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Automatic Generation of Problems and Explanations for an Intelligent Algebra Tutor

机译:自动生成智能代数导师的问题和解释

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Intelligent tutors that emulate one-on-one tutoring with a human have been shown to effectively support student learning, but these systems are often challenging to build. Most methods for implementing tutors focus on generating intelligent explanations, rather than generating practice problems and problem progressions. In this work, we explore the possibility of using a single model of a learning domain to support the generation of both practice problems and intelligent explanations. In the domain of algebra, we show how problem generation can be supported by modeling if-then production rules in the logic programming language answer set programming. We also show how this model can be authored such that explanations can be generated directly from the rules, facilitating both worked examples and real-time feedback during independent problem-solving. We evaluate this approach through a proof-of-concept implementation and two formative user studies, showing that our generated content is of appropriate quality. We believe this approach to modeling learning domains has many exciting advantages.
机译:事实证明,与人进行一对一补习的智能补习可以有效地支持学生的学习,但是这些系统的构建通常具有挑战性。实施导师的大多数方法侧重于生成智能的解释,而不是生成练习题和问题进度。在这项工作中,我们探索使用学习领域的单个模型来支持实践问题和智能解释的可能性。在代数领域,我们展示了如何通过在逻辑编程语言答案集编程中对if-then生产规则进行建模来支持问题生成。我们还展示了如何创建该模型,以便可以直接从规则中生成解释,从而在独立解决问题的过程中为工作示例和实时反馈提供了便利。我们通过概念验证的实施方式和两次形成性的用户研究来评估这种方法,表明我们生成的内容质量适当。我们相信这种对学习领域进行建模的方法具有许多令人兴奋的优势。

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