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Developing iPad-based Physics Simulations that Can Help People Learn Newtonian Physics Concepts

机译:开发基于iPad的物理模拟,可以帮助人们学习牛顿物理概念

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The aims of this study are: (1) to develop iPad-based computer simulations called iSimPhysics that can help people learn Newtonian physics concepts; and (2) to assess its educational benefits and pedagogical usefulness. To facilitate learning, iSimPhysics visualizes abstract physics concepts, and allows for conducting a series of computer simulations implementing inquiry cycle and model progression approaches. To promote learners' motivation, iSimPhysics adopts various game mechanics in its learning tasks. To assess educational benefits and usefulness of iSimPhysics, selected questions from Force Concept Inventory (FCI) and Pedagogically Meaningful Learning Questionnaire (PMLQ) were administered before and after 17 graduate students used iSimPhysics. Paired t-tests indicate that students were able to solve more FCI problems (p < 0.01, ES = 2.28) and to provide more correct explanations (p < 0.01, ES = 1.19) after using iSimPhysics. Students' responses to PMLQ questions indicate that inquiry-based learning activities using iSimPhysics were helpful for them to learn target Newtonian physics concepts. The findings of this study may suggest that iPad-based computer simulations providing appropriate instructional scaffolding (e.g., visualization, inquiry cycle and model progression) can be an effective learning tool for physics (and possibly other science) concepts.
机译:这项研究的目的是:(1)开发名为iSimPhysics的基于iPad的计算机模拟,可以帮助人们学习牛顿物理学的概念; (2)评估其教育收益和教学用途。为了促进学习,iSimPhysics将抽象的物理概念可视化,并允许进行一系列计算机模拟,以实现查询周期和模型进行方法。为了提高学习者的动力,iSimPhysics在学习任务中采用了各种游戏机制。为了评估iSimPhysics的教育收益和有用性,在17名研究生使用iSimPhysics之前和之后,分别从“力概念清单”(FCI)和“教学意义上的学习问卷”(PMLQ)中选出了一些问题。配对的t检验表明,使用iSimPhysics后,学生能够解决更多FCI问题(p <0.01,ES = 2.28)并提供更多正确的解释(p <0.01,ES = 1.19)。学生对PMLQ问题的回答表明,使用iSimPhysics进行的基于探究的学习活动有助于他们学习牛顿物理学的目标概念。这项研究的发现可能表明,基于iPad的计算机模拟提供适当的指导性脚手架(例如可视化,探究周期和模型进展)可能是物理(甚至可能是其他科学)概念的有效学习工具。

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