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  1. Voss, J.: LibraryThing : Web 2.0 für Literaturfreunde und Bibliotheken (2007) 0.01
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    Date
    22. 9.2007 10:36:23
    Source
    Mitteilungsblatt der Bibliotheken in Niedersachsen und Sachsen-Anhalt. 2007, H.137, S.12-13
  2. Faaborg, A.; Lagoze, C.: Semantic browsing (2003) 0.01
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    Source
    Research and advanced technology for digital libraries : 7th European Conference, proceedings / ECDL 2003, Trondheim, Norway, August 17-22, 2003
  3. Schneider, R.: Web 3.0 ante portas? : Integration von Social Web und Semantic Web (2008) 0.01
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    Date
    22. 1.2011 10:38:28
  4. Blumauer, A.; Pellegrini, T.: Semantic Web Revisited : Eine kurze Einführung in das Social Semantic Web (2009) 0.01
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    Pages
    S.3-22
  5. Trkulja, V.: Suche ist überall, Semantic Web setzt sich durch, Renaissance der Taxonomien (2005) 0.01
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    Source
    Password. 2005, H.1, S.23
  6. Berners-Lee, T.: ¬Das Web ist noch nicht vollendet (2000) 0.01
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    Source
    Internet World. 2000, H.1, S.54-56
  7. Ziegler, C.: Smartes Chaos : Web 2.0 versus Semantic Web (2006) 0.01
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    Source
    iX. 2006, H.11, S.54-59
  8. Hauser, T.: Gemeinsame Sprache : Semantic Web (2003) 0.01
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    Source
    Internet Professionell. 2003, H.11, S.88-89
  9. Danowski, P.; Goldfarb, D.; Schaffner, V.; Seidler, W.: Linked (Open) Data - Bibliographische Daten im Semantic Web : Bericht der AG Linked Data an die Verbundvollversammlung (16. Mai 2013) (2013) 0.01
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    Source
    Mitteilungen der Vereinigung Österreichischer Bibliothekarinnen und Bibliothekare. 66(2013) H.3/4, S.559-587
  10. Münch, V.: Bald soll das Web vernünftig antworten können (2002) 0.01
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    Source
    Information - Wissenschaft und Praxis. 53(2002) H.5, S.299-300
  11. Berners-Lee, T.; Hendler, J.; Lassila, O.: Mein Computer versteht mich (2001) 0.01
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    Source
    Spektrum der Wissenschaft. 2001, H.8, S.42-49
  12. May, W.: Reasoning im und für das Semantic Web (2006) 0.01
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    Abstract
    Dieses Kapitel gibt zuerst einen kurzen historischen Überblick über "Reasoning", d. h. Schließen, Wissensrepräsentation und "künstliche Intelligenz". Der Hauptteil geht auf einige "Reasoning"-Mechanismen und -Konzepte, die im Semantic Web eine Rolle spielen, ein und zeigt, wie dieses "Reasoning" - unauffällig - in den Konzepten des Semantic Web zur Beschreibung von Wissensbasen enthalten ist. Weiterhin werden Reasoning-Mechanismen umrissen, die dem Zusammenspiel verschiedener Knoten im Semantic Web dienen, und ein kurzes Fazit gezogen.
  13. Baumer, C.; Reichenberger, K.: Business Semantics - Praxis und Perspektiven (2006) 0.01
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    Source
    Information - Wissenschaft und Praxis. 57(2006) H.6/7, S.359-366
  14. Pellegrini, T.: Was ist das Semantic Web? (2006) 0.00
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    Source
    Online Mitteilungen. 2006, Nr.87, S.5-8 [=Mitteilungen VÖB 59(2006) H.3]
  15. Köstlbacher, A.; Maurus, J.: Semantische Wikis für das Wissensmanagement : Reif für den praktischen Einsatz? (2009) 0.00
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    Source
    Information - Wissenschaft und Praxis. 60(2009) H.4, S.225-231
  16. Nagelschmidt, M.; Meyer, A.; Ehlen, D.: Mit Wiki-Software zum semantischen Web : Modellierungsansätze, Beispiele und Perspektiven (2011) 0.00
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    Source
    Information - Wissenschaft und Praxis. 62(2011) H.6/7, S.301-313
  17. Meyer, A.: wiki2rdf: Automatische Extraktion von RDF-Tripeln aus Artikelvolltexten der Wikipedia (2013) 0.00
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    Source
    Information - Wissenschaft und Praxis. 64(2013) H.2/3, S.115-126
  18. Zumstein, P.: ¬Die Rolle des Semantic Web für Bibliotheken : Linked Open Data und mehr: Welche Strategien können hier die Bibliotheken in die Zukunft führen? (2012) 0.00
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    Source
    Perspektive Bibliothek. 1(2012) H.1, S.81-102
  19. Niederée, C.: Metadaten als Bausteine des Semantic Web (2003) 0.00
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    Source
    Zeitschrift für Bibliothekswesen und Bibliographie. 50(2003) H.4, S.193-198
  20. Weber, M.; Fröschl, K.: ¬Das Semantic Web als Innovation in der ökonomischen Koordination (2006) 0.00
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    Abstract
    Das Semantic Web stellt - dzt. noch weitgehend als Entwurf - das bislang letzte Glied einer langen Kette großtechnischer Kommunikationssysteme dar, dessen respektable Vorläufer u. A. die Telegrafie. die Telefonie, der Rundfunk und nicht zuletzt das Internet sind. Als technowissenschaftliche Ambition steht das Semantic Web in der gesellschaftlichen Tradition des abendländischen Aufklärungsprojekts der rationalen Bewirtschaftung von Raum, Zeit. Energie und Zeichen. Auf der Grundlage der sich in den letzten Jahrzehnten bereits weitgehend vollzogenen Medienkonvergenz in der digitalisierten Infrastruktur bildet das Semantic Web - zumindest konzeptiv - einen kongenialen` Gegenpart zur markant ansteigenden Vernetzung der sich globalisierenden Wertschöpfungssysteme, die ihre ökonomischen Potenziale in der fortschreitenden Arbeitsteilung (Spezialisierung) und, komplementär dazu, immer umfassenderen Prozessoptimierung nutzt, die sich beide wiederum in der Hauptsache auf konventionalisierte Bedeutungssysteme zur informationstechnischen - d. h. vor allem: algorithmischen - Koordination stützen. Die soziale Ausformung gerade der Kommunikations- (und Koordinations-) Technologien unterliegt entschieden dem Wechselspiel einzelwirtschaftlicher Akteure bzw. Kapitalverwertungsinteressen und gesamtgesellschaftlicher Technologieadoption, das folgerichtig die charakteristische Innovationsdynamik einschließlich der prävalenten Muster der Ressourcenallokation auch dieser spezifischen Technikgenese prägt.