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Stitching Codeable Circuits: High School Students\u27 Learning About Circuitry and Coding with Electronic Textiles

机译:缝合可编码电路:高中生\ u27了解电路和电子纺织品编码

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摘要

Learning about circuitry by connecting a battery, light bulb, and wires is a common activity in many science classrooms. In this paper, we expand students’ learning about circuitry with electronic textiles, which use conductive thread instead of wires and sewable LEDs instead of lightbulbs, by integrating programming sensor inputs and light outputs and examining how the two domains interact.We implemented an electronic textiles unit with 23 high school students ages 16–17 years who learned how to craft and code circuits with the LilyPad Arduino, an electronic textile construction kit. Our analyses not only confirm significant increases in students’ understanding of functional circuits but also showcase students’ ability in designing and remixing program code for controlling circuits. In our discussion, we address opportunities and challenges of introducing codeable circuit design for integrating maker activities that include engineering and computing into classrooms.
机译:通过连接电池,灯泡和电线来学习电路是许多科学教室的常见活动。在本文中,我们通过对传感器输入和光输出进行编程并检查这两个域之间的相互作用,扩大了学生对电子纺织品电路的学习,电子纺织品使用导电线代替电线,而使用可缝制的LED代替灯泡,并研究了这两个领域之间的相互作用。该单元有23名16-17岁的高中生,他们通过电子纺织构造套件LilyPad Arduino学习了如何制作和编码电路。我们的分析不仅证实学生对功能电路的理解有了显着提高,而且还展示了学生设计和重新混合用于控制电路的程序代码的能力。在我们的讨论中,我们解决了引入可编码电路设计以将包括工程和计算在内的制造商活动集成到教室中的机遇和挑战。

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