首页> 外文期刊>统计学期刊(英文) >The Effectiveness of Model Rocketry to Teach Science and Quantitative Content to Students in a Non-Science Majors Course at the College Level: An Example from a Planetary Geology Course
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The Effectiveness of Model Rocketry to Teach Science and Quantitative Content to Students in a Non-Science Majors Course at the College Level: An Example from a Planetary Geology Course

机译:在大学水平的非科学专业课程中,模型火箭教学对学生进行科学和定量内容教学的有效性:以行星地质学课程为例

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Engaging non-science majors in a college-level science course can prove challenging. In turn, this can make it difficult to effectively teach science and math content. However, topics related to planetary exploration have a unique way of capturing one’s imagination and may serve to robustly engage non-science majors. In this contribution, I 1) describe a model rocketry lab module,?I have created and implemented into an introductory-level planetary geology course and 2) quantify student learning gains as a result of this module. This module builds on model rocketry lesson plans for science and math coursework at the K-12 level (e.g., [1]?[2])?and involves students working in groups to 1) design and build model rockets to carry out a theoretical mission that addresses a science question the students have developed, 2) launch their rockets and collect related data, 3) synthesize and evaluate their data, and 4) report their results in both oral and written forms. The tasks of building and launching the model rocket serve as a vehicle that allows students to employ the scientific process while learning about planetary mission design and applying geologic and quantitative skills useful to answering a science-related question. Quantification of student learning gains shows that through this lab module, students significantly improved their quantitative and scientific reasoning skills. Results from student questionnaires showed a significant increase in student interest and confidence in addressing scientific questions as well as an understanding of how planetary missions are designed and conducted.
机译:在大学级科学课程中吸引非科学专业可以证明具有挑战性。反过来,这可以使有效地教导科学和数学内容。然而,与行星探索有关的主题具有捕捉一个人想象的独特方式,并可能有助于强大地互动非科学专业。在此贡献中,I 1)描述了一个模型rocketry实验模块,?我已经创建并实施到了介绍级行星地质课程中,2)由于该模块而定量学生学习收益。该模块在K-12级的Model Rocketry课程计划中建立了Model Rocketry课程计划(例如,[1]?[2])?并涉及以团体工作的学生为1)设计并建立模型火箭来实现理论解决学生们已经开发的科学问题的使命,2)推出他们的火箭并收集相关数据,3)合成和评估其数据,4)报告其在口头和书面形式中的结果。建筑物和发射模型火箭的任务用作允许学生在学习行星任务设计的同时雇用科学过程的车辆,以应用有助于回答科学相关问题的地质和定量技能。学生学习收益的量化表明,通过这个实验室模块,学生显着提高了他们的定量和科学推理技能。学生问卷的结果表明,在解决科学问题的情况下,对学生的兴趣和信心的显着增加以及了解行星任务是如何设计和进行的。

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