Constructing liminal blends in a collaborative augmented-reality learning environment

Noel Enyedy, Joshua A. Danish, David DeLiema

Research output: Contribution to journalArticlepeer-review

34 Scopus citations

Abstract

In vision-based augmented-reality (AR) environments, users view the physical world through a video feed or device that augments the display with a graphical or informational overlay. Our goal in this manuscript is to ask how and why these new technologies create opportunities for learning. We suggest that AR is uniquely positioned to support learning through its ability to support students in developing “conceptual blends”—which we propose extend beyond cognitive spaces to include the layering of multiple ideas and physical materials, often supplied by different conversation participants. We document one case study and trace how the narrative structure of a board game, the physical floor materials (e.g. linoleum), a student’s first-person embodied experiences, the third-person live camera feed, and the augmented-reality symbols become integrated in the activity. As a result, students’ conceptualization of force and friction become fused with a diverse set of intellectual resources. We conclude by suggesting that the framework of liminal blends may inform the design of future AR learning environments and in particular help generate predictions about the ways in which the juxtaposition of certain resources may otherwise produce unexpected results.

Original languageEnglish (US)
Pages (from-to)7-34
Number of pages28
JournalInternational Journal of Computer-Supported Collaborative Learning
Volume10
Issue number1
DOIs
StatePublished - Mar 2015
Externally publishedYes

Bibliographical note

Publisher Copyright:
© 2015, International Society of the Learning Sciences, Inc.

Keywords

  • Augmented Reality
  • Conceptual blends
  • Elementary education
  • Physics education
  • Play
  • Video analysis

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