Search (5 results, page 1 of 1)

  • × theme_ss:"Konzeption und Anwendung des Prinzips Thesaurus"
  • × theme_ss:"Wissensrepräsentation"
  1. Curras, E.: Ontologies, taxonomy and thesauri in information organisation and retrieval (2010) 0.03
    0.028653976 = product of:
      0.1146159 = sum of:
        0.1146159 = weight(_text_:evolution in 3276) [ClassicSimilarity], result of:
          0.1146159 = score(doc=3276,freq=8.0), product of:
            0.19585751 = queryWeight, product of:
              5.29663 = idf(docFreq=601, maxDocs=44218)
              0.03697776 = queryNorm
            0.5852004 = fieldWeight in 3276, product of:
              2.828427 = tf(freq=8.0), with freq of:
                8.0 = termFreq=8.0
              5.29663 = idf(docFreq=601, maxDocs=44218)
              0.0390625 = fieldNorm(doc=3276)
      0.25 = coord(1/4)
    
    Content
    Inhalt: 1. From classifications to ontologies Knowledge - A new concept of knowledge - Knowledge and information - Knowledge organisation - Knowledge organisation and representation - Cognitive sciences - Talent management - Learning systematisation - Historical evolution - From classification to knowledge organisation - Why ontologies exist - Ontologies - The structure of ontologies 2. Taxonomies and thesauri From ordering to taxonomy - The origins of taxonomy - Hierarchical and horizontal order - Correlation with classifications - Taxonomy in computer science - Computing taxonomy - Definitions - Virtual taxonomy, cybernetic taxonomy - Taxonomy in Information Science - Similarities between taxonomies and thesauri - ifferences between taxonomies and thesauri 3. Thesauri Terminology in classification systems - Terminological languages - Thesauri - Thesauri definitions - Conditions that a thesaurus must fulfil - Historical evolution - Classes of thesauri 4. Thesauri in (cladist) systematics Systematics - Systematics as a noun - Definitions and historic evolution over time - Differences between taxonomy and systematics - Systematics in thesaurus construction theory - Classic, numerical and cladist systematics - Classic systematics in information science - Numerical systematics in information science - Thesauri in cladist systematics - Systematics in information technology - Some examples 5. Thesauri in systems theory Historical evolution - Approach to systems - Systems theory applied to the construction of thesauri - Components - Classes of system - Peculiarities of these systems - Working methods - Systems theory applied to ontologies and taxonomies
  2. Amirhosseini, M.; Avidan, G.: ¬A dialectic perspective on the evolution of thesauri and ontologies (2021) 0.02
    0.024815073 = product of:
      0.09926029 = sum of:
        0.09926029 = weight(_text_:evolution in 592) [ClassicSimilarity], result of:
          0.09926029 = score(doc=592,freq=6.0), product of:
            0.19585751 = queryWeight, product of:
              5.29663 = idf(docFreq=601, maxDocs=44218)
              0.03697776 = queryNorm
            0.5067985 = fieldWeight in 592, product of:
              2.4494898 = tf(freq=6.0), with freq of:
                6.0 = termFreq=6.0
              5.29663 = idf(docFreq=601, maxDocs=44218)
              0.0390625 = fieldNorm(doc=592)
      0.25 = coord(1/4)
    
    Abstract
    The purpose of this article is to identify the most important factors and features in the evolution of thesauri and ontologies through a dialectic model. This model relies on a dialectic process or idea which could be discovered via a dialectic method. This method has focused on identifying the logical relationship between a beginning proposition, or an idea called a thesis, a negation of that idea called the antithesis, and the result of the conflict between the two ideas, called a synthesis. During the creation of knowl­edge organization systems (KOSs), the identification of logical relations between different ideas has been made possible through the consideration and use of the most influential methods and tools such as dictionaries, Roget's Thesaurus, thesaurus, micro-, macro- and metathesauri, ontology, lower, middle and upper level ontologies. The analysis process has adapted a historical methodology, more specifically a dialectic method and documentary method as the reasoning process. This supports our arguments and synthesizes a method for the analysis of research results. Confirmed by the research results, the principle of unity has shown to be the most important factor in the development and evolution of the structure of knowl­edge organization systems and their types. There are various types of unity when considering the analysis of logical relations. These include the principle of unity of alphabetical order, unity of science, semantic unity, structural unity and conceptual unity. The results have clearly demonstrated a movement from plurality to unity in the assembling of the complex structure of knowl­edge organization systems to increase information and knowl­edge storage and retrieval performance.
  3. Tudhope, D.; Hodge, G.: Terminology registries (2007) 0.00
    0.0041749803 = product of:
      0.016699921 = sum of:
        0.016699921 = product of:
          0.050099764 = sum of:
            0.050099764 = weight(_text_:22 in 539) [ClassicSimilarity], result of:
              0.050099764 = score(doc=539,freq=2.0), product of:
                0.12948982 = queryWeight, product of:
                  3.5018296 = idf(docFreq=3622, maxDocs=44218)
                  0.03697776 = queryNorm
                0.38690117 = fieldWeight in 539, product of:
                  1.4142135 = tf(freq=2.0), with freq of:
                    2.0 = termFreq=2.0
                  3.5018296 = idf(docFreq=3622, maxDocs=44218)
                  0.078125 = fieldNorm(doc=539)
          0.33333334 = coord(1/3)
      0.25 = coord(1/4)
    
    Date
    26.12.2011 13:22:07
  4. Boteram, F.: Semantische Relationen in Dokumentationssprachen : vom Thesaurus zum semantischen Netz (2010) 0.00
    0.0029224863 = product of:
      0.011689945 = sum of:
        0.011689945 = product of:
          0.035069834 = sum of:
            0.035069834 = weight(_text_:22 in 4792) [ClassicSimilarity], result of:
              0.035069834 = score(doc=4792,freq=2.0), product of:
                0.12948982 = queryWeight, product of:
                  3.5018296 = idf(docFreq=3622, maxDocs=44218)
                  0.03697776 = queryNorm
                0.2708308 = fieldWeight in 4792, product of:
                  1.4142135 = tf(freq=2.0), with freq of:
                    2.0 = termFreq=2.0
                  3.5018296 = idf(docFreq=3622, maxDocs=44218)
                  0.0546875 = fieldNorm(doc=4792)
          0.33333334 = coord(1/3)
      0.25 = coord(1/4)
    
    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
  5. Müller, T.: Wissensrepräsentation mit semantischen Netzen im Bereich Luftfahrt (2006) 0.00
    0.0020874902 = product of:
      0.008349961 = sum of:
        0.008349961 = product of:
          0.025049882 = sum of:
            0.025049882 = weight(_text_:22 in 1670) [ClassicSimilarity], result of:
              0.025049882 = score(doc=1670,freq=2.0), product of:
                0.12948982 = queryWeight, product of:
                  3.5018296 = idf(docFreq=3622, maxDocs=44218)
                  0.03697776 = queryNorm
                0.19345059 = fieldWeight in 1670, product of:
                  1.4142135 = tf(freq=2.0), with freq of:
                    2.0 = termFreq=2.0
                  3.5018296 = idf(docFreq=3622, maxDocs=44218)
                  0.0390625 = fieldNorm(doc=1670)
          0.33333334 = coord(1/3)
      0.25 = coord(1/4)
    
    Date
    26. 9.2006 21:00:22