Title :
An Augmented Reality Nanomanipulator for Learning Nanophysics: The NanoLearner Platform
Author :
Marliere, S. ; Marchi, F. ; Florens, J.L. ; Luciani, A. ; Chevrier, J.
Author_Institution :
ICA-ACROE, Grenoble
Abstract :
The work presented in this paper focuses on the description and evaluation of an augmented reality nanomanipulator, called "nanoLearner platform" used as educational tool in practical works of nanophysics. Through virtual reality associated to multisensory renderings, students are immersed in the nanoworld where they can interact in real time with a sample surface or an object, using their senses as hearing, seeing and touching. The role of each sensorial rendering in the understanding and control of the "approach-retract" interaction has been determined thanks to statistical studies obtained during practicals. Conjointly, qualitative analyses of student reports revealed the NanoLearner platform efficiency, compared to the use of classical tools. Finally, we present extension of the use of this innovative tool for investigating nano effects in living organisms and for allowing grand public to have access to a natural understanding of nanophenomena.
Keywords :
augmented reality; computer aided instruction; micromanipulators; nanotechnology; physics computing; physics education; rendering (computer graphics); augmented reality nanomanipulator; educational tool; multisensory renderings; nanolearner platform; nanophysics; sensorial rendering; Atomic force microscopy; Auditory system; Augmented reality; Education; Haptic interfaces; Nanoscale devices; Organisms; Physics; Surface topography; Virtual reality; Augmented Reality; Nanophysics; Virtual Reality;
Conference_Titel :
Cyberworlds, 2008 International Conference on
Conference_Location :
Hangzhou
Print_ISBN :
978-0-7695-3381-0