University Science and Mathematics Education in Transition

University Science and Mathematics Education in Transition pdf epub mobi txt 电子书 下载 2026

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出版者:
作者:Skovsmose, Ole (EDT)/ Valero, Paola (EDT)/ Christensen, Ole Ravn (EDT)
出品人:
页数:400
译者:
出版时间:2008-11
价格:$ 157.07
装帧:
isbn号码:9780387098289
丛书系列:
图书标签:
  • 科学教育
  • 数学教育
  • 高等教育
  • 课程改革
  • 教学法
  • 教育转型
  • STEM教育
  • 大学教育
  • 教育研究
  • 学科发展
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具体描述

More than ever, our time is characterised by rapid changes in the organisation and the production of knowledge. This movement is deeply rooted in the evolution of the scientific endeavour, as well as in the transformation of the political, economic and cultural organisation of society. In other words, the production of scientific knowledge is changing both with regard to the internal development of science and technology, and with regard to the function and role science and technology fulfill in society. This general social context in which universities and knowledge production are placed has been given different names: the informational society, the knowledge society, the learning society, the post-industrial society, the risk society, or even the post-modern society. A common feature of different characterisations of this historic time is the fact that it is a period in construction. Parts of the world, not only of the First World but also chunks of the Developing World, are involved in these transformations. There is a movement from former social, political and cultural forms of organisation which impact knowledge production into new forms. These forms drive us into forms of organisation that are unknown and that, for their very same complexity, do not show a clear ending stage. Somehow the utopias that guided the ideas of development and progress in the past are not present anymore, and therefore the transitions in the knowledge society generate a new uncertain world. We find ourselves and our universities to be in a transitional period in time. In this context, it is difficult to avoid considering seriously the challenges that such a complex and uncertain social configuration poses to scientific knowledge, to universities and especially to education in mathematics and science. It is clear that the transformation of knowledge outside universities has implied a change in the routes that research in mathematics, science and technology has taken in the last decades. It is also clear that in different parts of the world these changes have happened at different points in time. While universities in the "New World" (the American Continent, Africa, Asia and Oceania) have accommodated their operation to the challenges of the construction in the new world, in many European countries universities with a longer existence and tradition have moved more slowly into this time of transformation and have been responding at a less rapid pace to environmental challenges. The process of tuning universities, together with their forms of knowledge production and their provision of education in science and mathematics, with the demands of the informational society has been a complex process, as complex as the general transformation undergoing in society. Therefore an understanding of the current transitions in science and mathematics education has to consider different dimensions involved in such a change. Traditionally, educational studies in mathematics and science education have looked at changes in education from within the scientific disciplines and in the closed context of the classroom. Although educational change in the very end is implemented in everyday teaching and learning situations, other parallel dimensions influencing these situations cannot be forgotten. An understanding of the actual potentialities and limitations of educational transformations are highly dependent on the network of educational, cultural, administrative and ideological views and practices that permeate and constitute science and

《大学科学与数学教育在转型中的探索》是一本深入浅出的学术著作,系统地回顾了近年来教育领域中科学与数学教学理念和方法的变迁。这本书旨在为研究者、教师以及相关从业人员提供一个全面而清晰的视角,帮助理解当前教育环境对学科知识传授的需求变化。内容涵盖了从历史背景到现代应用的一系列主题,通过详细分析各类教学模式的发展历程,揭示了教育实践在应对科技进步和社会多元化要求时所面临的挑战与机遇。 书中不仅介绍了传统教学方式的局限性,还全面探讨了新兴教育技术在科学与数学学习中的应用。作者深入剖析了信息化、智能化教育工具如何赋能学生个性化的学习路径,同时强调了教师角色转变的重要性,呼吁教师不断提升专业素养,以适应快速变化的教育需求。在探讨课程设计与评估体系时,本书也提出了一系列创新思路,如通过跨学科整合与项目式学习,增强学生对复杂概念的理解和实际应用能力。 此外,该书还关注了国际教育趋势的影响,比较了不同国家在科学与数学教育上的成功经验和挑战,为本土化改革提供了借鉴。书中以大量实例和数据支撑其论述,细致剖析了学习动机、认知发展以及教学评价体系的优化路径。这不仅为政策制定者提供了科学依据,也为教育工作者在具体实践中寻找策略和方法提供了有价值参考。 书中对学术研究的讨论还强调了理论与实践的紧密结合,提出了一系列可操作性的建议,旨在通过系统化学习提升整体教学效果。总体而言,这本书以其深入的分析、丰富的案例和前瞻性的思考,为读者打开了理解科学与数学教育转型全新的视野。这是一部兼具理论深度与实践指导价值的经典之作,适合希望探索当代教育核心问题的人士阅读。 该书以专业的语言和清晰的结构展现了各方面内容,其严谨的研究方法和丰富的实例使其成为一本值得深入学习的学术参考。无论是教学者还是相关学科的学生,都可以从中获得有益的启示,促进自己的成长与专业发展。这篇书籍不仅重视知识的传递,更注重对教育实践的优化,为实现科学和数学教育的高质量转型提供了坚实的基础。

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