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University/college cooperation in course development: synchronous collaborative teaching/learning in advanced engineering in Taiwan

机译:课程开发中的大学/学院合作:台湾先进工程的同步协作教学/学习

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摘要

A synchronous cooperation model between institutes of higher learning for course development was implemented at the National Cheng Kung University (NCKU) and at the Far East College (FEC) in Taiwan. Synchronous computer-supported cooperative work (CSCW) tools such as videoconferencing, application sharing, electronic whiteboard, and file transfer, through hybrid ISDN/Internet network services, were adopted for communication, coordination, and sharing of knowledge and equipment in two joint engineering laboratory course: 'Remote collaborative reverse engineering', based at the FEC, and 'Computer-integrated manufacturing', based at the NCKU. The major teaching objective of both courses was to present examples of complete industrial processes, rather than to demonstrate the hardware and software used to support the presentation between the two institutions. These industrial examples were presented synchronously and interactively to students at both the FEC and the NCKU to illustrate the importance of knowledge sharing and device integration with diverse synchronous CSCW methods. The industrial processes related to mold design and the forging of a metal part. The framework of the layered, synchronous, collaborative course presentation described in this paper also applies to the collaborative course development model, which has advantages over conventional engineering laboratory courses. The adoption of this model will relieve the cost of investment in teaching resources and equipment, as these may thereby be shared between institutions. The model has proved both feasible and extensible.
机译:国立成功大学(NCKU)和台湾远东学院(FEC)实施了高等院校之间用于课程开发的同步合作模型。在两个联合工程实验室中,通过混合ISDN / Internet网络服务,使用了由计算机支持的同步协作工作(CSCW)工具,例如视频会议,应用程序共享,电子白板和文件传输,用于知识,设备的通信,协调和共享。课程:基于FEC的“远程协作逆向工程”和基于NCKU的“计算机集成制造”。这两门课程的主要教学目标是展示完整的工业流程示例,而不是演示用于支持两个机构之间的演示的硬件和软件。这些工业示例在FEC和NCKU上以同步和交互的方式呈现给学生,以说明使用各种同步CSCW方法进行知识共享和设备集成的重要性。与模具设计和金属零件锻造有关的工业过程。本文中描述的分层,同步,协作式课程演示的框架也适用于协作式课程开发模型,该模型具有优于常规工程实验室课程的优势。采用这种模式将减轻教学资源和设备的投资成本,因为这些成本可能在机构之间共享。该模型已被证明既可行又可扩展。

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