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March 3, 2026McGill Journal of Education / Revue des sciences de l éducation de McGill0 citationsOpen Access

Addressing pre-service teachers’ mathematical reasoning through reverse engineering

DKDaniel R. KrauseUniversity of Saskatchewan

Key Points

  • Mathematical reasoning improved as pre-service teachers reverse engineered their scores in an iterative game.
  • Teachers generated similar conjectures based on their scores as they figured out the hidden rules behind the game.
  • Observational analysis across workshops demonstrated the effectiveness of reverse engineering in teaching strategies.
  • This pedagogical approach highlights the potential for enhancing mathematical reasoning that can be passed on to students.

Abstract

In this Note from the Field, I show how undergraduate pre-service teachers exercised mathematical reasoning when they were required to find the rules determining their score in successive rounds of an iterative game. The rules were hidden from them, and therefore they needed to use mathematical reasoning to reverse engineer the rules based on their scores. The teachers generated similar conjectures as they worked to decipher the rules, even as, with each iteration of the game, pre-service teachers learned the rules to maximize their scores. Reverse engineering, as a pedagogical strategy, would seem to offer a promising avenue for teaching mathematical reasoning in teachers — who can then teach their students.

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Cite This Study

Daniel R. Krause (2025) studied this question.

synapsesocial.com/papers/69a75f84c6e9836116a2af09https://doi.org/10.26443/mje/rsem.v59i3.10484
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