首页> 外文会议>Seventh International Conference on Education and Training in Optics and Photonics, Nov 26-30, 2001, Singapore >Design of Computer-Assisted Education Programs for Optics and Photonics: Implications of Educational Technology Research
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Design of Computer-Assisted Education Programs for Optics and Photonics: Implications of Educational Technology Research

机译:光学和光子学计算机辅助教育程序的设计:教育技术研究的意义

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The design of computer-assisted educational materials and programs is a specialty of science education and relies heavily upon the results of science education and educational technology research. This paper explores the implications of this research for successful computer-assisted instruction. Two areas are examined: (1.) Simulations and problem-based learning environments (2.) The basis for the evaluation of distance learning course software. Examples will be given using a project developed by the NASA Classroom of the Future, at the Center for Educational Technologies at Wheeling Jesuit University. There are a number of optics-related computer simulations in CD-ROM based programs such as the award winning Astronomy Village: Investigating the Universe. Most educational designers can identify the characteristics of a good educational simulation. The design of an entire course delivered over the Internet requires high quality software that can maximize not only course material delivery but the conversation and information exchange that must take place as well. A model approach for an entire course using such software will be presented. Particular care will be given to how one evaluates the course software.
机译:计算机辅助教学材料和程序的设计是科学教育的专业,并且在很大程度上依赖于科学教育和教育技术研究的结果。本文探讨了这项研究对成功的计算机辅助教学的意义。检查了两个方面:(1.)模拟和基于问题的学习环境(2.)远程学习课程软件评估的基础。举个例子,将使用惠灵耶稣会大学教育技术中心的NASA未来课堂开发的项目。在基于CD-ROM的程序中有许多与光学相关的计算机模拟,例如屡获殊荣的《天文学村:研究宇宙》。大多数教育设计师可以识别出良好的教育模拟的特征。通过Internet交付的整个课程的设计需要高质量的软件,该软件不仅可以最大化课程材料的交付,还可以最大化必须进行的对话和信息交换。将介绍使用此类软件的整个课程的模型方法。将特别注意如何评估课程软件。

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