Outline

Ingegneria Sismica

Ingegneria Sismica

Mapping the Computable Boundaries of Instructional Activities in Digitalized Education: A Hybrid Human-AI Framework

Author(s): Jiayi Li1
1Academy for Applied Policy Studies and Education Futures, the Education University of Hong Kong. 999077, Hong Kong, China
Li, Jiayi. “Mapping the Computable Boundaries of Instructional Activities in Digitalized Education: A Hybrid Human-AI Framework.” Ingegneria Sismica Volume 43 Issue 2: 1-19, doi:10.65102/is2026873.

Abstract

Digitization of education can be used to record and process teaching activities continuously in platform logs, learning analyses, and generative models, but there is still a lack of specific thresholds that determine whether a teaching activity is suitable for computation or whether it needs teacher leadership. The 312 identified teaching activities in this paper are divided into activity units; six dimensions of data observability, rule dominance, feedback immediacy, situational complexity, relationship sensitivity and ethical creation load are constructed, and a computable index and hybrid human-machine judgment framework are proposed. Based on the above results, content presentation and task practice fall within the fully computable range; formative evaluation is mostly auxiliary computable; collaborative learning is relatively conditional computable; and activities such as social-emotional support and ethical creation have shown obvious signs of being human-dominated. The weighted F1 of the hybrid framework for boundary recognition was 0.845, an increase of 10.0 percentage points over the regular baseline, and the residual risk dropped to 2.9%. The above research has offered an empirical basis for determining the limits of teaching activities and the integration model for teachers’ assessments, risk thresholds, and control transfers. The two basic ideas of this system are limited automation and auditable control; thus, it is difficult to determine precisely where and when these two factors will be affected.

 

Keywords
Digitalization of education; Teaching activities; Computable boundary; Hybrid human-machine framework; Teaching responsibility

Related Articles

Qianwen Xiong1, Yuhong Chen1
1Guangzhou University of Chinese Medicine, School of Pharmaceutical Medicine, Guangzhou,Guangdong,China,510006
Zhihao Jiang1,2, Limi Chen1,2, Jing Yang1
1Hainan Vocational University of Science and Technology, Haikou 571126, China
2Institute for Mathematical Research, Universiti Putra Malaysia, Serdang 43400, Malaysia
Limi Chen1,2, Zhihao Jiang1,2, Jing Yang1
1Hainan Vocational University of Science and Technology, Haikou 571126, China
2Institute for Mathematical Research, Universiti Putra Malaysia, Serdang 43400, Malaysia
Hui Yuan1, Minjie Chai2, Siqing Xu1, Jinsong Li1, Jinwan Zheng1
1Electric Power Research Institute, State Grid Shanxi Electric Power Co., Ltd., Taiyuan, 030001, Shanxi, China
2Jincheng Power Supply Branch, State Grid Shanxi Electric Power Co., Ltd., Jincheng, 048000, Shanxi, China
Yanhan Zhu1,2
1China Academy of Cultural Heritage, Chaoyang District, 100029, Beijing, China
2Beijing University of Civil Engineering and Architecture, Xicheng District, 100044, Beijing, China