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Autor/inn/enAltmeyer, Kristin; Kapp, Sebastian; Thees, Michael; Malone, Sarah; Kuhn, Jochen; Brünken, Roland
TitelThe Use of Augmented Reality to Foster Conceptual Knowledge Acquisition in STEM Laboratory Courses--Theoretical Background and Empirical Results
QuelleIn: British Journal of Educational Technology, 51 (2020) 3, S.611-628 (18 Seiten)Infoseite zur Zeitschrift
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ZusatzinformationORCID (Malone, Sarah)
Spracheenglisch
Dokumenttypgedruckt; online; Zeitschriftenaufsatz
ISSN0007-1013
DOI10.1111/bjet.12900
SchlagwörterConcept Formation; Scientific Concepts; Pretests Posttests; Teaching Methods; Computer Simulation; Physics; Hands on Science; Laboratory Experiments; Proximity; Multimedia Instruction; Handheld Devices; Cognitive Ability; Comparative Analysis; College Students; Electronics; Learning Processes
AbstractLearning with hands-on experiments can be supported by providing essential information virtually during lab work. Augmented reality (AR) appears especially suitable for presenting information during experimentation, as it can be used to integrate both physical and virtual lab work. Virtual information can be displayed in close spatial proximity to the correspondent components in the experimentation environment, thereby ensuring a basic design principle for multimedia instruction: the spatial contiguity principle. The latter is assumed to reduce learners' extraneous cognitive load and foster generative processing, which supports conceptual knowledge acquisition. For the present study, a tablet-based AR application has been developed to support learning from hands-on experiments in physics education. Real-time measurement data were displayed directly above the components of electric circuits, which were constructed by the learners during lab work. In a two group pretest-posttest design, we compared university students' (N = 50) perceived cognitive load and conceptual knowledge gain for both the AR-supported and a matching non-AR learning environment. Whereas participants in both conditions gave comparable ratings for cognitive load, learning gains in conceptual knowledge were only detectable for the AR-supported lab work. (As Provided).
AnmerkungenWiley-Blackwell. 350 Main Street, Malden, MA 02148. Tel: 800-835-6770; Tel: 781-388-8598; Fax: 781-388-8232; e-mail: cs-journals@wiley.com; Web site: http://www.wiley.com/WileyCDA
Erfasst vonERIC (Education Resources Information Center), Washington, DC
Update2024/1/01
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