpose of the particular model being used. This study investigated Grade 8-11 students’ views on models in science and used these results to propose a framework to show how models are involved in learning. The results show that students’ understanding of the role of models in learning science improved in later grades and that many students were able to distinguish the purpose of scientific models from teaching models. The results are used to identify the criteria students use to classify models and to support pedagogical approaches of using models in teaching science.

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There has been growing interest in linking the learning of Science with the literacies of Science and representations. Recent attention has been focused on learning theories that emphasise the socio-cultural and situated aspects of learning, and in particular the notion of learning as participation in a discourse community. This paper will describe a learning sequence planned wilh Year 5/6 teachers to study invertebrates in the schoolground environment, but with an additional focus in which students generated and negotiated representations, and discussed the adequacy of these. The paper will present data from video capture of classroom activities, students' work samples, and pre- and post-unit testing, to explore what a representational focus might entail in teaching science, and the role of representations in learning, reasoning and exploring in science.

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Interest and participation in science in schools has been declining for many years and there is a genuine need to rejuvenate interest in science at the high school level. One possible solution is the completion of challenging science projects which fulfill an authentic purpose in the community. This paper discusses the results of ongoing research into the establishment of a rural and regional Science Challenge which makes use of partnerships with local industries and community groups to encourage the development of authentic science projects. In the development of the Science Challenge, many issues are emerging in relation to teachers' work, resources, administration and school cultures. This paper reports on the preliminary findings and indicates directions for the future.

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In this study l investigate the Singaporean characteristics of broadcast media internationalisation. I ask the question "e; Does Internationalisation lead to homogenisation and commercialisation of the television culture in Singapore or does it give way to more diversity, thus stimulating cultural differentiation?"e; . I articulate the constraints and/or tensions of supranational regulation, foreign policy, regional and intraregional alliances upon communication and the cultural and social effects as they impact on and respond to production, programming, scheduling and output in Singapore. I explain how Singaporean Television media culture takes part in the processes of globalisation, and how it challenges existing cultures and creates new and alternative symbolic and cultural communities, within the context of regional communication. In this thesis 1 conclude that whilst Singapore definitely does not have equity in information, wealth or resource flows it is attempting to liberalise. To do so, the government recognises that serious inadequacies and imbalances must be addressed and that the path to greater political and economic growth is through an actively informed public. Despite regulatory restrictions on data flow and technical and service ownership, Singapore is encouraging regional alliances, depoliticising cultural differences and concentrating on economic imperatives to build mutual knowledge and understanding, multilateral agreements, collective ownership, mutual exchange and cooperative dissemination.

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Evidence that many students are not being captivated by school science has led to advocacy of revising the science curriculum. However, there need to be accompanying changes in science teacher education. This study is designed to lay foundations for innovation in the pre-service education of secondary science teachers, involving a reconceptualisation of the nature of contemporary science and a course structure that links science teaching with broader science public reform initiatives. We held a series of Focus Groups, built around Government Research Priority areas, which brought together people from industry, government, research organisations, and community groups involved in science and its applications. In the groups the participants discussed how science currently operates in their area, ways in which the area will develop in the coming decade, and what implications there are for the nation and its citizens and for science education. What emerged was a concern for public responses to science at a range of levels, and a very different view of science practice and community involvement with science to that represented in current university and school science courses. This was confirmed in interviews with science graduates working in disparate fields, and also focus groups of school students. The paper will report on the insights generated, and explore the implications for redesigning the pre-service education of science teachers.