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Remote laboratories extending access to science and engineering curricular

机译:远程实验室扩大了科学和工程课程的使用范围

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摘要

This paper draws on research, development, and deployment of remote laboratories undertaken by the authors since 2000. They jointly worked on the PEARL project (http://iet.open.ac.uk/pearl/) from 2000 to 2003 and have worked on further projects within their own institutions (the Open University, United Kingdom, and the University of Porto, Portugal, respectively) since then. The paper begins with a statement of the rationale for remote experiments, then offers a review of past work of the authors and highlights the key lessons for remote labs drawn from this. These lessons include 1) the importance of removing accessibility barriers, 2) the importance of a pedagogic strategy, 3) evaluation of pedagogic effectiveness, 4) the ease of automation or remote control, and 5) learning objectives and design decisions. The paper then discusses key topics including assessment issues, instructional design, pedagogical strategies, relations to industry, and cost benefits. A conclusion summarizes key points from the paper within a review of the current status of remote labs in education.
机译:本文借鉴了2000年以来作者进行的远程实验室的研究,开发和部署。他们从2000年到2003年共同致力于PEARL项目(http://iet.open.ac.uk/pearl/),从那时起,他们就在自己的机构(分别是英国的开放大学和葡萄牙的波尔图大学)内开展进一步的项目。本文首先阐述了远程实验的原理,然后回顾了作者的过往工作,并重点介绍了从远程实验中获得的关键经验教训。这些课程包括:1)消除可访问性障碍的重要性; 2)教学策略的重要性; 3)教学效果的评估; 4)自动化或远程控制的简便性; 5)学习目标和设计决策。然后,本文讨论了关键主题,包括评估问题,教学设计,教学策略,与行业的关系以及成本收益。结论总结了本文的要点,同时回顾了远程实验室在教育中的现状。

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