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PhET Interactive Simulations: Transformative Tools for Teaching Chemistry

机译:PhET互动模拟:化学教学的变革性工具

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Developing fluency across symbolic-, macroscopic-, and particulate-level representations is central to learning chemistry. Within the chemistry education community, animations and simulations that support multi-representational fluency are considered critical. With advances in the accessibility and sophistication of technology, interactive computer simulations are emerging as uniquely powerful tools to support chemistry learning. In this article, we present examples and resources to support successful implementation of PhET interactive simulations. The PhET Interactive Simulations project at the University of Colorado Boulder has developed over 30 interactive simulations for teaching and learning chemistry. PhET simulations provide dynamic access to multiple representations, make the invisible visible, scaffold inquiry, and allow for safe and quick access to multiple trials, while being engaging and fun for students and teachers. The simulations are readily accessible online, and are designed to be flexible tools to support a wide-range of implementation styles and teaching environments. Here, we introduce the PhET project, including the project’s goals and design principles. We then highlight two simulations for chemistry, Molecule Polarity and Beer’s Law Lab. Finally, we share examples (with resources) of the variety of ways PhET simulations can be used to teach chemistryin lecture, laboratory, and homework.
机译:在符号,宏观和微粒级表示形式上提高流利度是学习化学的关键。在化学教育界,支持多代表流利性的动画和模拟被认为是至关重要的。随着技术的可访问性和先进性的发展,交互式计算机模拟正在成为支持化学学习的独特强大工具。在本文中,我们将提供示例和资源来支持PhET交互式仿真的成功实施。科罗拉多大学博尔德分校的PhET交互式模拟项目已经开发了30多种用于化学教学的交互式模拟。 PhET模拟提供了对多种表示形式的动态访问,使不可见的可见,脚手架的查询,并允许安全,快速地访问多个试验,同时使学生和老师充满乐趣。这些仿真可以随时在线访问,并且被设计为灵活的工具,可以支持多种实现方式和教学环境。在这里,我们介绍PhET项目,包括该项目的目标和设计原则。然后,我们重点介绍两种化学模拟,分子极性和比尔法律实验室。最后,我们(与资源一起)分享了在讲座,实验室和家庭作业中可以使用PhET模拟方法教授化学的各种方法的示例。

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