Cooperative knowledge spaces create new potentials for the experimental fields in natural sciences and engineering because they enhance the accessibility of experimental setups through virtual laboratories and remote technology, opening them for collaborative and distributed usage. A concept for extending existing virtual knowledge spaces for the means of the technological disciplines (“ViCToR‐Spaces” ‐ Virtual Cooperation in Teaching and Research for Mathematics, Natural Sciences and Engineering) is presented. The integration of networked virtual laboratories and remote experiments (“NanoLab Approach”), as well as an approach to community‐driven content sharing and content development within virtual knowledge spaces (NanoWiki) are described.
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1 February 2007
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February 01 2007
Networked experiments and scientific resource sharing in cooperative knowledge spaces
Sabine Cikic;
Sabine Cikic
Technische Universität Berlin, MuLF‐Center, Faculty of Mathematics & Natural Sciences, 10623 Berlin, Germany
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Sabina Jeschke;
Sabina Jeschke
Technische Universität Berlin, MuLF‐Center, Faculty of Mathematics & Natural Sciences, 10623 Berlin, Germany
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Nadine Ludwig;
Nadine Ludwig
Technische Universität Berlin, MuLF‐Center, Faculty of Mathematics & Natural Sciences, 10623 Berlin, Germany
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Uwe Sinha;
Uwe Sinha
Technische Universität Berlin, MuLF‐Center, Faculty of Mathematics & Natural Sciences, 10623 Berlin, Germany
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Christian Thomsen
Christian Thomsen
Technische Universität Berlin, MuLF‐Center, Faculty of Mathematics & Natural Sciences, 10623 Berlin, Germany
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Publisher: Emerald Publishing
Online ISSN: 1758-8510
Print ISSN: 1741-5659
© Emerald Group Publishing Limited
2007
Interactive Technology and Smart Education (2007) 4 (1): 19–30.
Citation
Cikic S, Jeschke S, Ludwig N, Sinha U, Thomsen C (2007), "Networked experiments and scientific resource sharing in cooperative knowledge spaces". Interactive Technology and Smart Education, Vol. 4 No. 1 pp. 19–30, doi: https://doi.org/10.1108/17415650780000074
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