@article{QIU2026, 
author = {Xing-Yue QIU and Xiang-Dong CHEN and Le-Yang CHU and Dai-Qing LEI},
title = {Interdisciplinary Instructional Design Supported by Large Language Model},
year = {2026},
journal = {Modern Educational Technology},
volume = {36},
number = {6},
pages = {27-35},
keywords = {large language model, interdisciplinary instructional design, gravitational potential energy, GPT-4o},
url = {https://www.sciopen.com/article/10.3969/j.issn.1009-8097.2026.06.003},
doi = {10.3969/j.issn.1009-8097.2026.06.003},
abstract = {In the practice of interdisciplinary instructional design, teachers often encounter difficulties in aligning core competencies, insufficient integration of interdisciplinary knowledge, limited activity design, and weak implementation feasibility, which restricts the educational effectiveness. In recent years, the in-depth application of large language model (LLM) in the educational field is promoting the transformation of teaching designs towards intelligent collaboration, offering new ideas to solve the above problems. Based on this, the paper summarized the four applicability of LLM in supporting interdisciplinary instructional design (namely parameterized knowledge, world model, emergent capabilities, and theory of mind) and utilized this as the functional support to construct the framework for interdisciplinary instructional design supported by LLM. Subsequently, this paper selected the thematic practice class “gravitational potential energy” in high school physics as an application case. The teacher team carried out the teaching application followed the framework's four stages of the interdisciplinary goal system establishment, interdisciplinary teaching activity design, interdisciplinary resource retrieval and construction, and interdisciplinary teaching evaluation and optimization. Through expert scoring and interview transcript analysis, this paper found out that the experts' scoring of the interdisciplinary instructional design generated by the case reached a good level, and that the application of the framework could help to implement core competencies, deepen disciplinary integration, empower comprehensive activity design, and ensure practical feasibility. The research in this paper could provide theoretical guidance and practical insights for enabling LLM to empower interdisciplinary instructional design.}
}