Search (23 results, page 1 of 2)

  • × year_i:[2010 TO 2020}
  • × theme_ss:"Universale Facettenklassifikationen"
  1. Szostak, R.: Facet analysis without facet indicators (2017) 0.05
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    Source
    Dimensions of knowledge: facets for knowledge organization. Eds.: R.P. Smiraglia, u. H.-L. Lee
  2. Smiraglia, R.P.: ¬A brief introduction to facets in knowledge organization (2017) 0.02
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    Source
    Dimensions of knowledge: facets for knowledge organization. Eds.: R.P. Smiraglia, u. H.-L. Lee
  3. Smiraglia, R.P.: Facets for clustering and disambiguation : the domain discourse of facets in knowledge organization (2017) 0.02
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    Source
    Dimensions of knowledge: facets for knowledge organization. Eds.: R.P. Smiraglia, u. H.-L. Lee
  4. LaBarre, K.: Interrogating facet theory : decolonizing knowledge organization (2017) 0.02
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    Source
    Dimensions of knowledge: facets for knowledge organization. Eds.: R.P. Smiraglia, u. H.-L. Lee
  5. Satija, M.P.; Oh, D.-G.: ¬The DDC and the knowledge categories : Dewey did faceting without knowing it (2017) 0.02
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    Source
    Dimensions of knowledge: facets for knowledge organization. Eds.: R.P. Smiraglia, u. H.-L. Lee
  6. Gnoli, C.: Classifying phenomena : part 3: facets (2017) 0.02
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    Source
    Dimensions of knowledge: facets for knowledge organization. Eds.: R.P. Smiraglia, u. H.-L. Lee
  7. Milonas, E.: ¬An examination of facets within search engine result pages (2017) 0.02
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    Source
    Dimensions of knowledge: facets for knowledge organization. Eds.: R.P. Smiraglia, u. H.-L. Lee
  8. Tennis, J.T.: Facets and fugit tempus : considering time's effect on faceted classification schemes (2012) 0.01
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    Date
    2. 6.2013 18:33:22
  9. Johnson, E.H.: S R Ranganathan in the Internet age (2019) 0.01
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    Abstract
    S R Ranganathan's ideas have influenced library classification since the inception of his Colon Classification in 1933. His address at Elsinore, "Library Classification Through a Century", was his grand vision of the century of progress in classification from 1876 to 1975, and looked to the future of faceted classification as the means to provide a cohesive system to organize the world's information. Fifty years later, the internet and its achievements, social ecology, and consequences present a far more complicated picture, with the library as he knew it as a very small part and the problems that he confronted now greatly exacerbated. The systematic nature of Ranganathan's canons, principles, postulates, and devices suggest that modern semantic algorithms could guide automatic subject tagging. The vision presented here is one of internet-wide faceted classification and retrieval, implemented as open, distributed facets providing unified faceted searching across all web sites.
  10. Panigrahi, P.: Ranganathan and Dewey in hierarchical subject classification : some similarities (2015) 0.01
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    Abstract
    S R Ranganathan and Melvil Dewey devised two types of classification schemes viz., faceted and enumerative. Ranganathan's faceted classification scheme is based on postulates, principles and canons. It has a strong theory. While working with the two schemes, similarities are observed. This paper tries to identify and present some relationships.
  11. Rout, R.; Panigrahi, P.: Revisiting Ranganathan's canons in online cataloguing environment (2015) 0.01
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  12. Perugini, S.: Supporting multiple paths to objects in information hierarchies : faceted classification, faceted search, and symbolic links (2010) 0.01
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    Source
    Information processing and management. 46(2010) no.1, S.22-43
  13. Heuvel, C. van den: Multidimensional classifications : past and future conceptualizations and visualizations (2012) 0.01
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    Date
    22. 2.2013 11:31:25
  14. Dimensions of knowledge : facets for knowledge organization (2017) 0.01
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    Editor
    Smiraglia, R.P. u. H.-L. Lee
  15. Tennis, J.T.: Never facets alone : the evolving thought and persistent problems in Ranganathan's theories of classification (2017) 0.01
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    Source
    Dimensions of knowledge: facets for knowledge organization. Eds.: R.P. Smiraglia, u. H.-L. Lee
  16. Gnoli, C.; Merli, G.; Pavan, G.; Bernuzzi, E.; Priano, M.: Freely faceted classification for a Web-based bibliographic archive : the BioAcoustic Reference Database (2010) 0.01
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    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
  17. Dousa, T.M.; Ibekwe-SanJuan, F.: Epistemological and methodological eclecticism in the construction of knowledge organization systems (KOSs) : the case of analytico-synthetic KOSs (2014) 0.01
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    Source
    Knowledge organization in the 21st century: between historical patterns and future prospects. Proceedings of the Thirteenth International ISKO Conference 19-22 May 2014, Kraków, Poland. Ed.: Wieslaw Babik
  18. Dousa, T.M.: Categories and the architectonics of system in Julius Otto Kaiser's method of systematic indexing (2014) 0.01
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    Source
    Knowledge organization in the 21st century: between historical patterns and future prospects. Proceedings of the Thirteenth International ISKO Conference 19-22 May 2014, Kraków, Poland. Ed.: Wieslaw Babik
  19. Gnoli, C.; Pullman, T.; Cousson, P.; Merli, G.; Szostak, R.: Representing the structural elements of a freely faceted classification (2011) 0.00
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  20. Giri, K.; Gokhale, P.: Developing a banking service ontology using Protégé, an open source software (2015) 0.00
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    Abstract
    Computers have transformed from single isolated devices to entry points into a worldwide network of information exchange. Consequently, support in the exchange of data, information, and knowledge is becoming the key issue in computer technology today. The increasing volume of data available on the Web makes information retrieval a tedious and difficult task. Researchers are now exploring the possibility of creating a semantic web, in which meaning is made explicit, allowing machines to process and integrate web resources intelligently. The vision of the semantic web introduces the next generation of the Web by establishing a layer of machine-understandable data. The success of the semantic web depends on the easy creation, integration and use of semantic data, which will depend on web ontology. The faceted approach towards analyzing and representing knowledge given by S R Ranganathan would be useful in this regard. Ontology development in different fields is one such area where this approach given by Ranganathan could be applied. This paper presents a case of developing ontology for the field of banking.