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Using robotics educational module as an interactive STEM learning platform

机译:使用机器人教育模块作为交互式STEM学习平台

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In traditional teaching methods of teaching science and engineering, students lack experience of applying physical principles to real time physical situation required in these disciplines of study. Students are not engaged to create interest in learning through interactive activities. Lack of interest combined with shortage of practical experience in learning eventually leads them to failure to keep up with the grades expected of them or even can lead to increased rates of attrition in science and engineering disciplines. To overcome this problem, we present a novel and versatile interactive learning tool using data logging capabilities of Robotic Educational Module of Lego NXT. In the present work, we describe the method of Robotics-based educational tool to study electrical conductivity of liquids, body resistance, and Newton's law of cooling. The details of the method - designing and building a robo-based physical system, programming, data collection, analyzing data, calculating and interpreting results are given. The method has been demonstrated to K12, and undergraduate student participants of summer camps. The Robotics-based educational tool can be used for teaching or for learning and can be extended to several other areas of science and engineering.
机译:在科学和工程学的传统教学方法中,学生缺乏将物理原理应用于这些学习学科所要求的实时身体状况的经验。学生们不会通过互动活动来激发学习兴趣。缺乏兴趣加上缺乏学习实践经验,最终导致他们无法跟上他们预期的成绩,甚至导致科学和工程学科的流失率上升。为了克服这个问题,我们提出了一种新颖且用途广泛的交互式学习工具,该工具使用了Lego NXT机器人教育模块的数据记录功能。在当前的工作中,我们描述了基于机器人技术的教育工具的方法,以研究液体的电导率,体电阻和牛顿冷却定律。详细介绍了该方法-设计和构建基于机器人的物理系统,编程,数据收集,分析数据,计算和解释结果。该方法已向K12和夏令营的大学生证明。基于机器人技术的教育工具可以用于教学或学习,并且可以扩展到科学和工程学的其他领域。

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