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Real-Time Data Display, Spatial Visualization Ability, and Learning Force and Motion Concepts

机译:实时数据显示,空间可视化能力以及学习力和运动概念

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摘要

In this study, we examined how students' levels of spatial visualization ability interact with learning physics in a microcomputer-based laboratory (MBL) environment. Undergraduate students who had taken an introductory physics course based on MBL tools were pre- and posttested at the beginning and at the end of the semester on spatial visualization ability and their conceptual understanding of mechanics. The results showed that while spatial visualization is a reliable predictor for students' performance on physics conceptual evaluation tests before MBL instruction, the relation is not significant after the instruction. Furthermore, as a result of MBL instruction, students' levels of spatial visualization increased significantly. In addition, a group of science teachers presented with different types of MBL activities also showed a significant increase in spatial visualization ability.
机译:在这项研究中,我们研究了学生的空间可视化能力水平如何与基于微计算机的实验室(MBL)环境中的学习物理相互作用。在本学期的开始和结束时,已对基于MBL工具进行物理入门课程的本科生进行了预测试和后测试,以了解其空间可视化能力及其对力学的概念理解。结果表明,尽管空间可视化是MBL授课前学生进行物理概念评估测试的可靠预测指标,但教学后的关系并不显着。此外,通过MBL教学,学生的空间可视化水平显着提高。此外,一组参加了不同类型的MBL活动的科学老师也显示出空间可视化能力的显着提高。

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