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Teaching scientific principles through a computer-based, design-centered learning environment.

机译:通过基于计算机的,以设计为中心的学习环境来教授科学原理。

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Research on science instruction indicates that the traditional science classroom is not always effective in improving students' scientific understanding. Physics courses, in particular, do not promote the ability to apply scientific principles for many reasons, based on their focus on procedural problem-solving and lab exercises. In this dissertation, I propose the Designing-to-Learn Architecture (DTLA), a design-centered goal-based scenario (GBS) architecture, theoretically grounded in the literature on design-centered learning environments, goal-based scenarios, intelligent tutoring systems and simulations. The DTLA offers an alternative approach to addressing the issues encountered in the traditional science classroom. The architecture consists of an artifact with associated design goals; components with component options; a simulation; a reference database; and guided tutorials. I describe the design of Goin' Up?, the prototype DTL application, serving as the basis for evaluating the effectiveness of the DTLA. I present results of interview and testing protocols from the formative evaluation of Goin' Up?, suggesting that learning outcomes, though not statistically significant, could be improved through DTLA enhancements informed by usage patterns in software sessions. I conclude with an analysis of the results and suggestions for improvements to the DTLA, including additional components to address reflection, provide support for novice designers, and offer tutorial guidance on the analysis of the artifact.
机译:对科学教学的研究表明,传统的科学课堂并不总是有效地提高学生的科学理解力。尤其是物理课程,基于对程序性问题解决和实验室练习的关注,基于多种原因,它们并未提高其应用科学原理的能力。在这篇论文中,我提出了以学习为中心的设计架构(DTLA),一种以设计为中心的基于目标的场景(GBS)架构,其理论基础是关于以设计为中心的学习环境,基于目标的场景,智能辅导系统的文献。和模拟。 DTLA提供了另一种方法来解决传统科学课堂中遇到的问题。该架构由一个具有相关设计目标的工件组成。具有组件选项的组件;模拟参考数据库;和指导教程。我将描述原型DTL应用程序Goin'Up?的设计,以此作为评估DTLA有效性的基础。我介绍了Goin'Up?的形成性评估所得出的面试和测试协议的结果,这表明学习成果尽管不具有统计学意义,但可以通过软件会话中使用模式的DTLA增强来改善学习成果。最后,我对结果进行了分析,并提出了对DTLA进行改进的建议,包括解决反射问题的其他组件,为新手设计师提供了支持,并提供了有关工件分析的教程指南。

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