Improving Perception and Understanding of Nanoscale Phenomena Using Haptics and Visual Analogy
Identifieur interne : 005055 ( Main/Merge ); précédent : 005054; suivant : 005056Improving Perception and Understanding of Nanoscale Phenomena Using Haptics and Visual Analogy
Auteurs : Guillaume Millet [France] ; Anatole Lécuyer ; Jean-Marie Burkhardt ; Sinan Haliyo ; Stéphane RégnierSource :
- Lecture Notes in Computer Science [ 0302-9743 ] ; 2008.
Abstract
Abstract: This paper introduces a new pedagogical tool using haptic feedback and visual analogy, to improve perception and learning of nanoscale phenomena, for people without prior knowledge of nanophysics. This tool is a haptic and virtual-reality simulator of a foremost one-dimensional nanophysical phenomenon: the approach-retract cycle of an Atomic Force Microcope (AFM) probe, with a force-feedback device and two graphic representations. One representation is a virtual AFM cantilever and the other one is a virtual magnet-spring system, whose haptic behavior is analog. Preliminary results from an experiment conducted with forty-five students seem to show a better efficiency with the combination of both haptic feedback and visual analogy.
Url:
DOI: 10.1007/978-3-540-69057-3_107
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<front><div type="abstract" xml:lang="en">Abstract: This paper introduces a new pedagogical tool using haptic feedback and visual analogy, to improve perception and learning of nanoscale phenomena, for people without prior knowledge of nanophysics. This tool is a haptic and virtual-reality simulator of a foremost one-dimensional nanophysical phenomenon: the approach-retract cycle of an Atomic Force Microcope (AFM) probe, with a force-feedback device and two graphic representations. One representation is a virtual AFM cantilever and the other one is a virtual magnet-spring system, whose haptic behavior is analog. Preliminary results from an experiment conducted with forty-five students seem to show a better efficiency with the combination of both haptic feedback and visual analogy.</div>
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