对解决学校力学任务所用公式和方法复杂性的评估

R. Mayer
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摘要

本文探讨了如何估算在解决学校力学任务时所使用的公式和方法的复杂程度。对标准学校教科书和任务书进行了内容分析,写出了所有力学公式,并确定了 9 个主题,每个主题都对应各自的任务求解方法。为了评估语义的复杂性,对公式进行了语言编码,并将其存入文本文件 Formuli.txt 中。表示物理量的概念的复杂性单独进行评估;其列表放在文件 Slovar.txt 中。在特殊计算机程序的帮助下,公式(或其相应的理论命题)的语义复杂度得以确定,并计算出每个公式的信息折叠系数。其中,公式定义与表达功能依赖关系的公式之间的差异也被考虑在内。分析了公式和方法在其特征空间中的分布情况。这样就有可能找出解决力学任务最复杂的公式和方法。此外,还考虑了每种方法中的公式数量,估算了公式选择的不确定性以及在独立解决单一公式任务时选择的相应复杂性。此外,还说明了在解决双公式和三公式任务时如何考虑公式选择的不确定性。
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Evaluation of the Complexity of Formulas and Methods Used in Solving School Tasks on Mechanics
The problem of estimating the complexity of formulas and methods used in solving school tasks in mechanics is considered. A content analysis of standard school textbooks and tasks books was car-ried out, all formulas on mechanics were written out and 9 topics were identified, each of which corresponds to its own method of solving tasks. To assess the semantic complexity, the formulas were encoded with a verbal code and presented in a text file Formuli.txt . The complexity of the concepts denoting physical quantities is evaluated separately; their list is placed in a file Slovar.txt. With the help of a special computer program, the semantic complexities of formulas (or their corresponding theoretical propositions) are determined, and the coefficient of information folding is calculated for each ones. At that the difference between formulas-definitions and formulas expressing functional dependencies was taken into account. The distributions of formulas and methods in the space of their characteristic features are analyzed. This made it possible to identify the most com-plex formulas and methods for solving tasks in mechanics. The number of formulas in each method is also taken into account, the choice uncertainty of formulas and the corresponding complexity of the choice in the independent solution of a single-formula task are estimated. It is shown how the choice uncertainty of formulas can be taken into account when solving two- and three-formula tasks.
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