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Computationally Modeling the Impact of Task-Appropriate Language Complexity and Accuracy on Human Grading of German Essays

机译:通过计算建模适合任务的语言复杂性和准确性对德国散文人类评分的影响

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Computational linguistic research on the language complexity of student writing typically involves human ratings as a gold standard. However, educational science shows that teachers find it difficult to identify and cleanly separate accuracy, different aspects of complexity, contents, and structure. In this paper, we therefore explore the use of computational linguistic methods to investigate how task-appropriate complexity and accuracy relate to the grading of overall performance, content performance, and language performance as assigned by teachers. Based on texts written by students for the official school-leaving state examination (Abitur). we show that teachers successfully assign higher language performance grades to essays with higher task-appropriate language complexity and properly separate this from content scores. Yet, accuracy impacts teacher assessment for all grading rubrics, also the content score, overemphasizing the role of accuracy. Our analysis is based on broad computational linguistic modeling of German language complexity and an innovative theory- and dala-driven feature aggregation method inferring task-appropriate language complexity.
机译:关于学生写作语言复杂性的计算语言研究通常将人类评价作为黄金标准。但是,教育科学表明,教师发现难以识别并彻底区分准确性,复杂性,内容和结构的不同方面。因此,在本文中,我们探索使用计算语言方法来研究适合任务的复杂性和准确性如何与教师指定的整体表现,内容表现和语言表现的等级相关。基于学生编写的用于正式退学考试的文本(Abitur)。我们表明,教师可以为任务适当的语言复杂性较高的论文成功地分配较高的语言成绩等级,并将其与内容分数正确分开。但是,准确性会影响教师对所有评分标准的评估,也影响内容分数,从而过分强调准确性的作用。我们的分析基于德语语言复杂性的广泛计算语言模型以及一种创新的理论和达拉驱动的特征聚合方法,该方法可推断适合任务的语言复杂性。

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