Search (56 results, page 1 of 3)

  • × type_ss:"el"
  • × year_i:[1990 TO 2000}
  1. Information als Rohstoff für Innovation : Programm der Bundesregierung 1996-2000 (1996) 0.03
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    Date
    22. 2.1997 19:26:34
  2. Ask me[@sk.me]: your global information guide : der Wegweiser durch die Informationswelten (1996) 0.03
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    Date
    30.11.1996 13:22:37
  3. Kosmos Weltatlas 2000 : Der Kompass für das 21. Jahrhundert. Inklusive Welt-Routenplaner (1999) 0.03
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    Date
    7.11.1999 18:22:39
  4. Koch, T.: Searching the Web : systematic overview over indexes (1995) 0.03
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    Object
    Nordic Web Index
  5. Vögel unserer Heimat (1999) 0.02
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    Date
    7.11.1999 18:22:54
  6. Dunning, A.: Do we still need search engines? (1999) 0.02
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    Source
    Ariadne. 1999, no.22
  7. Sullivan D.: How search engines rank web pages (1998) 0.02
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  8. Barlow, L.: ¬The spider's apprentice : how to use Web search engines (1997) 0.02
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  9. ¬Third International World Wide Web Conference, Darmstadt 1995 : [Inhaltsverzeichnis] (1995) 0.02
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    Abstract
    ANDREW, K. u. F. KAPPE: Serving information to the Web with Hyper-G; BARBIERI, K., H.M. DOERR u. D. DWYER: Creating a virtual classroom for interactive education on the Web; CAMPBELL, J.K., S.B. JONES, N.M. STEPHENS u. S. HURLEY: Constructing educational courseware using NCSA Mosaic and the World Wide Web; CATLEDGE, L.L. u. J.E. PITKOW: Characterizing browsing strategies in the World-Wide Web; CLAUSNITZER, A. u. P. VOGEL: A WWW interface to the OMNIS/Myriad literature retrieval engine; FISCHER, R. u. L. PERROCHON: IDLE: Unified W3-access to interactive information servers; FOLEY, J.D.: Visualizing the World-Wide Web with the navigational view builder; FRANKLIN, S.D. u. B. IBRAHIM: Advanced educational uses of the World-Wide Web; FUHR, N., U. PFEIFER u. T. HUYNH: Searching structured documents with the enhanced retrieval functionality of free WAIS-sf and SFgate; FIORITO, M., J. OKSANEN u. D.R. IOIVANE: An educational environment using WWW; KENT, R.E. u. C. NEUSS: Conceptual analysis of resource meta-information; SHELDON, M.A. u. R. WEISS: Discover: a resource discovery system based on content routing; WINOGRAD, T.: Beyond browsing: shared comments, SOAPs, Trails, and On-line communities
  10. Internet-Agenten : intelligente Suchwerkzeuge für das Internet (1996) 0.02
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    Abstract
    Die Spezial-CD, mit der Sie jetzt blitzschnell und treffsicher durch das Net surfen: Hier finden Sie alle Tricks, wie Sie mit intelligenten Suchsystemen, den 'Robots', 'Wanderers', 'Worms' oder 'Spiders', Millionen von Web-Seiten durchsuchen und sofort zur richtigen Fundstelle kommen
    Theme
    Web-Agenten
  11. Page, L.; Brin, S.; Motwani, R.; Winograd, T.: ¬The PageRank citation ranking : Bringing order to the Web (1999) 0.02
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  12. Sowards, S.W.: ¬A typology for ready reference Web sites in libraries (1996) 0.02
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    Abstract
    Many libraries manage Web sites intended to provide their users with online resources suitable for answering reference questions. Most of these sites can be analyzed in terms of their depth, and their organizing and searching features. Composing a typology based on these factors sheds light on the critical design decisions that influence whether users of these sites succees or fail to find information easily, rapidly and accurately. The same analysis highlights some larger design issues, both for Web sites and for information management at large
  13. Strobel, S.: ¬The complete Linux kit : fully configured LINUX system kernel (1997) 0.02
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    Date
    16. 7.2002 20:22:55
  14. Birmingham, J.: Internet search engines (1996) 0.02
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    Date
    10.11.1996 16:36:22
  15. Brin, S.; Page, L.: ¬The anatomy of a large-scale hypertextual Web search engine (1998) 0.02
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    Abstract
    In this paper, we present Google, a prototype of a large-scale search engine which makes heavy use of the structure present in hypertext. Google is designed to crawl and index the Web efficiently and produce much more satisfying search results than existing systems. The prototype with a full text and hyperlink database of at least 24 million pages is available at http://google.stanford.edu/. To engineer a search engine is a challenging task. Search engines index tens to hundreds of millions of web pages involving a comparable number of distinct terms. They answer tens of millions of queries every day. Despite the importance of large-scale search engines on the web, very little academic research has been done on them. Furthermore, due to rapid advance in technology and web proliferation, creating a web search engine today is very different from three years ago. This paper provides an in-depth description of our large-scale web search engine -- the first such detailed public description we know of to date. Apart from the problems of scaling traditional search techniques to data of this magnitude, there are new technical challenges involved with using the additional information present in hypertext to produce better search results. This paper addresses this question of how to build a practical large-scale system which can exploit the additional information present in hypertext. Also we look at the problem of how to effectively deal with uncontrolled hypertext collections where anyone can publish anything they want
  16. Leighton, H.V.: Performance of four World Wide Web (WWW) index services : Infoseek, Lycos, WebCrawler and WWWWorm (1995) 0.02
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  17. Web-Publishing : So gestalten Sie Ihre HTML-Seiten: HTML-Editoren - Grafik-Programme - Konverter (1996) 0.02
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  18. World Wide Web JAVA : die revolutionäre Programmiersprache nicht nur für das Internet (1996) 0.02
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  19. Hermans, B.: Intelligent software agents on the Internet : an inventory of currently offered functionality in the information society and prediction of (near) future developments (1997) 0.02
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    Theme
    Web-Agenten
  20. Carrière, J.; Kazman, R.: WebQuery : searching and visualizing the Web through connectivity (1996) 0.02
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    Abstract
    Finding information located somewhere on the WWW is an error-prone and frustrating task. The WebQuey system offers a powerful new method for searching the Web based on connectivity and content. We do this by examining links among the nodes returned in a keyword-based query. We then rank the nodes, giving the highest rank to the most highly connected nodes. By doing so, we are finding 'hot spots' on the Web that contain onformation germane to a user's query. WebQuery not only ranks and filters the results of a Web query, it also extends the result set beyond what the search engine retrieves, by finding 'interesting' sites that are hoghly connected to those sites returned by the original query. Even with WebQuery filtering and ranking query results, the result sets can be enourmous. So, wen need to visualize the returned information. We explore several techniques for visualizing this information - including cone trees, 2D graphs, 3D graphy, lists, and bullseyes - and discuss the criteria for using each of the techniques

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