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From Geocentrism to Allocentrism: Teaching the Phases of the Moon in a Digital Full-Dome Planetarium

机译:从地心论到同心论:在数字全圆顶天文馆中讲授月相

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An increasing number of planetariums worldwide are turning digital, using ultra-fast computers, powerful graphic cards, and high-resolution video projectors to create highly realistic astronomical imagery in real time. This modern technology makes it so that the audience can observe astronomical phenomena from a geocentric as well as an allocentric perspective (the view from space). While the dome creates a sense of immersion, the digital planetarium introduces a new way to teach astronomy, especially for topics that are inherently three-dimensional and where seeing the phenomenon from different points of view is essential. Like a virtual-reality environment, an immersive digital planetarium helps learners create a more scientifically accurate visualization of astronomical phenomena. In this study, a digital planetarium was used to teach the phases of the Moon to children aged 12 to 14. To fully grasp the lunar phases, one must imagine the spherical Moon (as perceived from space), revolving around the Earth while being illuminated by the Sun, and then reconcile this view with the geocentric perspective. Digital planetariums allow learners to have both an allocentric and a geocentric perspective on the lunar phases. Using a Design experiment approach, we tested an educational scenario in which the lunar phases were taught in an allocentric digital planetarium. Based on qualitative data collected before, during, and after the planetarium intervention, we were able to demonstrate that five out of six participants had a better understanding of the lunar phases after the planetarium session.
机译:全球越来越多的天文馆正在使用超高速计算机,功能强大的图形卡和高分辨率视频投影仪将数字化,以实时创建高度逼真的天文图像。这项现代技术使观众可以从地心和同心轴的角度(从太空观看)观察天文现象。尽管圆顶营造出一种沉浸感,但数字天象馆引入了一种新的天文学教学方法,特别是对于固有的三维主题以及从不同角度看待现象的主题而言。像虚拟现实环境一样,沉浸式数字天象馆可帮助学习者创建更科学的天文学现象可视化效果。在这项研究中,数字天文馆被用于向12至14岁的儿童讲授月相。要完全掌握月相,必须想象球形月球(从太空中可以看到),在被照亮的同时绕地球旋转太阳,然后将此视图与地心透视图调和。数字天文馆使学习者对月相具有同心圆和地心透视。使用设计实验方法,我们测试了一个教育场景,其中在同心圆数字天文馆中讲授月相。根据天文馆干预之前,之中和之后收集的定性数据,我们能够证明六分之五的参与者对天文馆会议之后的月相有更好的了解。

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