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The UMI-Sci-Ed Platform: Integrating UMI Technologies to Promote Science Education

机译:UMI-SCI-ED平台:整合UMI技术,促进科学教育

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Currently, there is a growing research interest on emerging technologies, such as, ubiquitous computing, mobile computing and the Internet of Things (IoT), collectively mentioned as UMI technologies. The proliferation of UMI technologies will not only change the way we live but can also offer new learning opportunities. At the same time, there is an increasing need for skills that are associated with the UMI domain in the labour market. The Umi-Sci-Ed is an EU project which explores ways to shed new light into this training aspect by introducing several model educational scenarios that incorporate UMI technologies, in order to cultivate relevant competences on high school students. This paper reports initial results achieved in this context. In particular, we give an overview of the key components of the UMI-Sci-Ed platform that aims to support the activities of Communities of Practice involved in STEM education. Students through a mentoring mechanism are provided with training material, IoT hardware kits and software tools to explore UMI technologies through hands-on activities. In this framework, example educational scenarios and the corresponding UMI applications developed are presented. The hypothesis is that the learning process can be empowered by using such UMI applications as students are provided with meaningful opportunities to participate in the learning process such as in terms of building applications that are relevant to the subject they like and having active interactions within student groups in a way that practical experiences can provide them a rich context to grasp scientific knowledge. Finally, the results of a preliminary evaluation of the proposed approach in the context of an educational workshop are discussed.
机译:目前,对新兴技术的研究兴趣日益增长,例如普遍存在的计算,移动计算和物联网(物联网),作为UMI技术。 UMI技术的扩散不仅会改变我们的生活方式,还可以提供新的学习机会。与此同时,越来越需要与劳动力市场中的UMI领域相关的技能。 UMI-SCI-ED是一个欧盟项目,探讨了通过引入包含UMI技术的若干模型教育情景来阐述新光线的方法,以培养高中生的相关能力。本文报告了在此背景下实现的初步结果。特别是,我们概述了UMI-SCI-ED平台的关键组成部分,旨在支持患茎教育的练习社区的活动。学生通过辅导机制提供培训材料,物联网硬件套件和软件工具,通过实践活动探索UMI技术。在此框架中,呈现示例教育场景和开发的相应的UMI应用程序。假设是通过使用此类UMI应用程序可以赋予学习过程,因为学生提供有意义的机会参与学习过程,例如在与他们喜欢的主题相关的建筑物的应用程序方面,并且在学生组中具有积极的交互在这种情况下,实际经验可以为他们提供丰富的背景来掌握科学知识。最后,讨论了在教育研讨会背景下提出拟议方法的初步评估结果。

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