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  1. Li, J.; Shi, D.: Sleeping beauties in genius work : when were they awakened? (2016) 0.15
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    Abstract
    "Genius work," proposed by Avramescu, refers to scientific articles whose citations grow exponentially in an extended period, for example, over 50 years. Such articles were defined as "sleeping beauties" by van Raan, who quantitatively studied the phenomenon of delayed recognition. However, the criteria adopted by van Raan at times are not applicable and may confer recognition prematurely. To revise such deficiencies, this paper proposes two new criteria, which are applicable (but not limited) to exponential citation curves. We searched for genius work among articles of Nobel Prize laureates during the period of 1901-2012 on the Web of Science, finding 25 articles of genius work out of 21,438 papers including 10 (by van Raan's criteria) sleeping beauties and 15 nonsleeping-beauties. By our new criteria, two findings were obtained through empirical analysis: (a) the awakening periods for genius work depend on the increase rate b in the exponential function, and (b) lower b leads to a longer sleeping period.
    Date
    22. 1.2016 14:13:32
  2. Heuvel, C. van den: Multidimensional classifications : past and future conceptualizations and visualizations (2012) 0.10
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    Content
    This paper is an adaptation and augmented version of a paper presented at the NASKO 2011 conference: Charles van den Heuvel. 2011. Multidimensional classifications: Past and future conceptualizations and visualizations. In Smiraglia, Richard P., ed. Proceedings from North American Symposium on Knowledge Organization, Vol. 3. Toronto, Canada, pp. 105-21. Vgl.: http://www.ergon-verlag.de/isko_ko/downloads/ko_39_2012_6_e.pdf.
    Date
    22. 2.2013 11:31:25
    Theme
    Geschichte der Klassifikationssysteme
  3. Hooland, S. van; Verborgh, R.; Wilde, M. De; Hercher, J.; Mannens, E.; Wa, R.Van de: Evaluating the success of vocabulary reconciliation for cultural heritage collections (2013) 0.10
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    Date
    22. 3.2013 19:29:20
  4. Helbing, D.; Frey, B.S.; Gigerenzer, G.; Hafen, E.; Hagner, M.; Hofstetter, Y.; Hoven, J. van den; Zicari, R.V.; Zwitter, A.: Digitale Demokratie statt Datendiktatur : Digital-Manifest (2016) 0.10
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    Abstract
    Big Data, Nudging, Verhaltenssteuerung: Droht uns die Automatisierung der Gesellschaft durch Algorithmen und künstliche Intelligenz? Ein Appell zur Sicherung von Freiheit und Demokratie.
    Content
    Neun internationale Experten warnen vor der Aushöhlung unserer Bürgerrechte und der Demokratie im Zuge der digitalen Technikrevolution. Wir steuern demnach geradewegs auf die Automatisierung unserer Gesellschaft und die Fernsteuerung ihrer Bürger durch Algorithmen zu, in denen sich »Big Data« und »Nudging«-Methoden zu einem mächtigen Instrument vereinen. Erste Ansätze dazu lassen sich bereits in China und Singapur beobachten. Ein Zehnpunkteplan soll helfen, jetzt die richtigen Weichen zu stellen, um auch im digitalen Zeitalter Freiheitsrechte und Demokratie zu bewahren und die sich ergebenden Chancen zu nutzen. Vgl. auch das Interview mit D. Helbing zur Resonanz unter: http://www.spektrum.de/news/wie-social-bots-den-brexit-verursachten/1423912. Vgl. auch: https://www.spektrum.de/kolumne/das-grosse-scheitern/1685328.
    Source
    Spektrum der Wissenschaft. 2016, H.1, S.50-60
  5. Rijnsoever, F.J. van; Faber, J.; Brinkman, M.L.J.; Weele, M.A. van: User-producer interaction in Web site development : motives, modes, and misfits (2010) 0.09
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  6. Semantische Technologien : Grundlagen - Konzepte - Anwendungen (2012) 0.08
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    Abstract
    Dieses Lehrbuch bietet eine umfassende Einführung in Grundlagen, Potentiale und Anwendungen Semantischer Technologien. Es richtet sich an Studierende der Informatik und angrenzender Fächer sowie an Entwickler, die Semantische Technologien am Arbeitsplatz oder in verteilten Applikationen nutzen möchten. Mit seiner an praktischen Beispielen orientierten Darstellung gibt es aber auch Anwendern und Entscheidern in Unternehmen einen breiten Überblick über Nutzen und Möglichkeiten dieser Technologie. Semantische Technologien versetzen Computer in die Lage, Informationen nicht nur zu speichern und wieder zu finden, sondern sie ihrer Bedeutung entsprechend auszuwerten, zu verbinden, zu Neuem zu verknüpfen, und so flexibel und zielgerichtet nützliche Leistungen zu erbringen. Das vorliegende Buch stellt im ersten Teil die als Semantische Technologien bezeichneten Techniken, Sprachen und Repräsentationsformalismen vor. Diese Elemente erlauben es, das in Informationen enthaltene Wissen formal und damit für den Computer verarbeitbar zu beschreiben, Konzepte und Beziehungen darzustellen und schließlich Inhalte zu erfragen, zu erschließen und in Netzen zugänglich zu machen. Der zweite Teil beschreibt, wie mit Semantischen Technologien elementare Funktionen und umfassende Dienste der Informations- und Wissensverarbeitung realisiert werden können. Hierzu gehören etwa die Annotation und das Erschließen von Information, die Suche in den resultierenden Strukturen, das Erklären von Bedeutungszusammenhängen sowie die Integration einzelner Komponenten in komplexe Ablaufprozesse und Anwendungslösungen. Der dritte Teil beschreibt schließlich vielfältige Anwendungsbeispiele in unterschiedlichen Bereichen und illustriert so Mehrwert, Potenzial und Grenzen von Semantischen Technologien. Die dargestellten Systeme reichen von Werkzeugen für persönliches, individuelles Informationsmanagement über Unterstützungsfunktionen für Gruppen bis hin zu neuen Ansätzen im Internet der Dinge und Dienste, einschließlich der Integration verschiedener Medien und Anwendungen von Medizin bis Musik.
    Content
    Inhalt: 1. Einleitung (A. Dengel, A. Bernardi) 2. Wissensrepräsentation (A. Dengel, A. Bernardi, L. van Elst) 3. Semantische Netze, Thesauri und Topic Maps (O. Rostanin, G. Weber) 4. Das Ressource Description Framework (T. Roth-Berghofer) 5. Ontologien und Ontologie-Abgleich in verteilten Informationssystemen (L. van Elst) 6. Anfragesprachen und Reasoning (M. Sintek) 7. Linked Open Data, Semantic Web Datensätze (G.A. Grimnes, O. Hartig, M. Kiesel, M. Liwicki) 8. Semantik in der Informationsextraktion (B. Adrian, B. Endres-Niggemeyer) 9. Semantische Suche (K. Schumacher, B. Forcher, T. Tran) 10. Erklärungsfähigkeit semantischer Systeme (B. Forcher, T. Roth-Berghofer, S. Agne) 11. Semantische Webservices zur Steuerung von Prooduktionsprozessen (M. Loskyll, J. Schlick, S. Hodeck, L. Ollinger, C. Maxeiner) 12. Wissensarbeit am Desktop (S. Schwarz, H. Maus, M. Kiesel, L. Sauermann) 13. Semantische Suche für medizinische Bilder (MEDICO) (M. Möller, M. Sintek) 14. Semantische Musikempfehlungen (S. Baumann, A. Passant) 15. Optimierung von Instandhaltungsprozessen durch Semantische Technologien (P. Stephan, M. Loskyll, C. Stahl, J. Schlick)
    Footnote
    Auch als digitale Ausgabe verfügbar. Auf S. 5 befindet sich der Satz: "Wissen ist Information, die in Aktion umgesetzt wird".
  7. Vom Buch zur Datenbank : Paul Otlets Utopie der Wissensvisualisierung (2012) 0.08
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    Abstract
    Gegen Ende des 19. Jahrhunderts geriet das Dokumentationswesen in eine Krise: wie lässt sich das kulturelle Wissen nachhaltiger organisieren? Paul Otlet (1868-1944), ein belgischer Industriellenerbe und studierter Rechtsanwalt, entwickelte zusammen mit Henri La Fontaine ab 1895 ein Ordnungs- und Klassifikationssystem, das das millionenfach publizierte "Weltwissen" dokumentieren sollte. Otlets Anspruch war die Schaffung eines "Instrument d'ubiquité", das zur "Hyper-Intelligence" führen sollte. Jahrzehnte vor Web und Wikis weisen diese Ideen auf eine globale Vernetzung des Wissens hin. Der vorliegende Titel erinnert an den Pionier Paul Otlet mit einer ausführlichen Einleitung von Frank Hartmann (Bauhaus-Universität Weimar), Beiträgen von W. Boyd Rayward (University of Illinois), Charles van den Heuvel (Königlich Niederländische Akademie der Wissenschaften) und Wouter Van Acker (Universität Gent).
    Date
    22. 8.2016 16:06:54
    Theme
    Geschichte der Sacherschließung
  8. Eck, N.J. van; Waltman, L.; Dekker, R.; Berg, J. van den: ¬A comparison of two techniques for bibliometric mapping : multidimensional scaling and VOS (2010) 0.08
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  9. Waltman, L.; Calero-Medina, C.; Kosten, J.; Noyons, E.C.M.; Tijssen, R.J.W.; Eck, N.J. van; Leeuwen, T.N. van; Raan, A.F.J. van; Visser, M.S.; Wouters, P.: ¬The Leiden ranking 2011/2012 : data collection, indicators, and interpretation (2012) 0.08
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  10. Geiß, D.: Aus der Praxis der Patentinformation : Die Entwicklung der elektronischen Medien und Dienstleistungen bei den Patentbehörden und Internetprovidern im Jahr 2012 (2013) 0.08
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    Content
    Vgl.: http://www.degruyter.com/view/j/iwp.2013.64.issue-1/iwp-2013-0003/iwp-2013-0003.xml?format=INT.
    Date
    22. 3.2013 16:08:18
  11. Boer, V. de; Wielemaker, J.; Gent, J. van; Hildebrand, M.; Isaac, A.; Ossenbruggen, J. van; Schreiber, G.: Supporting linked data production for cultural heritage institutes : the Amsterdam Museum case study (2012) 0.07
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  12. Delahaye, J.-P.: Big brother an der Hintertür (2018) 0.07
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    Date
    22. 2.2018 16:55:48
    Source
    Spektrum der Wissenschaft. 2018, H.3, S.72-77
  13. Nielsen, M.: Neuronale Netze : Alpha Go - Computer lernen Intuition (2018) 0.07
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    Content
    Vgl. auch den Beitrag: Sokol, J.: Spielend lernen. In: Spektrum der Wissenschaft. 2018, H.11, S.72-76.
    Source
    Spektrum der Wissenschaft. 2018, H.1, S.22-27
  14. Dahlberg, I.: Begriffsarbeit in der Wissensorganisation (2010) 0.07
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    Abstract
    Ausgehend von der Notwendigkeit, das Wissen der Wissensorganisation in ihren Wissenseinheiten (Begriffen) zu erfassen, wird auf Vorgängerarbeiten (E.Wüster, F.Riggs) hingewiesen. Für die notwendigen Arbeiten wird der noematische Wissensbegriff herangezogen und es wird gezeigt, wie begriffsanalytisch (merkmalsbezogen und durch Merkmale auch systembildend) an eine mögliche Begriffsarbeit herangegangen werden sollte. Die sieben notwendigen Schritte hierzu werden erläutert.
    Series
    Fortschritte in der Wissensorganisation; Bd.11
    Source
    Wissensspeicher in digitalen Räumen: Nachhaltigkeit - Verfügbarkeit - semantische Interoperabilität. Proceedings der 11. Tagung der Deutschen Sektion der Internationalen Gesellschaft für Wissensorganisation, Konstanz, 20. bis 22. Februar 2008. Hrsg.: J. Sieglerschmidt u. H.P.Ohly
  15. Kleeck, D. Van; Langford, G.; Lundgren, J.; Nakano, H.; O'Dell, A.J.; Shelton, T.: Managing bibliographic data quality in a consortial academic library : a case study (2016) 0.07
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  16. Kleeck, D. Van; Nakano, H.; Langford, G.; Shelton, T.; Lundgren, J.; O'Dell, A.J.: Managing bibliographic data quality for electronic resources (2017) 0.07
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  17. Kleineberg, M.: Context analysis and context indexing : formal pragmatics in knowledge organization (2014) 0.07
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    Source
    http://www.google.de/url?sa=t&rct=j&q=&esrc=s&source=web&cd=5&ved=0CDQQFjAE&url=http%3A%2F%2Fdigbib.ubka.uni-karlsruhe.de%2Fvolltexte%2Fdocuments%2F3131107&ei=HzFWVYvGMsiNsgGTyoFI&usg=AFQjCNE2FHUeR9oQTQlNC4TPedv4Mo3DaQ&sig2=Rlzpr7a3BLZZkqZCXXN_IA&bvm=bv.93564037,d.bGg&cad=rja
  18. Van der Veer Martens, B.; Fleet, C. van: Opening the black box of "relevance work" : a domain analysis (2012) 0.07
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  19. Ermert, A.: Terminologie - Bedeutung, Erarbeitung, professionelle Strukturierung und Management : Der 13. Deutsche Terminologietag vom 19. bis 21. April 2012 in Heidelberg (2012) 0.07
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    Content
    Vgl.: http://www.degruyter.com/view/j/iwp.2012.63.issue-3/iwp-2012-0041/iwp-2012-0041.xml?format=INT.
    Date
    22. 7.2012 19:37:29
  20. Shala, E.: ¬Die Autonomie des Menschen und der Maschine : gegenwärtige Definitionen von Autonomie zwischen philosophischem Hintergrund und technologischer Umsetzbarkeit (2014) 0.07
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    Abstract
    Werden Maschinen mit Begriffen beschrieben, die ursprünglich der Beschreibung des Menschen dienen, so liegt zunächst der Verdacht nahe, dass jene Maschinen spezifischmenschliche Fähigkeiten oder Eigenschaften besitzen. Für körperliche Fähigkeiten, die mechanisch nachgeahmt werden, hat sich in der Alltagssprache eine anthropomorphisierende Sprechweise bereits etabliert. So wird kaum in Frage gestellt, dass bestimmte Maschinen weben, backen, sich bewegen oder arbeiten können. Bei nichtkörperlichen Eigenschaften, etwa kognitiver, sozialer oder moralischer Art sieht dies jedoch anders aus. Dass mittlerweile intelligente und rechnende Maschinen im alltäglichen Sprachgebrauch Eingang gefunden haben, wäre jedoch undenkbar ohne den langjährigen Diskurs über Künstliche Intelligenz, welcher insbesondere die zweite Hälfte des vergangenen Jahrhunderts geprägt hat. In jüngster Zeit ist es der Autonomiebegriff, welcher zunehmend Verwendung zur Beschreibung neuer Technologien findet, wie etwa "autonome mobile Roboter" oder "autonome Systeme". Dem Begriff nach rekurriert die "Autonomie" jener Technologien auf eine bestimmte Art technologischen Fortschritts, die von der Fähigkeit zur Selbstgesetzgebung herrührt. Dies wirft aus philosophischer Sicht jedoch die Frage auf, wie die Selbstgesetzgebung in diesem Fall definiert ist, zumal sich der Autonomiebegriff in der Philosophie auf die politische oder moralische Selbstgesetzgebung von Menschen oder Menschengruppen beziehungsweise ihre Handlungen bezieht. Im Handbuch Robotik hingegen führt der Autor geradezu beiläufig die Bezeichnung "autonom" ein, indem er prognostiziert, dass "[.] autonome Roboter in Zukunft sogar einen Großteil der Altenbetreuung übernehmen werden."
    Content
    Redigierte Version der Magisterarbeit, Karlsruhe, KIT, Inst. für Philosophie, 2012.
    Footnote
    Vgl. unter: https://www.google.de/url?sa=t&rct=j&q=&esrc=s&source=web&cd=2&cad=rja&uact=8&ved=2ahUKEwizweHljdbcAhVS16QKHXcFD9QQFjABegQICRAB&url=https%3A%2F%2Fwww.researchgate.net%2Fpublication%2F271200105_Die_Autonomie_des_Menschen_und_der_Maschine_-_gegenwartige_Definitionen_von_Autonomie_zwischen_philosophischem_Hintergrund_und_technologischer_Umsetzbarkeit_Redigierte_Version_der_Magisterarbeit_Karls&usg=AOvVaw06orrdJmFF2xbCCp_hL26q.

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