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Motion sensors in mathematics teaching: learning tools for understanding general math concepts?

机译:数学教学中的运动传感器:用于理解通用数学概念的学习工具?

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Incorporating technology tools into the mathematics classroom adds a new dimension to the teaching of mathematics concepts and establishes a whole new approach to mathematics learning. In particular, gathering data in a hands-on and real-time method helps classrooms coming alive. The focus of this paper is on bringing forward important mathematics concepts such as functions and rate of change with the motion detector. Findings from the author's studies suggest that the motion detector can be introduced from a very early age and used to enliven classes at any level. Using real-world data to present the main functions invites an experimental approach to mathematics and encourages students to engage actively in their learning. By emphasizing learning experiences with computer-based motion detectors and aiming to involve students in mathematical representations of real-world phenomena, six learning activities, which were developed in previous research studies, will be presented. Students use motion sensors to collect physical data that are graphed in real time and then manipulate and analyse them. Because data are presented in an immediately understandable graphical form, students are allowed to take an active role in their learning by constructing mathematical knowledge from observation of the physical world. By utilizing a predict-observe-explain format, students learn about slope, determining slope and distance vs. time graphs through motion-filled activities. Furthermore, exploring the meaning of slope, viewed as the rate of change, students acquire competencies for reading, understanding and interpreting kinematics graphs involving a multitude of mathematical representations. Consequently, the students are empowered to efficiently move among tabular, graphical and symbolic representation to analyse patterns and discover the relationships between different representations of motion. In fact, there is a need for further research to explore how mathematics teachers can integrate motion sensors into their classrooms.
机译:将技术工具整合到数学课堂中为数学概念的教学增加了新的维度,并建立了一种全新的数学学习方法。特别是,以动手和实时的方式收集数据有助于使教室更加活跃。本文的重点是提出重要的数学概念,例如运动检测器的功能和变化率。作者研究的结果表明,运动检测器可以从很小的时候就引入,并且可以在任何水平上使课堂更加活跃。使用现实世界的数据来展示主要功能,可以激发实验性的数学方法,并鼓励学生积极参与学习。通过强调基于计算机的运动检测器的学习经验,并旨在让学生参与现实世界现象的数学表示,将介绍在以前的研究中开发的六种学习活动。学生使用运动传感器收集实时绘制的物理数据,然后进行操作和分析。由于数据以立即可理解的图形形式呈现,因此通过从对物理世界的观察中构建数学知识,可以使学生在学习中发挥积极作用。通过使用预测观察解释格式,学生可以通过充满运动的活动学习坡度,确定坡度和距离与时间的关系图。此外,探索坡度的意义(被视为变化率),学生将获得阅读,理解和解释涉及多种数学表示的运动学图的能力。因此,学生被赋予了在表格,图形和符号表示之间有效移动的能力,以分析模式并发现运动的不同表示之间的关系。实际上,需要进一步研究以探索数学老师如何将运动传感器集成到他们的教室中。

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