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Increasing Undergraduate Interest to Learn Geoscience with GPS-based Augmented Reality Field Trips on Students’ Own Smartphones

机译:通过学生自己的智能手机上基于GPS的增强现实实地考察,提高本科学习地球科学的兴趣

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Abstract Field trips are a reliable method for attracting students into geoscience, yet for many high-enrollment college introductory courses, field trips are often impractical. Furthermore, introductory courses are often taught with a traditional lecture style that is poor at engaging students. This study examines the impact of augmented reality (AR) field trip exercises on the interest levels of students using readily accessible mobile devices (smartphones and tablets) as a means to provide simulated field trip experiences to a larger number of learners. The results of this study, involving 874 students from five different institutions, show that students who completed three geospatially oriented Grand Canyon field trip game modules were significantly more interested in learning the geosciences than control students and participants who completed only one module. More comprehensively, results from hierarchical linear modeling indicate three strong predictors of student interest in learning the geosciences: (1) the student’s initial interest, (2) being a STEM major, and (3) the number of AR field trip modules students complete. Notably, the race and gender of participants are not factors. Augmented reality field trips for mobile devices have potential to be an accessible and financially viable means to bring field trips to a diversity of students who would otherwise experience none. Results indicate these AR field trips increase student motivation to pursue geoscience learning.
机译:摘要实地考察是一种吸引学生进入地球科学的可靠方法,但是对于许多高招生的大学入门课程而言,实地考察通常是不切实际的。此外,入门课程通常采用传统的讲课风格进行授课,而这种讲授风格很难吸引学生。这项研究探讨了增强现实(AR)实地考察练习对使用方便可得的移动设备(智能手机和平板电脑)作为向更多学习者提供模拟实地考察体验的手段的学生的兴趣水平的影响。这项研究的结果涉及来自五个不同机构的874名学生,表明与仅完成一个模块的对照组学生和参与者相比,完成了三个地理空间定向的大峡谷实地考察游戏模块的学生对学习地球科学的兴趣明显更大。更全面地说,分层线性建模的结果表明,学生对学习地球科学感兴趣的三个重要预测指标:(1)学生的初始兴趣;(2)是STEM专业的学生;(3)学生完成的AR实地考察模块的数量。值得注意的是,参与者的种族和性别不是因素。用于移动设备的增强现实实地考察有可能成为一种可访问且在经济上可行的方式,将实地考察带给原本不会体验的学生。结果表明,这些AR实地考察增加了学生追求地球科学学习的动力。

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