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Microgames for Situated Learning

Author

Listed:
  • Heide Lukosch
  • Shalini Kurapati
  • Daan Groen
  • Alexander Verbraeck

Abstract

Background . Complex, dynamic systems require flexible workforces with skills and attitudes responding to the dynamic work environment. Traditional, formal classroom-oriented learning approaches often do not sufficiently support the development of such skills and attitudes and do not provide situated learning activities. Aim and Method . We propose the concept of Microgames as an active, situated learning approach. A Microgame is a simulation game that can be played in a short time period and that starts from a specific problem in the organization defined by a problem owner. To illustrate the concept, we introduce a case study with a Microgame called Yard Crane Scheduler . Results . The study’s results indicate that the Microgame used in our study represented an engaging experiential experience. It was able to foster the awareness of the players for interdependent planning tasks. Due to its shortness, the game’s reality is somewhat limited. To compensate for this limitation, a structured debriefing phase enables players to exchange information on successful planning strategies, enhancing the learning experience by a social learning activity. Conclusions . Microgames are a novel approach towards situated, experiential learning . Its limitations, mainly caused by the constrained time for game play, have to be taken into account when defining learning goals. Despite this limitation, the Yard Crane Scheduler Microgame has been evaluated as an engaging and valid tool . Further research will investigate distinct design decisions and learning effects associated with the concept of Microgames.

Suggested Citation

  • Heide Lukosch & Shalini Kurapati & Daan Groen & Alexander Verbraeck, 2016. "Microgames for Situated Learning," Simulation & Gaming, , vol. 47(3), pages 346-367, June.
  • Handle: RePEc:sae:simgam:v:47:y:2016:i:3:p:346-367
    DOI: 10.1177/1046878116635468
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    References listed on IDEAS

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    1. Anne Carina Thelen & Sascha Daniel Herr & Frank Hees & Sabina Jeschke, 2011. "Microtraining for Workplace-Related Learning," Springer Books, in: Sabina Jeschke & Ingrid Isenhardt & Klaus Henning (ed.), Automation, Communication and Cybernetics in Science and Engineering 2009/2010, pages 347-357, Springer.
    2. Casper Harteveld & Rui Guimarães & Igor S. Mayer & Rafael Bidarra, 2010. "Balancing Play, Meaning and Reality: The Design Philosophy of LEVEE PATROLLER," Simulation & Gaming, , vol. 41(3), pages 316-340, June.
    3. Willy C. Kriz, 2003. "Creating Effective Learning Environments and Learning Organizations through Gaming Simulation Design," Simulation & Gaming, , vol. 34(4), pages 495-511, December.
    4. Geertje Bekebrede & Julia Lo & Heide Lukosch, 2015. "Understanding Complex Systems Through Mental Models and Shared Experiences," Simulation & Gaming, , vol. 46(5), pages 536-562, October.
    5. Fikret Berkes, 2007. "Understanding uncertainty and reducing vulnerability: lessons from resilience thinking," Natural Hazards: Journal of the International Society for the Prevention and Mitigation of Natural Hazards, Springer;International Society for the Prevention and Mitigation of Natural Hazards, vol. 41(2), pages 283-295, May.
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