An effective metacognitive strategy: learning by doing and explaining with a computer‐based Cognitive Tutor

Эффективная метакогнитивная стратегия: обучение посредством выполнения заданий и объяснения с помощью компьютерного когнитивного тьютора
Vincent Aleven, Kenneth R. Koedinger
2002-03-01

Cognitive Tutorcomputer-based learningmetacognitive strategyself-explanationtransfer problems
Abstract Recent studies have shown that self‐explanation is an effective metacognitive strategy, but how can it be leveraged to improve students' learning in actual classrooms? How do instructional treatments that emphasizes self‐explanation affect students' learning, as compared to other instructional treatments? We investigated whether self‐explanation can be scaffolded effectively in a classroom environment using a Cognitive Tutor, which is intelligent instructional software that supports guided learning by doing. In two classroom experiments, we found that students who explained their steps during problem‐solving practice with a Cognitive Tutor learned with greater understanding compared to students who did not explain steps. The explainers better explained their solutions steps and were more successful on transfer problems. We interpret these results as follows: By engaging in explanation, students acquired better‐integrated visual and verbal declarative knowledge and acquired less shallow procedural knowledge. The research demonstrates that the benefits of self‐explanation can be achieved in a relatively simple computer‐based approach that scales well for classroom use.
1
A relatively simple computer-based Cognitive Tutor approach successfully scaffolded self-explanation and offers scalability for classroom use.
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Explanation promoted better-integrated visual and verbal declarative knowledge while reducing reliance on shallow procedural knowledge.
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Self-explanation training increased success on transfer problems, indicating improved ability to apply learned knowledge beyond practice tasks.
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Students who explained their steps produced better solution-step explanations than students who practiced without explaining.
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Two classroom experiments showed that prompting students to explain problem-solving steps in a Cognitive Tutor improved learning with greater understanding.

students' problem-solving learning with a computer-based Cognitive Tutor in classroom environments

the effects of scaffolded self-explanation during problem-solving practice on students' conceptual understanding, knowledge integration, procedural knowledge, and transfer performance

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2002-03-01
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Vincent Aleven
Kenneth R. Koedinger
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