用Arduino学习天文学的教育活动

F. Di Giacomo, Maura Sandri
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引用次数: 0

摘要

有必要在各级学校促进更好的科学、技术和数学(STEM)教育。Arduino通过创建下一代STEAM计划使其成为可能,这些计划使学生能够在初中,高中和大学的学习之旅中学习。这些技术使抽象概念具体化和可操作成为可能,远离儿童和年轻人的经验,增加了学习的可能性。遵循建构主义的思想和实践,国家天体物理研究所开发了游戏。它是一个网络平台,收集了各种编码、教育机器人、制作和修补活动,使用天文学和天体物理学作为开发计算思维和所有STEM领域典型科学研究技能的工具。在本文中,我们将介绍Play团队创建的两个项目。第一个项目旨在利用Arduino板、一个LED和一个光敏电阻,创建一个能够描述一种最常用的识别系外行星的方法:凌日法。凌日法利用了这样一个事实,即当行星从恒星前面经过时,恒星的亮度相对于我们的视线会下降。通过这个项目,既可以了解Arduino,也可以了解天文学家可以从所谓的光曲线中获得的信息,例如轨道周期,行星大小等。第二个活动旨在使用Arduino和一些led创建和打开一个或多个星座。这样,就有可能通过一种积极的、合作的和可操作的方法来描述什么是星星、星座以及自古以来将人类与天空联系在一起的密切关系。多亏了Arduino,我们才有可能鼓励创造力,让每个人都能把自己的想法具体化,因为我们唯一能设定的限制就是我们的想象力
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Educational activities with Arduino to learn about astronomy
There is a need to promote better science, technology, and mathematics (STEM) education at all school levels. Arduino makes it possible by creating the next generation of STEAM programs that empower students on their learning journey through middle school, high school, and university. These kinds of technologies make it possible to make abstract concepts concrete and manipulable, far from the experience of children and young people, increasing the possibilities of learning. Following the constructionist ideas and practices, the National Institute for Astrophysics has developed play.inaf.it, a web platform that collects various coding, educational robotics, making, and tinkering activities, using astronomy and astrophysics as a tool to develop computational thinking and all the skills that are typical of scientific research in the STEM field. In this paper we want to present two projects created by the Play group. The first one aims to create, using an Arduino board, one LED and a photoresistor, an exhibit capable to describe one of the methods most used to identify exoplanets: the transit method, which exploits the fact that the brightness of a star decreases when the planet passes in front of it, with respect to our line of sight. Thanks to this project it is possible both to know Arduino and understand the information that astronomers can obtain from so-called light curves, such as the orbital period, the size of the planet, etc. The second activity aims to create and turn on one or more constellations using Arduino and some LEDs. In this way it will be possible to describe - through an active, cooperative, and operational approach - what are the stars, the constellations and the close relationship that has linked man to the sky since the dawn of time. Thanks to Arduino it is possible to encourage creativity, allowing everyone to give shape and substance to their ideas because the only limit we can set is our imagination
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