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A COMPARISON OF DIFFERENT COMMUNICATION TOOLS FOR DISTANCELEARNING IN NUCLEAR EDUCATION

机译:不同距离的通讯工具的比较核教育学习

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Nuclear Engineering Education has seen a recent surge in activity in the past 10 years in Canada due in part to a Nuclear Renaissance. The Nuclear Industry workforce is also aging significantly and requires a significant turnover of staff due to the expected retirements in the next few years. The end result is that more students need to be prepared for work in all aspects of the Nuclear Industry.The traditional training model used for nuclear engineering education has been an option in an existing undergraduate program such as Chemical Engineering, Engineering Physics, or Mechanical Engineering with advanced training in graduate school. The education model was mostly lecture style with a small number of experimental laboratories due to the small number of research reactors that could be used for experimentation. While the traditional education model has worked well in the past, there are significantly more advanced technologies available today that can be used to enhance learning in the classroom.Most of the advancement in nuclear education learning has been through the use of computers and simulation related tasks. These have included use of industry codes, or simpler tools for analysis of the complex models used in the Nuclear Industry. While effective, these tools address the analytical portion of the program and do not address many of the other skills needed for nuclear engineers.In this work, a set of tools are examined that can be used to augment or replace the traditional lecture method. These tools are Mediasite, Adobe Connect, Elluminate, and Camtasia. All four tools have recording capabilities that allow the students to experience the exchange of information in different ways. The students now have more options in how they obtain and share information. Students can receive information in class, review it later at home or while in transit, or view/participate it live at a remote location. These different options allow for more flexibility in delivery of material. The purpose of this paper is
机译:过去十年来,加拿大的核工程教育活动激增,部分原因是核复兴。核工业的劳动力也在显着老化,并且由于预计未来几年将退休,因此需要大量人员流动。最终结果是,有更多的学生需要为核工业各个方面的工作做好准备。 在现有的本科课程(例如化学工程,工程物理或机械工程)中,已在研究生院进行了高级培训的一种选择是,用于核工程教育的传统培训模型已成为一种选择。由于可用于实验的研究堆数量少,因此教育模型大部分是讲课风格的,具有少量实验实验室。尽管传统的教育模式在过去一直运作良好,但如今有大量可用的先进技术可用于增强课堂学习。 核教育学习的大部分进步是通过使用计算机和模拟相关任务来进行的。这些措施包括使用行业规范,或更简单的工具来分析核工业中使用的复杂模型。这些工具虽然有效,但解决了计划的分析部分,并未解决核工程师所需的许多其他技能。 在这项工作中,研究了一组可用于扩充或替代传统演讲方法的工具。这些工具是Mediasite,Adobe Connect,Elluminate和Camtasia。所有这四个工具都具有记录功能,使学生能够以不同的方式体验信息交换。现在,学生在如何获取和共享信息方面有了更多选择。学生可以在课堂上接收信息,稍后在家里或在运输途中对其进行查看,或者在远程位置实时查看/参与。这些不同的选项使材料的交付更具灵活性。本文的目的是

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