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M-MODEL: AN ONLINE TOOL FOR PROMOTING STUDENT PROBLEM SOLVING UTILIZING MENTAL MODELS

机译:M模型:利用心理模型促进学生问题的在线工具

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摘要

Students learn to solve problems by developing mental models of the problem. Although these models are many and diverse, a common one used in engineering education consists of identifying the known and unknown variables, construction of a graphical problem representation, and developing a mathematical model representing the two preceding steps. This is particularly the case for courses in physics, mechanics, and electrical circuits. M-MODEL is a computer-based implementation of this approach to problem-solving. It requires users to build the known/unknown, graphical (free-body diagram in this paper), and mathematical models of a problem. Once the student creates a complete model, M-MODEL checks it for errors such as proper number of graphical elements, naming of variables, and equation formatting. These checks also provide users with feedback that can be used to correct or improve their models. Once users are satisfied with their models, M-MODEL proceeds to solve their equations as well as display the correct solution for users to compare to their models. M-MODEL also provides a tool that individual authors can use to prepare problem models. This paper discusses the features of M-MODEL as applied to an Engineering Statics course. It also discusses how it may be used to encourage students to develop mental model approaches to problem solving.
机译:学生通过开发问题的心理模型学会解决问题。虽然这些模型是多种多样的,但是在工程教育中使用的共同之一包括识别所知和未知的变量,图形问题表示的构建,以及表示代表前一步的两个数学模型。这是物理,力学和电气电路中的课程尤其如此。 M模型是一种基于计算机的解决方法解决问题。它要求用户构建已知/未知的图形(本文的自由体图),以及问题的数学模型。一旦学生创建完整的模型,M模型会检查它是否有错误,例如正确数量的图形元素,变量命名和等式格式。这些检查还为用户提供了可用于纠正或改进其模型的反馈。一旦用户对其模型满足,M模型就会继续解决它们的方程,并为用户展示正确的解决方案以与其模型进行比较。 M-Model还提供了一种工具,即个别作者可以用于准备问题模型。本文讨论了应用于工程静态课程的M模型的特征。它还讨论了如何用来鼓励学生开发精神模型解决问题解决方法。

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