Search (75 results, page 4 of 4)

  • × theme_ss:"Visualisierung"
  1. Wild, F.: Visuelle Verfahren im Information Retrieval (2005) 0.00
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    Source
    Information - Wissenschaft und Praxis. 56(2005) H.1, S.29-34
  2. Kösel, S.; Rieth, D.: ¬Die betriebliche Wissenskommunikation durch Visualisierungstools beleben (2006) 0.00
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    Source
    Information - Wissenschaft und Praxis. 57(2006) H.5, S.249-254
  3. Su, H.-N.: Visualization of global science and technology policy research structure (2012) 0.00
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  4. Graphic details : a scientific study of the importance of diagrams to science (2016) 0.00
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    Content
    As the team describe in a paper posted (http://arxiv.org/abs/1605.04951) on arXiv, they found that figures did indeed matter-but not all in the same way. An average paper in PubMed Central has about one diagram for every three pages and gets 1.67 citations. Papers with more diagrams per page and, to a lesser extent, plots per page tended to be more influential (on average, a paper accrued two more citations for every extra diagram per page, and one more for every extra plot per page). By contrast, including photographs and equations seemed to decrease the chances of a paper being cited by others. That agrees with a study from 2012, whose authors counted (by hand) the number of mathematical expressions in over 600 biology papers and found that each additional equation per page reduced the number of citations a paper received by 22%. This does not mean that researchers should rush to include more diagrams in their next paper. Dr Howe has not shown what is behind the effect, which may merely be one of correlation, rather than causation. It could, for example, be that papers with lots of diagrams tend to be those that illustrate new concepts, and thus start a whole new field of inquiry. Such papers will certainly be cited a lot. On the other hand, the presence of equations really might reduce citations. Biologists (as are most of those who write and read the papers in PubMed Central) are notoriously mathsaverse. If that is the case, looking in a physics archive would probably produce a different result.
  5. Frederichs, A.: Natürlichsprachige Abfrage und 3-D-Visualisierung von Wissenszusammenhängen (2007) 0.00
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    Source
    Wa(h)re Information: 29. Österreichischer Bibliothekartag Bregenz, 19.-23.9.2006. Hrsg.: Harald Weigel
  6. Cao, N.; Sun, J.; Lin, Y.-R.; Gotz, D.; Liu, S.; Qu, H.: FacetAtlas : Multifaceted visualization for rich text corpora (2010) 0.00
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  7. Brantl, M.; Ceynowa, K.; Meiers, T.; Wolf, T.: Visuelle Suche in historischen Werken (2017) 0.00
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    Source
    Datenbank Spektrum. 17(2017) H.1, S.53-60
  8. Neubauer, G.: Visualization of typed links in linked data (2017) 0.00
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    Source
    Mitteilungen der Vereinigung Österreichischer Bibliothekarinnen und Bibliothekare. 70(2017) H.2, S.179-199
  9. Stadtbibliothek Reutlingen: Web-Auftritt komplett mit Web-Opac Premium von BOND realisiert (2005) 0.00
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    Source
    BuB. 57(2005) H.4, S.271
  10. Petersen, A.; Münch, V.: STN® AnaVist(TM) holt verborgenes Wissen aus Recherche-Ergebnissen : Neue Software analysiert und visualisiert Marktaufteilung, Forschung und Patentaktivitäten (2005) 0.00
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    Source
    Information - Wissenschaft und Praxis. 56(2005) H.5/6, S.319-322
  11. Bond: ¬Der grafische Assoziativ-OPAC AquaBrowser Library (2007) 0.00
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    Source
    Bibliotheksdienst. 41(2007) H.11, S.1199-1200
  12. Wainer, H.: Picturing the uncertain world : how to understand, communicate, and control uncertainty through graphical display (2009) 0.00
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  13. Information visualization in data mining and knowledge discovery (2002) 0.00
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    Date
    23. 3.2008 19:10:22
  14. Zhu, B.; Chen, H.: Information visualization (2004) 0.00
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  15. Zhang, J.; Mostafa, J.; Tripathy, H.: Information retrieval by semantic analysis and visualization of the concept space of D-Lib® magazine (2002) 0.00
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