English

Practice Less, Explain More: LLM-Supported Self-Explanation Improves Explanation Quality on Transfer Problems in Calculus

Human-Computer Interaction 2026-04-02 v1

Abstract

We conducted a between-subjects experiment (N=92) comparing three conditions in a calculus learning environment: no self-explanation (control), menu-based self-explanation, and open-ended self-explanation with LLM-generated feedback. All conditions showed positive learning gains within a fixed 60-minute practice session, with no significant between-condition differences in post-test performance. On transfer questions, the open-ended condition produced significantly higher-quality explanations than control on "Not Enough Information" (NEI) problems (β\beta=+11.9 percentage points, pp=.030), though the corresponding NEI multiple-choice accuracy advantage was not significant (pp=.183). Moreover, across all post-test open-ended explanations, the open-ended condition showed a marginally significant advantage (β\beta=+7.3%, pp=.057). These findings suggest that LLM-supported open-ended self-explanation can improve explanation quality on NEI transfer problems, with weaker evidence across broader transfer explanation measures. Notably, these effects emerged even though learners in the open-ended condition completed substantially fewer practice problems within the same practice time.

Keywords

Cite

@article{arxiv.2604.00142,
  title  = {Practice Less, Explain More: LLM-Supported Self-Explanation Improves Explanation Quality on Transfer Problems in Calculus},
  author = {Eason Chen and Xinyi Tang and Yvonne Zhao and Meiyi Chen and Meryam Elmir and Elizabeth McLaughlin and Mingyu Yuan and Yumo Wang and Shyam Agarwal and Jared Cochrane and Jionghao Lin and Tongshuang Wu and Ken Koedinger},
  journal= {arXiv preprint arXiv:2604.00142},
  year   = {2026}
}

Comments

9 pages, 2 figures. Accepted at AIED 2026. Camera-ready version with updated references

R2 v1 2026-07-01T11:47:04.524Z