知识建构能促进学习者在教学中实现概念与程序性知识的双向提升。
Beyond prior knowledge: The predictive role of knowledge-building in Tutor Learning
- 通过教别人时主动解释和答疑,推动学生从单纯复述转向深度思考。
- 无论基础如何,参与知识建构的学生在概念与程序知识上均有显著提升。
- 适合教育技术、认知科学领域研究者及翻转课堂实践者阅读。
在“以教促学”环境中,学生常陷入知识传递行为,仅复述已有内容而缺乏反思,限制了学习效果。具备持续追问能力的教学代理已被证明可促使学生从知识传递转向知识建构,从而提升学习成效。学习成效包含概念性知识与程序性知识两类,二者存在双向增强关系。本研究探究知识建构在二者间中介作用。结果表明,概念与程序性知识之间存在稳定双向关系;无论前测表现如何,积极参与知识建构的学生在后测中均取得更高成绩。这说明知识建构是弥补低基础学生与高成就学生差距的关键机制。
原文摘要 · Abstract (English)
When adopting the role of a teacher in learning-by-teaching environments, students often struggle to engage in knowledge-building activities, such as providing explanations and addressing misconceptions. Instead, they frequently default to knowledge-telling behaviors, where they simply dictate what they already know or what to do without deeper reflection, thereby limiting learning. Teachable agents, particularly those capable of posing persistent follow-up questions, have been shown to encourage students (tutors) to shift from knowledge-telling to knowledge-building and enhance tutor learning. Tutor learning encompasses two interrelated types of knowledge: conceptual and procedural knowledge. Research has established a bidirectional relationship between these knowledge types, where improvements in one reinforce the other. This study investigates the role of knowledge-building in mediating the bidirectional relationship between procedural and conceptual learning. Our findings revealed a stable bidirectional relationship between procedural and conceptual knowledge, with higher post-test scores observed among students who engaged in knowledge-building, regardless of their procedural and conceptual pre-test performance. This suggests that knowledge-building serves as a crucial mechanism bridging the gap between students with low prior knowledge and higher conceptual and procedural learning gain.
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