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Collaborative Research: Scaffolding Undergraduate Geoscience Inquiry Using New Loggable Google Earth Explorations

Collaborative Research: Scaffolding Undergraduate Geoscience Inquiry Using New Loggable Google Earth Explorations
协作研究:使用新的可记录 Google 地球探索搭建本科生地球科学探究支架
批准号:
1022782
负责人:
Steven Whitmeyer
金额:
$13.06万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-09-15 至 2014-08-31

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中文摘要
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英文摘要
The project is enhancing the learning outcomes of fieldwork-based geoscience education across a diverse range of undergraduate educational institutions. It is leveraging the power of modeling technology (COLLADA and GigaPan) and virtual globes such as Google Earth. A project-related Penrose professional conference at Google Headquarters is enabling a paradigm-shift among a cohort of academic experts and research assistants who are designing, developing, and implementing innovative virtual field trips. The virtual field trips are allowing geoscience students to act as free-agent learners guided by distributed teacher networks. The project is enabling students to explore a geoscience-enhanced Google Earth experience using models or "avatars" to represent themselves and their field vehicles. The virtual terrain is peppered with computer-generated rock outcrops and rock specimens that students are discovering and collecting as they solve problems as virtual detectives. The virtual activities are enabling students to lift and examine specimens, and allowing them to perform virtual physical and chemical analyses that are helping to guide their field mapping decisions. In addition to traditional field destinations, the project is providing a mechanism that allows students to visit and examine virtual places where real field trips cannot take them, including the vents of active volcanoes and the deepest ocean trenches. Students are playing the roles of first-responders in natural disaster scenarios and are exploring Paleo-Google Earths that correspond to a number of past geologic periods, thus expanding their appreciation and understanding of "deep time". The project is also enabling students to virtually explore the past and present environments of the Moon and Mars. Strong formative evaluation components are embedded throughout the project and are informing its development. A key feature guiding the development of the project is the use of technology to track students' actions and to log and scaffold their virtual field activities. By analyzing their actions and - by comparing of novice versus expert tracks - the project is assessing, in real time, the potential of each exercise to improve student learning while also providing instant feedback, encouragement, and guidance to the students.
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