Evaluating Alternative Training Interventions Using Personalized Computational Models of Learning
MacLellan, Christopher James, Stowers, Kimberly, Brady, Lisa
–arXiv.org Artificial Intelligence
Evaluating different training interventions to determine which produce the best learning outcomes is one of the main challenges faced by instructional designers. Typically, these designers use A/B experiments to evaluate each intervention; however, it is costly and time consuming to run such studies. To address this issue, we explore how computational models of learning might support designers in reasoning causally about alternative interventions within a fractions tutor. We present an approach for automatically tuning models to specific individuals and show that personalized models make better predictions of students' behavior than generic ones. Next, we conduct simulations to generate counterfactual predictions of performance and learning for two students (high and low performing) in different versions of the fractions tutor. Our approach makes predictions that align with previous human findings, as well as testable predictions that might be evaluated with future human experiments.
arXiv.org Artificial Intelligence
Aug-24-2024
- Country:
- North America
- United States
- New York (0.04)
- Alabama (0.04)
- Pennsylvania > Allegheny County
- Pittsburgh (0.04)
- North Carolina > Wake County
- Raleigh (0.04)
- Louisiana > Tangipahoa Parish
- Hammond (0.04)
- Georgia > Fulton County
- Atlanta (0.04)
- Florida > Palm Beach County
- Boca Raton (0.04)
- California > San Bernardino County
- Ontario (0.04)
- Canada
- Quebec > Montreal (0.04)
- Ontario > Essex County
- Windsor (0.04)
- United States
- Europe
- North America
- Genre:
- Research Report
- New Finding (1.00)
- Experimental Study (0.68)
- Research Report
- Industry: