面向图形化建模的胜任力模型

IF 3.2 3区 工程技术 Q1 EDUCATION, SCIENTIFIC DISCIPLINES
Chantal Soyka, Niclas Schaper, Elena Bender, Michael Striewe, Meike Ullrich
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引用次数: 0

摘要

建模是许多计算相关学科的重要组成部分,因此也是高等教育中计算教育课程的核心组成部分。在这些学科中,至少在某种程度上集成了建模的能力模型已经存在。然而,对于图形化建模的核心组件,还缺乏一个详细说明相关能力的胜任力模型。因此,我们开发了一个胜任力模型,用于图形化建模,目的是使该领域的教学,特别是评估更加以胜任力为导向。本文报告了为开发和验证胜任力模型的图形化建模而进行的前两项研究。第一部分以教育科学的理论和方法为基础,构建胜任力模型的结构。与图形建模相关的能力是通过使用定性内容分析技术从文献和现有大学课程描述中演绎出来的。第一个研究的结果是一个初步的胜任力模型。在第二项研究中,采用建模界专家评分的方法对初步的胜任力模型进行了评价。根据这些发现和随后的专家讨论,对胜任力模型进行了修订和完善。调查的主要结果代表了图形化建模的胜任力模型,该模型包括“模型理解和解释”、“模型构建和修改”、“价值观、态度和信念”、“元认知知识和技能”和“社会交际技能”五个内容领域中不同认知过程水平的74个胜任力层面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Toward a Competence Model for Graphical Modeling

Modeling is an integral part of many computing-related disciplines and thus also represents a curricular core component in computing education in tertiary education. Competence models in which modeling is integrated at least to some extent already exist in some of these disciplines. However, for the core component of graphical modeling, a competence model that illuminates the relevant competences in detail is still lacking. Therefore, we develop a competence model for graphical modeling with the aim to make teaching and especially assessments in the field more competence-oriented. This article reports on the first two studies conducted to develop and validate the competence model for graphical modeling. In the first study, the structure of the competence model was developed based on theories and approaches of educational science. Competences relevant for graphical modeling were deductively derived from literature and existing university course descriptions using techniques of qualitative content analysis. The result of the first study is a preliminary competence model. In the second study, the preliminary competence model was reviewed by means of an expert rating in the modeling community. The competence model was revised and refined based on these findings and subsequent expert discussions. The main result of the investigation represents the competence model for graphical modeling, which includes a total of 74 competence facets at different cognitive process levels in the five content areas of “model understanding and interpreting,” “model building and modifying,” “values, attitudes, and beliefs,” “metacognitive knowledge and skills,” and “social-communicative skills.”

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来源期刊
ACM Transactions on Computing Education
ACM Transactions on Computing Education EDUCATION, SCIENTIFIC DISCIPLINES-
CiteScore
6.50
自引率
16.70%
发文量
66
期刊介绍: ACM Transactions on Computing Education (TOCE) (formerly named JERIC, Journal on Educational Resources in Computing) covers diverse aspects of computing education: traditional computer science, computer engineering, information technology, and informatics; emerging aspects of computing; and applications of computing to other disciplines. The common characteristics shared by these papers are a scholarly approach to teaching and learning, a broad appeal to educational practitioners, and a clear connection to student learning.
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