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Teaching two basic nanotechnology concepts in secondary school by using a variety of teaching methods

机译:通过多种教学方法在中学教授两种基本的纳米技术概念

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A nanotechnology module was developed for ninth grade students in the context of teaching chemistry. Two basic concepts in nanotechnology were chosen: (1) size and scale and (2) surface-area-to-volume ratio (SA/V). A wide spectrum of instructional methods (e.g., game-based learning, learning with multimedia, learning with models, project based learning, and storytelling and narratives) was implemented to support students' understanding. Students' interviews and the content of students' final projects were used and analyzed to learn how using a variety of teaching methods influenced students' understanding of basic concepts in nanotechnology. In addition, the study examined which methods enhance students' understanding and which do not, according to students' perceptions. Students felt that most of the teaching methods facilitated their learning, with the exception of two activities: the Hungarian cube, and nano effect simulation; these two activities were very abstract and confused the students. Finally, we formulated recommendations regarding methods for teaching nanotechnology in the future.
机译:在化学教学中为九年级学生开发了纳米技术模块。选择了纳米技术中的两个基本概念:(1)尺寸和规模,以及(2)表面积体积比(SA / V)。广泛的教学方法(例如,基于游戏的学习,通过多媒体进行学习,通过模型进行学习,基于项目的学习以及讲故事和叙事)被用来支持学生的理解。通过对学生的访谈和学生最终项目的内容进行分析,以了解使用各种教学方法如何影响学生对纳米技术基本概念的理解。此外,该研究还研究了根据学生的看法,哪些方法可以增进学生的理解,而哪些方法则不能。学生认为,除以下两项活动外,大多数教学方法都有助于他们的学习:匈牙利立方体和纳米效应模拟;这两个活动非常抽象,使学生感到困惑。最后,我们就未来的纳米技术教学方法提出了建议。

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