Related Experiment Video
Updated: Feb 24, 2026

Author Spotlight: A Novel Setup to Conduct Naturalistic Laboratory Experiments with Real Human Actors in Scenarios
Published on: August 4, 2023
Recombinant Enaction: Manipulatives Generate New Procedures in the Imagination, by Extending and Recombining Action
Jeenath Rahaman1, Harshit Agrawal1, Nisheeth Srivastava2
1Homi Bhabha Centre for Science Education, Tata Institute of Fundamental Research.
Abstract:
Manipulation of physical models such as tangrams and tiles is a popular approach to teaching early mathematics concepts. This pedagogical approach is extended by new computational media, where mathematical entities such as equations and vectors can be virtually manipulated. The cognitive and neural mechanisms supporting such manipulation-based learning-particularly how actions generate new internal structures that support problem-solving-are not understood. We develop a model of the way manipulations generate internal traces embedding actions, and how these action-traces recombine during problem-solving. This model is based on a study of two groups of sixth-grade students solving area problems. Before problem-solving, one group manipulated a tangram, the other group answered a descriptive test. Eye-movement trajectories during problem-solving were different between the groups. A second study showed that this difference required the tangram's geometrical structure, just manipulation was not enough. We propose a theoretical model accounting for these results, and discuss its implications.
More Related Videos
Related Concept Videos
Combining Functions
Principle of Virtual Work: Problem Solving
To apply the principle of virtual work,...
Method of Joints: Problem Solving II
Friction: Problem Solving
Initially, a visual representation of the...
Conservative Site-specific Recombination and Phase Variation
The recognition sites for Cre recombinase called LoxP...
Fixed Action Patterns

