首页> 外文会议>Meeting of the Astronomical Society of the Pacific >Combining Real World Experiences with WorldWide Telescope Visualization to Build a Better Parallax Lab
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Combining Real World Experiences with WorldWide Telescope Visualization to Build a Better Parallax Lab

机译:与全球望远镜可视化结合现实世界经验,以建立更好的视差实验室

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We present a lab activity designed to help students understand the concept of parallax in both astronomical and non-astronomical contexts. In an outdoor setting, students learn the methodology of distance determination via parallax. They identify a distant landmark to establish a reference of direction, and then measure the change in apparent direction for more nearby objects as they change position in a 2 meter radius "orbit" around the "Sun." This hands-on activity involves large, visually-discernable angles so that students can internalize the concept of parallax from everyday experience. However, students often have difficulty transferring this experience to the astronomical realm, so we pair this hands-on activity with a more explicitly astronomically based activity using the WorldWide Telescope visualization environment. Students apply the same methodology in this environment and learn how the apparent motion of stars is related to their distance from Earth. The combination of hands-on activity and computer-aided visualization is designed to produce a deeper understanding of parallax in the astronomical environment, and an improved understanding of the inherently three-dimensional distribution of objects in our universe. More formal assessment is underway.
机译:我们提出了一个旨在帮助学生了解天文和非天文背景下视差概念的实验室活动。在室外环境中,学生通过视差学习距离确定的方法。它们识别了一个遥远的地标以建立方向的参考,然后测量更多附近物体的表观方向的变化,因为它们在“太阳”周围的2米半径“轨道”中改变了位置。这种动手活动涉及大,视觉上可辨别的角度,使学生可以从日常经验中内化视差的概念。然而,学生们常常难以将这种经验转移到天文领域,因此我们将这项动手与全球望远镜可视化环境更明确地基于天文的活动配对。学生在这种环境中应用相同的方法,并了解恒星的明显运动是如何与地球的距离相关。实践活动和计算机辅助可视化的组合旨在更深入地了解天文环境中的视差,并提高了对我们宇宙中对象的固有三维分布的理解。正在进行更多正式的评估。

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