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Helios: a tangible and augmented environment to learn optical phenomena in astronomy

机译:Helios:一个有形和增强的环境,用于学习天文学中的光学现象

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France is among the few countries that have integrated astronomy in primary school levels. However, for fifteen years, a lot of studies have shown that children have difficulties in understanding elementary astronomic phenomena such as day/night alternation, seasons or moon phases' evolution. To understand these phenomena, learners have to mentally construct 3D perceptions of aster motions and to understand how light propagates from an allocentric point of view. Therefore, 4-5 grades children (8 to 11 years old), who are developing their spatial cognition, have many difficulties to assimilate geometric optical problems that are linked to astronomy. To make astronomical learning more efficient for young pupils, we have designed an Augmented Inquiry-Based Learning Environment (AIBLE): HELIOS. Because manipulations in astronomy are intrinsically not possible, we propose to manipulate the underlying model. With HELIOS, virtual replicas of the Sun, Moon and Earth are directly manipulated from tangible manipulations. This digital support combines the possibilities of Augmented Reality (AR) while maintaining intuitive interactions following the principles of didactic of sciences. Light properties are taken into account and shadows of Earth and Moon are directly produced by an omnidirectional light source associated to the virtual Sun. This AR environment provides users with experiences they would otherwise not be able to experiment in the physical world. Our main goal is that students can take active control of their learning, express and support their ideas, make predictions and hypotheses, and test them by conducting investigations.
机译:法国是少数几个国家,综合小学一级的天文学。然而,对于十五年来,很多研究表明,儿童在理解基本的天文现象,如日/夜交替,季节或月亮阶段的演变。要了解这些现象,学习者必须在精神上构建对艾斯特动作的3D看法,并了解光线如何从外常的角度传播。因此,4-5年级的儿童(8至11岁)正在发展其空间认知,具有许多困难,以吸收与天文学相关的几何光学问题。为了使年轻学生更效率的天文学习,我们设计了一种基于增强的查询学习环境(Aible):Helios。因为天文学的操纵本质上是不可能的,我们建议操纵潜在的模型。与Helios,太阳,月亮和地球的虚拟复制品直接从有形操作系统操作。这种数字支持将增强现实(AR)的可能性相结合,同时保持了基于教学的科学原则之后的直观的相互作用。考虑光属性,并通过与虚拟太阳相关联的全向光源直接产生地球和月亮的阴影。此AR环境为用户提供经验,否则他们将无法在物理世界中进行实验。我们的主要目标是,学生可以积极控制他们的学习,表达并支持他们的想法,做出预测和假设,并通过进行调查来测试它们。

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