Proceedings of the ACM on Human-Computer Interaction· 2026Q2
Balancing Teacher and Student Agency: Co-Orchestration Tool Design Supporting Real-Time Dynamic Pairing
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- Q2SCImago
- 2026year
Short summary
A new co-orchestration tool design balances teacher and student agency in real-time dynamic pairing for educational settings, enabling flexible transitions between individual and collaborative learning.
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Key points
- The study addresses the unexplored challenge of balancing teacher and student agency in dynamic educational pairing tools.
- A mixed-method approach, including participatory speed dating, was used to investigate control distribution in pairing processes.
- The research focuses on three stages: before, during, and after student pairing for learning activities.
- Design recommendations emphasize structured teacher guidance initially, shifting towards greater student autonomy over time.
AI-generated from the title and abstract; the full text is not read.
Abstract
In human-AI interaction, respecting user agency is essential for fostering trust and sustaining effective use of technology. In educational settings, dynamically integrating individual and collaborative learning offers pedagogical value by supporting personalized, self-paced learning experiences. Prior research has demonstrated the feasibility of this approach through intelligent tutoring systems and human–AI co-orchestration tools. However, how to balance teacher and student control in this process remains largely unexplored. This work explores the design space of how control can be distributed between teachers and students across the orchestration process, using participatory speed dating and a mixed-method analysis. We focus on three stages of the pairing process: before, during, and after, taking context in designing classroom orchestration tools that support teachers in dynamically coordinating student transitions between individual practice and collaborative problem-solving. It contributes empirical insights to the fields of educational technology and HCI by framing these findings within a theoretical design space, emphasizing the balance of multi-stakeholder agency and control. We propose design recommendations for achieving hybrid-control in analytic-based orchestration tools in pairing contexts. We recommend ensuring structured teacher guidance in the beginning, while progressively increasing student autonomy over time as activities unfold.
The authors' abstract, as published at the source. Proceedings of the ACM on Human-Computer Interaction, 2026 · DOI ↗
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Field: Developmental and Educational Psychology
Developmental and Educational PsychologyPsychology