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Learning volcanology: Modules to facilitate problem solving by undergraduate volcanology students

机译:学习火山学:促进本科火山学学生解决问题的模块

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摘要

Six modules are presented that are designed for use in an undergraduate physical volcanology course. Each module uses a four-step mathematical problem-solving approach following Polyau27s How to Solve It, to guide students to: (i) understand the problem, (ii) devise a plan for solving the problem, (iii) implement the plan, and (iv) reflect on their solution. The modules cover topics in estimation of volumes of debris flow and tephra fallout deposits, lava effusion rate, calculation of melt density and viscosity, and development of dynamic models of bubble ascent in magma. Core quantitative issues, such as linear regression and error propagation, are introduced using these modules. The modules are included as supplementary material in PowerPoint and Portable Document Format (PDF). Cumulatively, the modules are designed to help volcanology students construct their own schemas, through which they can master abstract concepts in volcanology and in the geosciences generally. Physical volcanology can play a central role in the Earth Sciences curriculum by promoting quantitative problem solving using modules such as these.
机译:提出了六个模块,该模块设计用于本科物理火山学课程。每个模块使用四步的数学问题解决方法在Polya U27S如何解决它,引导学生:(i)了解问题,(ii)制定解决问题的计划,(iii)实施计划,(iv)反映了他们的解决方案。模块涵盖估计碎片流量和Tephars Fallout沉积物,熔岩积液,熔体密度和粘度的计算以及岩浆泡沫上升动态模型的发展。使用这些模块引入核心定量问题,例如线性回归和误差传播。模块包含在PowerPoint和便携式文档格式(PDF)中的补充材料。累积地,模块旨在帮助火山学学生构建自己的模式,他们可以通过它掌握火山学中的抽象概念以及在地球科学中。通过促进使用诸如这些模块的模块来解决定量问题,物理火山学可以在地球科学课程中发挥核心作用。

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    C.B. Connor; H.L. Vacher;

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  • 年度 2016
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