Hands-on Experiment Supported by Augmented Reality Smartglasses for Learning the Lorentz Force

Fuente: arXiv
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Bibliographic Details
Main Authors: Warkentin, Max, Altmeyer, Kristin, Liang, Yajie, Steinmacher, Bermann, Gränz, Barbara, Lichtenberger, Andreas, Küchemann, Stefan, Kuhn, Jochen, Hoyer, Christoph
Format: Preprint
Published: 2025
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author Warkentin, Max
Altmeyer, Kristin
Liang, Yajie
Steinmacher, Bermann
Gränz, Barbara
Lichtenberger, Andreas
Küchemann, Stefan
Kuhn, Jochen
Hoyer, Christoph
author_facet Warkentin, Max
Altmeyer, Kristin
Liang, Yajie
Steinmacher, Bermann
Gränz, Barbara
Lichtenberger, Andreas
Küchemann, Stefan
Kuhn, Jochen
Hoyer, Christoph
contents Previous research has shown that inquiry-based learning through hands-on experiments, as well as learning with multiple, external representations (MERs) can promote the understanding of complex phenomena in physics. In this context, augmented reality (AR) smartglasses make it possible to superimpose real experiments with virtually presented information while maintaining learners' freedom to interact with the experimental setup. This allows spatial and temporal contiguity to be established between the phenomenon and the supporting virtual visualizations which can help to reduce learners' cognitive load and to free up cognitive resources for learning. We introduce an AR learning environment for the investigation of the Lorentz force. By visualizing the fields relevant to the experiment in AR, a more direct investigation of the physical phenomenon can be achieved for the learner. Additionally, this setup can foster the acquisition of representational skills by providing the possibility to superimpose fields using various representations. This learning setting will be used in future studies to investigate how MERs should be combined in a guided inquiry-based learning environment to best promote learners' conceptual knowledge and representational skills. We present the system and report usability data that were collected from a sample of 188 secondary school students. The average score was 80.18 (SD: 12.06) which signals an excellent usability of the AR learning environment.
format Preprint
id arxiv_https___arxiv_org_abs_2502_06421
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Hands-on Experiment Supported by Augmented Reality Smartglasses for Learning the Lorentz Force
Warkentin, Max
Altmeyer, Kristin
Liang, Yajie
Steinmacher, Bermann
Gränz, Barbara
Lichtenberger, Andreas
Küchemann, Stefan
Kuhn, Jochen
Hoyer, Christoph
Physics Education
Previous research has shown that inquiry-based learning through hands-on experiments, as well as learning with multiple, external representations (MERs) can promote the understanding of complex phenomena in physics. In this context, augmented reality (AR) smartglasses make it possible to superimpose real experiments with virtually presented information while maintaining learners' freedom to interact with the experimental setup. This allows spatial and temporal contiguity to be established between the phenomenon and the supporting virtual visualizations which can help to reduce learners' cognitive load and to free up cognitive resources for learning. We introduce an AR learning environment for the investigation of the Lorentz force. By visualizing the fields relevant to the experiment in AR, a more direct investigation of the physical phenomenon can be achieved for the learner. Additionally, this setup can foster the acquisition of representational skills by providing the possibility to superimpose fields using various representations. This learning setting will be used in future studies to investigate how MERs should be combined in a guided inquiry-based learning environment to best promote learners' conceptual knowledge and representational skills. We present the system and report usability data that were collected from a sample of 188 secondary school students. The average score was 80.18 (SD: 12.06) which signals an excellent usability of the AR learning environment.
title Hands-on Experiment Supported by Augmented Reality Smartglasses for Learning the Lorentz Force
topic Physics Education
url https://arxiv.org/abs/2502.06421