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Synapse
March 7, 20194 citationsOpen Access

Haptics-Augmented Physics Simulation: Coriolis Effect

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FHFelix G. Hamza-LupBPBenjamin I. Page

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Abstract

The teaching of abstract physics concepts can be enhanced by incorporating visual and haptic sensory modalities in the classroom, using the correct perspectives. We have developed virtual reality simulations to assist students in learning the Coriolis effect, an apparent deflection on an object in motion when observed from within a rotating frame of reference. Twenty four undergraduate physics students participated in this study. Students were able to feel the forces through feedback on a Novint Falcon device. The assessment results show an improvement in the learning experience and better content retention as compared with traditional instruction methods. We prove that large scale deployment of visuo-haptic reconfigurable applications is now possible and feasible in a science laboratory setup.

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Cite This Study

Hamza-Lup et al. (2019) studied this question.

synapsesocial.com/papers/6a0d6702cecdf5fb20ba7340https://doi.org/10.48550/arxiv.1903.11567
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Design of a three degree of freedom force-reflecting haptic interface1993 · 54 citations
  2. 2Haptics in learning to read with children from low socio‐economic status families2007 · 102 citations
  3. 3Haptic augmentation of science instruction: Does touch matter?2005 · 144 citations
  4. 4Integrating information: A meta-analysis of the spatial contiguity and temporal contiguity effects2006 · 391 citations
  5. 5The Coriolis Effect2009 · 1 citations