Enhancing deep learning in AI-enhanced education: a dual mediation model of cognitive load and learning motivation through interaction quality
Li Dong

TL;DR
This study shows how high-quality AI interactions in education reduce mental strain and boost motivation, leading to deeper learning.
Contribution
The paper introduces a dual mediation model linking interaction quality to deep learning via cognitive load and motivation.
Findings
High-quality AI interactions reduce cognitive load, which enhances learning motivation.
The mediation model explains 31.5% of the variance in deep learning outcomes.
Bootstrap analysis confirms strong sequential mediation effects accounting for 53% of total variance.
Abstract
This research develops and validates a dual mediation framework examining the pathways through which interaction quality in artificial intelligence educational systems is positively associated with deep learning outcomes via cognitive load reduction and motivational enhancement. Utilizing covariance-based structural equation modeling (CB-SEM), we analyzed survey data from 570 university teachers engaged with AI-powered learning platforms. Findings demonstrate that high-quality human-AI interaction significantly reduces cognitive burden, which in turn is positively related to learning motivation and shows pathways to deep learning approaches. Bootstrap procedures confirmed robust sequential mediation effects, with this pathway accounting for 53% of the total variance. The model achieved excellent fit indices and explained 31.5% of variance in deep learning outcomes. By synthesizing…
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Taxonomy
TopicsIntelligent Tutoring Systems and Adaptive Learning · Educational Games and Gamification · Motivation and Self-Concept in Sports
