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  1. Kleineberg, M.: Context analysis and context indexing : formal pragmatics in knowledge organization (2014) 0.29
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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
  2. Popper, K.R.: Three worlds : the Tanner lecture on human values. Deliverd at the University of Michigan, April 7, 1978 (1978) 0.23
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    Source
    https%3A%2F%2Ftannerlectures.utah.edu%2F_documents%2Fa-to-z%2Fp%2Fpopper80.pdf&usg=AOvVaw3f4QRTEH-OEBmoYr2J_c7H
  3. Vernetztes Wissen - Daten, Menschen, Systeme : 6. Konferenz der Zentralbibliothek Forschungszentrum Jülich. 5. - 7. November 2012 - Proceedingsband: WissKom 2012 (2012) 0.04
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    Abstract
    Informations- und Wissensvermittlung verlagern sich immer stärker in die digitale Welt. Möglich wird dies nicht zuletzt durch die voranschreitende Durchdringung aller Lebensbereiche durch das Internet. Wissen wird mehr und mehr zu vernetztem Wissen. Die Jülicher Konferenz WissKom2012 thematisiert die Anpassung an diese Entwicklung und ihre Mitgestaltung durch innovative Bibliotheksdienstleistungen. Der Konferenztitel "Vernetztes Wissen: Daten, Menschen, Systeme" deutet die wechselseitige Vernetzung unter- und miteinander an. Ziel ist, vorhandene Insellösungen zu verbinden und neue Konzepte für inhärent vernetzte Strukturen zu entwickeln. Mit der WissKom2012 "Vernetztes Wissen - Daten, Menschen, Systeme" greift die Zentralbibliothek des Forschungszentrums Jülich erneut Themen im Spannungsfeld von "Bibliothek - Information - Wissenschaft" in einer Konferenz interdisziplinär auf und versucht, neue Handlungsfelder für Bibliotheken aufzuzeigen. Diese sechste Konferenz der Zentralbibliothek thematisiert den immer wichtiger werdenden Bereich der Forschungsdaten und den nachhaltigen Umgang mit ihnen. Sie zeigt auf, was Interdisziplinarität konkret bedeutet und wie bislang isolierte Systeme vernetzt werden können und so Mehrwert entsteht. Der Konferenzband enthält neben den Ausführungen der Referenten zudem die Beiträge der Poster Session sowie den Festvortrag von Prof. Viktor Mayer-Schönberger mit dem Titel "Delete: Die Tugend des Vergessens in digitalen Zeiten".
  4. Hakala, J.: Z39.50-1995: information retrieval protocol : an introduction to the standard and it's usage (1996) 0.02
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    Abstract
    This article describes the Internet information retrieval protocol, Z39.50, and it's usage. The services of Z39.50 are depicted, as are some important terms related to the standard. A description of the OPAC Network in Europe (ONE), an important Z39.50 implementation project is included
    Theme
    Verteilte bibliographische Datenbanken
  5. DeSilva, J.M.; Traniello, J.F.A.; Claxton, A.G.; Fannin, L.D.: When and why did human brains decrease in size? : a new change-point analysis and insights from brain evolution in ants (2021) 0.02
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    Footnote
    Vgl. auch: Rötzer, F.: Warum schrumpft das Gehirn des Menschen seit ein paar Tausend Jahren? Unter: https://krass-und-konkret.de/wissenschaft-technik/warum-schrumpft-das-gehirn-des-menschen-seit-ein-paar-tausend-jahren/. "... seit einigen tausend Jahren - manche sagen seit 10.000 Jahren -, also nach dem Beginn der Landwirtschaft, der Sesshaftigkeit und der Stadtgründungen sowie der Erfindung der Schrift schrumpfte das menschliche Gehirn überraschenderweise wieder. ... Allgemein wird davon ausgegangen, dass mit den ersten Werkzeugen und vor allem beginnend mit der Erfindung der Schrift kognitive Funktionen, vor allem das Gedächtnis externalisiert wurden, allerdings um den Preis, neue Kapazitäten entwickeln zu müssen, beispielsweise Lesen und Schreiben. Gedächtnis beinhaltet individuelle Erfahrungen, aber auch kollektives Wissen, an dem alle Mitglieder einer Gemeinschaft mitwirken und in das das Wissen sowie die Erfahrungen der Vorfahren eingeschrieben sind. Im digitalen Zeitalter ist die Externalisierung und Entlastung der Gehirne noch sehr viel weitgehender, weil etwa mit KI nicht nur Wissensinhalte, sondern auch kognitive Fähigkeiten wie das Suchen, Sammeln, Analysieren und Auswerten von Informationen zur Entscheidungsfindung externalisiert werden, während die externalisierten Gehirne wie das Internet kollektiv in Echtzeit lernen und sich erweitern. Über Neuimplantate könnten schließlich Menschen direkt an die externalisierten Gehirne angeschlossen werden, aber auch direkt ihre kognitiven Kapazitäten erweitern, indem Prothesen, neue Sensoren oder Maschinen/Roboter auch in der Ferne in den ergänzten Körper der Gehirne aufgenommen werden.
    Die Wissenschaftler sehen diese Entwicklungen im Hintergrund, wollen aber über einen Vergleich mit der Hirnentwicklung bei Ameisen erklären, warum heutige Menschen kleinere Gehirne als ihre Vorfahren vor 100.000 Jahren entwickelt haben. Der Rückgang der Gehirngröße könnte, so die Hypothese, "aus der Externalisierung von Wissen und den Vorteilen der Entscheidungsfindung auf Gruppenebene resultieren, was zum Teil auf das Aufkommen sozialer Systeme der verteilten Kognition und der Speicherung und Weitergabe von Informationen zurückzuführen ist"."
    Source
    Frontiers in ecology and evolution, 22 October 2021 [https://www.frontiersin.org/articles/10.3389/fevo.2021.742639/full]
  6. Coyle, K.: ¬The virtual union catalog : a comparative study (2000) 0.02
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    Theme
    Verteilte bibliographische Datenbanken
    Katalogfragen allgemein
  7. Roszkowski, M.; Lukas, C.: ¬A distributed architecture for resource discovery using metadata (1998) 0.02
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    Abstract
    This article describes an approach for linking geographically distributed collections of metadata so that they are searchable as a single collection. We describe the infrastructure, which uses standard Internet protocols such as the Lightweight Directory Access Protocol (LDAP) and the Common Indexing Protocol (CIP), to distribute queries, return results, and exchange index information. We discuss the advantages of using linked collections of authoritative metadata as an alternative to using a keyword indexing search-engine for resource discovery. We examine other architectures that use metadata for resource discovery, such as Dienst/NCSTRL, the AHDS HTTP/Z39.50 Gateway, and the ROADS initiative. Finally, we discuss research issues and future directions of the project. The Internet Scout Project, which is funded by the National Science Foundation and is located in the Computer Sciences Department at the University of Wisconsin-Madison, is charged with assisting the higher education community in resource discovery on the Internet. To that end, the Scout Report and subsequent subject-specific Scout Reports were developed to guide the U.S. higher education community to research-quality resources. The Scout Report Signpost utilizes the content from the Scout Reports as the basis of a metadata collection. Signpost consists of more than 2000 cataloged Internet sites using established standards such as Library of Congress subject headings and abbreviated call letters, and emerging standards such as the Dublin Core (DC). This searchable and browseable collection is free and freely accessible, as are all of the Internet Scout Project's services.
    As well developed as both the Scout Reports and Signpost are, they cannot capture the wealth of high-quality content that is available on the Internet. An obvious next step toward increasing the usefulness of our own collection and its value to our customer base is to partner with other high-quality content providers who have developed similar collections and to develop a single, virtual collection. Project Isaac (working title) is the Internet Scout Project's latest resource discovery effort. Project Isaac involves the development of a research testbed that allows experimentation with protocols and algorithms for creating, maintaining, indexing and searching distributed collections of metadata. Project Isaac's infrastructure uses standard Internet protocols, such as the Lightweight Directory Access Protocol (LDAP) and the Common Indexing Protocol (CIP) to distribute queries, return results, and exchange index or centroid information. The overall goal is to support a single-search interface to geographically distributed and independently maintained metadata collections.
    Theme
    Verteilte bibliographische Datenbanken
  8. Birmingham, J.: Internet search engines (1996) 0.01
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    Content
    Darstellung zu verschiedenen search engines des Internet
    Date
    10.11.1996 16:36:22
  9. Robbio, A. de; Maguolo, D.; Marini, A.: Scientific and general subject classifications in the digital world (2001) 0.01
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    Field
    Informatik
    Theme
    Internet
  10. Harari, Y.N.: ¬[Yuval-Noah-Harari-argues-that] AI has hacked the operating system of human civilisation (2023) 0.01
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    Field
    Informatik
  11. UCB library Internet search tool details (1995) 0.01
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    Abstract
    Vorstellung von Hilfsmitteln zur inhaltlichen Suche von Angeboten im Internet
    Theme
    Internet
  12. Koch, T.: Browsing and searching Internet resources (1996) 0.01
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    Abstract
    Darstellung zu den verschiedenen Möglichkeiten der inhaltlichen Suche im Internet
    Theme
    Internet
  13. Severiens, T.; Hohlfeld, M.; Zimmermann, K.; Hilf, E.R.: PhysDoc - a distributed network of physics institutions documents : collecting, indexing, and searching high quality documents by using harvest (2000) 0.01
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    Theme
    Verteilte bibliographische Datenbanken
  14. Teets, M.; Murray, P.: Metasearch authentication and access management (2006) 0.01
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    Theme
    Verteilte bibliographische Datenbanken
  15. Veen, T. van; Oldroyd, B.: Search and retrieval in The European Library : a new approach (2004) 0.01
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    Theme
    Verteilte bibliographische Datenbanken
  16. Fang, L.: ¬A developing search service : heterogeneous resources integration and retrieval system (2004) 0.01
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    Theme
    Verteilte bibliographische Datenbanken
  17. Heflin, J.; Hendler, J.: Semantic interoperability on the Web (2000) 0.01
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    Abstract
    XML will have a profound impact on the way data is exchanged on the Internet. An important feature of this language is the separation of content from presentation, which makes it easier to select and/or reformat the data. However, due to the likelihood of numerous industry and domain specific DTDs, those who wish to integrate information will still be faced with the problem of semantic interoperability. In this paper we discuss why this problem is not solved by XML, and then discuss why the Resource Description Framework is only a partial solution. We then present the SHOE language, which we feel has many of the features necessary to enable a semantic web, and describe an existing set of tools that make it easy to use the language.
    Date
    11. 5.2013 19:22:18
  18. Scheir, P.; Pammer, V.; Lindstaedt, S.N.: Information retrieval on the Semantic Web : does it exist? (2007) 0.01
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    Content
    Enthält einen Überblick über Modelle, Systeme und Projekte
  19. Fayfich, P.R.: Searching for information on the WWW (???) 0.01
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    Abstract
    Vorstellung von Hilfsmitteln zur inhaltlichen Suche von Angeboten im Internet
    Theme
    Internet
  20. Cataloging Internet resources : a manual and practical guide (1996) 0.01
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    Theme
    Internet

Years

Types

  • a 102
  • s 5
  • m 4
  • r 4
  • i 2
  • b 1
  • n 1
  • x 1
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Classifications