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1.
This research project aimed to analyse and clarify the impact of the formation of the Technological and Applied Studies (TAS) Key Learning Area (KLA) on school organisation, teachers and teaching method. It further aimed to examine the implications of this change for pre-service teacher education programs. In 1989 the NSW government White paper on curriculum reform mandated the restructuring of primary and secondary schooling. As a part of this restructuring the subjects that had been traditionally taught under the Home Economics and Industrial Arts departments, together with agriculture and computing studies were brought together under the TAS KLA. The government also mandated that every secondary school student would be required to study technology through a newly developed syllabusDesign and Technology Years 7–10. These changes have had significant implications for the organisation and delivery of technology curriculum in secondary schools and there are consequent implications for the provision of teacher education in the field of technology.Ms. Y. McDonald is currently the program director and practicum co-ordinator of the undergraduate bachelor of education secondary home economics: design, technology and health studies program in the Faculty of Education at Sydney University.Mr. J. Gibson is currently the program director and practicum co-ordinator of the undergraduate bachelor of education secondary industrial arts: design and technology program in the Faculty of Education at Sydney University. He has had extensive experience in curriculum development in the technology area through his membership of syllabus committees and the Technological and Applied Studies Key Learning Area Co-ordinating Committee of the NSW Board of Studies.  相似文献   

2.
本文针对我国目前服装行业大而不强的发展现状,以及高等服装教育所存在的专业定位不明、课程设置不合理、教学模式陈旧等问题,探讨了高等服装教育在办学定位、人才培养模式以及课程教学等方面实现特色办学的创新思路。  相似文献   

3.
Using wage data developed by Smith (1984), this paper compares human capital and institutional explanations of trends in the racial wage gap since 1890. While a regression including daily schooling variables is consistent with the human capital theory, so is an institutional model which omits schooling variables but adds the influences of isolation in the rural South, discriminatory hiring and promotion practices, unemployment, and government policy. Including schooling and institutional variables together casts doubt on the relative importance of schooling compared to labor market demands and political variables.  相似文献   

4.
The purpose of this study was to investigate areas of significance which were related to the understanding of technology and technology education, identified by teachers introducing the key learning area, technology, into their primary school classrooms for the first time. Working from Australia's national document on technology education, A Statement on Technology for Australian Schools (Curriculum Corporation, 1994), two teachers wrestled with how to fit this new curriculum area into their current classroom programs, their understandings of technology as a phenomenon and with their beliefs about teaching and learning in general. The study showed that the teachers made sense of technology education as it related to, from their perspectives, ideas about and aspects of primary school classrooms with which they felt comfortable. Implications for professional development include the need to acknowledge and value the prior experiences and understandings of primary teachers. The challenge for teachers in implementing technology education is gaining a conceptualisation of the learning area, which in some respects, is very like other more familiar learning areas in the primary curriculum, but in many other respects, unique. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   

5.
This article, in seven sections, describes the evolution of technological education in the Canadian province of Ontario. The first section clarifies the meanings of the terms technology and technological education. The second outlines significant events in the history of technical education in the province. The third examines some of the societal factors that have created a climate for change during the past two decades, while the fourth describes the broader context of recent curriculum developments. The fifth reports on the introduction in 1995 of The Common Curriculum and the publication of Broad-based Technological Education. The sixth provides a few case studies illustrating the variety of ways in which technology education is currently implemented. The seventh section offers an evaluation and critique of some aspects of provincial curriculum policy and practice. The article is published in two parts. Part 1, in this issue, contains the first five sections, which describe the current curriculum offerings and their evolution. Part 2, containing the remaining two sections and all references, will be published in the next issue. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   

6.
7.
This study illustrates the use of the DEPTH model in the development of professional development for secondary teachers of Engineering. In the school context of Western Australia, Engineering is a new upper school subject which will be taught by Design and Technology teachers, the majority of whom have neither taught at this level before, nor taught Engineering content. The multidimensionality of the DEPTH model was particularly appropriate in identifying the range of felt needs of these teachers to address the new curriculum in Engineering.  相似文献   

8.
Two instruments designed to ascertain children's conceptions of ‘technology’ were given to 315 English children in Years 2–6. A subset of 81 children and their teachers were interviewed. Responses to the same instruments were collected from 745 Western Australian children in the same year groups. Subsequently their teachers and 164 Australian children were interviewed. The Australian and English children had a similar range of concepts to explain technology, but the frequency of concepts varied. The results suggest that the stages of developing an inclusive concept of technology are mainly chronological, but the rates vary with individuals depending on a number of inter-related factors including home and school influence, ability, gender and opportunity to discuss ideas. Examination of these factors suggests there is a need for specific curriculum provision in technology based on adequate in- service training of teachers, which should also clarify the differences between science and technology. Children also need to be enabled to clarify their ideas through focused activities. This revised version was published online in August 2006 with corrections to the Cover Date.  相似文献   

9.
通过对我国包装工程专业高等教育发展现状的调研,结合青岛科技大学包装工程专业设置,对新形势下包装工程专业的基础理论课程设置、专业课程设置、实践环节设置进行分析研究,以期建立符合行业需要的包装工程专业高等教育体系,为国内包装工程专业高等教育发展和高素质创新型人才培养提供新思路。  相似文献   

10.
Technology education holds the promise of curriculum recognition, at last, of an authentic view of a long-neglected aspect of humans' intellectual heritage. Unfortunately, this vision is in danger of being lost because of unclear and simplistic views of the nature of technology. In this paper, we set out our contention that curriculum debate has been reduced to a struggle between academic-rationalist and technical-utilitarian positions. We present samples from our research which recognises young children's technological prowess and which, by implication, supports our case for including at least two other significant curriculum perspectives — an intellectual processes perspective and a social expression perspective. Reflecting the spirit of technological endeavour, we conclude by stressing the importance of continuing the dialogue presented here, between curriculum perspectives on the one hand and the work of children as technologists on the other.  相似文献   

11.
New Zealand under went major curriculum reforms in the early 1990's. These reforms were determined by the New Zealand Curriculum Framework which provides an overarching framework for the development of curricula in New Zealand and which defines seven broad essential learning areas rather than subject areas. Technology is important and should be part of the education of all students. Six grounds for developing technology education were given, namely: economic, pedagogic, motivational, cultural, environmental, and personal. This paper reports on the development of a technology curriculum in schools. The philosophy of the curriculum will be discussed, particularly crucial aspects such as inclusiveness. The way in which the technology curriculum has attempted to meet the needs of a New Zealand technological society will be examined. The general aims of technology education in Technology in the New Zealand Curriculum are to develop: technological knowledge and understanding; an understanding and awareness of the interrelationship between technology and society; technological capability. The development of seven technological areas for all students will be highlighted. This paper will discuss in detail the development of the national technology education policy and the way in which the curriculum was developed. The last section of the paper will consider issues related to teacher development programmes and areas of future research.  相似文献   

12.
We begin by setting out a view of learning as framework-building; enabling learners to shift their perspectives. For us, this expresses the essential unity of many human endeavours — in particular, for our purposes, children's learning, teachers' theory-building and the evolution of scientific understanding. We identify two frameworks which, we contend, are currently limiting the vision of teachers in fundamental ways and with serious consequences for their students. One is a transmission perspective on learning (in which New South Wales schooling has traditionally been steeped) and the other, a limiting conception of and anxious approach to technology (significantly impeding its meaningful penetration into schools). To learn how to help teachers break free of these restraints, we provided an opportunity for our teachers to become learners themselves in a technological context based on developmentalist views of learning and teaching. Here they became self-directing, challenged and fulfilled, gaining feelings of control over the technology, and each developed a powerful and personal appreciation of another framework for learning and teaching. In what they did, we can identify approaches which enabled a plurality of epistemologies to flourish. In conclusion, we predict a key role for these kinds of technological contexts in learning.Mark Cosgrove teaches in teacher education programs in the Faculty of Education at the University of Technology, Sydney. He studies the history and development of ideas in science and technology and their roles in cultures, and is exploring the notion that learning and technology are natural, biological phenomena. Lynette Schaverien is a research scholar investigating the learning and teaching of science and technology in primary schools. She is interested in developing teaching approaches which foster and sustain children's natural curiosity, and styles of mentoring which will regenerate teachers' powers to exploit that curiosity in classrooms.  相似文献   

13.
In this article the impact of technology education, as a new learning area (subject) in the curriculum, on in-service teacher education in South Africa is described in order to ascertain the extent of the impact. The research on which this article is based draws on a variety of experiences and observations in the field at grassroots level (in particular an outreach project in rural communities). The envisaged impact of technology education on South African schools, communities, teacher educators and teachers, the range of in-service teacher education that is required, and the impacts in urban and rural areas are discussed. Finally a number of concluding remarks are made about the extent of the impact of the inclusion of technology education in the new National Curriculum Statement and whether the situation has changed since the implementation of a pilot technology education project in 1998. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   

14.
15.
One of the recommendations made in the discussion document,A Curriculum Model for Education in South Africa (CUMSA), which was released by the Department of National Education in 1991, is that technology education should be offered for the first nine years of pre-tertiary education as a compulsory subject and for the last three years as an optional subject. This paper aims to locate technology education in the context of the sociopolitical and economic background to education in South Africa and to assess to what extent it meets the emerging aims and needs of education. Further aims are to propose a rationale for the teaching of technology at school level in South Africa, to suggest possible broad aims for the teaching of technology, to outline the nature and character of technology education relevant to the South African situation and to propose a possible methodology for technology education in South Africa. The conclusion is reached that technology education can make an important contribution to South African education if the so-called technological process is the major emphasis as this can be transformative and promote quality education.Dr Piet Ankiewicz (M Sc, D Ed, HED) is a Senior Lecturer in Education at the Rand Afrikaans University. He is responsible for teacher education programmes in the field of Science, and for an M Ed course in technology education. His areas of research include education policy and curriculum development for technology education.  相似文献   

16.
As Technical education strains to find a niche in the educational market place, are teachers suffering from a crisis of confidence? How comfortable are they with the ever-changing curriculum, with the subjects they are teaching and the reasons why they are teaching them? The broadening of the Technical curriculum in secondary schools to include Practical Craft Skills has proved popular with some teachers, while others perceive a drift back to a purely skills based curriculum along with a further deterioration of the status of Technical departments. This paper explores the present state of Technical Education in Scotland through the analysis of an online survey of 95 practising teachers and an investigation of employers’ entrance requirements for apprenticeships in the engineering and construction industries. The results indicate a degree of conflict among staff regarding the role of Technical education, coupled with limited recognition for Technical subjects among employers.  相似文献   

17.
Throughout history various grand narratives have impacted on technology education. In the current post modern era of globalization, technology education continues to struggle for relevance and definition, and takes various forms in different countries, but none seem resoundingly successful. The current development of what some have termed a digital democracy (Web 2.0)—the explosion of a new type of information technology which has become an integral characteristic of young people’s lives, is the starting point for this paper. Mainstream literacy theory was reconceptualised in the 1990’s with the foresight of anticipating the significance of a range of literacies. Broad conceptions of Technological Literacy have always accommodated multiple literacies, but must now essentially do so in a dynamic way through the pre-existing pedagogy of design.  相似文献   

18.
This paper discusses the ways in which teachers exploited a set of curriculum materials published as a vehicle for curriculum innovation, and the relationship between chosen modes of exploitation and teachers’ own perceptions of how the materials had ’added value’ to their teaching. The materials in question were developed by the Nuffield Design and Technology Project (’the Project’) to offer a pedagogy appropriate to the statutory curriculum for secondary school design and technology education in England and Wales (DFE/WO 1995). The Project had sought both to inform the statutory curriculum, and respond to its requirements. An earlier case study (Givens 1997) laid the foundations for the survey that is reported here. This paper focuses on the teaching of pupils aged 11–14. It finds that while most teachers made at least some use of all the various components of the publications, they were selective. While the Study Guide, which carries out a meta-cognitive dialogue with pupils, was generally underused, those teachers who did use it perceived greater value added by the materials as a whole to the quality of pupils’ work, their effectiveness in design and technology and their autonomy. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   

19.
通过研究独立学院服装设计与工程专业人才培养目标,探讨了从明确专业建设发展方向、完善师资队伍建设、优化教学体系与教学方法、强化实践教学内容、健全教学质量保障体系等方面进行改革,以培养具有较强实践能力和创新精神,具有就业竞争优势与可持续发展基础的应用型高级专门人才;提出了适应广东特别是珠三角经济社会发展需要的应用型本科人才培养模式和课程体系,为独立学院的发展能更好地适应地方经济社会发展的需要提供参考。  相似文献   

20.
This paper explores the integration of Education for Sustainable Development (ESD) in technology education and the extent to which it is currently addressed in curriculum documents and state examinations in technology education at post-primary level in Ireland. This analysis is conducted amidst the backdrop of considerable change in technology education at post-primary level. The analysis of the provision of technology education found, that among the range of technology related subjects offered, the study of Technology and Society is only addressed in one in a comprehensive manner. The paper discusses the implications of this limited integration, examines the factors inhibiting greater integration of ESD and outlines opportunities for future development.  相似文献   

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