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Conceptual Learning Outcomes of Virtual Experiential Learning: Results of Google Earth Exploration in Introductory Geoscience Courses

机译:虚拟体验学习的概念学习结果:介绍地球科学课程谷歌地球勘探的结果

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Virtual globe programs such as Google Earth replicate real-world experiential learning of spatial and geographic concepts by allowing students to navigate across our planet without ever leaving campus. However, empirical evidence for the learning value of these technological tools and the experience students gain by exploration assignments framed within them remains to be quantified and compared by student demographics. This study examines the impact of a Google Earth-based exploration assignment on conceptual understanding in introductory geoscience courses at a research university in the US Midwest using predominantly traditional college-age students from a range of majors. Using repeated-measures ANOVA and paired-samples t tests, we test the significance of the activity using pretest and posttest scores on a subset of items from the Geoscience Concept Inventory, and the interactive effects of student gender and ethnicity on student score improvement. Analyses show that learning from the Google Earth exploration activity is highly significant overall and for all but one of the concept inventory items. Furthermore, we find no significant interactive effects of class format, student gender, or student ethnicity on the magnitude of the score increases. These results provide strong support for the use of experiential learning in virtual globe environments for students in introductory geoscience and perhaps other disciplines for which direct observation of our planet's surface is conceptually relevant.
机译:谷歌地球等虚拟地球仪课程通过允许学生在我们的星球上导航而不离开校园来复制空间和地理概念的真实体验学习。然而,这些技术工具的学习价值的经验证据和学生通过勘探任务获得的经验仍然会被学生人口统计学量化和比较。本研究探讨了谷歌地球型勘探分配对美国中西部的研究大学介绍地球科学课程在介绍地球科学课程中的影响,主要是传统的大学生从一系列专业。使用重复措施Anova和配对样本T测试,我们使用Geoscience概念库存中的物品子集上的预测试和后塔分数测试活动的重要性,以及学生性别和种族对学生评分改进的互动影响。分析表明,从Google地球勘探活动中学习非常重要,除了一个概念库存项目之外。此外,我们发现类格式,学生性别或学生种族没有显着的互动效果对得分的程度增加。这些结果为在介绍地球科学中的学生提供了强大的基础上学习的强大支持,也许是我们地球表面直接观察的其他学科在概念上相关。

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