Search (10 results, page 1 of 1)

  • × author_ss:"Gödert, W."
  • × year_i:[2010 TO 2020}
  1. Gödert, W.; Lepsky, K.: Informationelle Kompetenz : ein humanistischer Entwurf (2019) 0.03
    0.032234594 = product of:
      0.09670378 = sum of:
        0.09670378 = product of:
          0.29011133 = sum of:
            0.29011133 = weight(_text_:3a in 5955) [ClassicSimilarity], result of:
              0.29011133 = score(doc=5955,freq=2.0), product of:
                0.4424535 = queryWeight, product of:
                  8.478011 = idf(docFreq=24, maxDocs=44218)
                  0.05218836 = queryNorm
                0.65568775 = fieldWeight in 5955, product of:
                  1.4142135 = tf(freq=2.0), with freq of:
                    2.0 = termFreq=2.0
                  8.478011 = idf(docFreq=24, maxDocs=44218)
                  0.0546875 = fieldNorm(doc=5955)
          0.33333334 = coord(1/3)
      0.33333334 = coord(1/3)
    
    Footnote
    Rez. in: Philosophisch-ethische Rezensionen vom 09.11.2019 (Jürgen Czogalla), Unter: https://philosophisch-ethische-rezensionen.de/rezension/Goedert1.html. In: B.I.T. online 23(2020) H.3, S.345-347 (W. Sühl-Strohmenger) [Unter: https%3A%2F%2Fwww.b-i-t-online.de%2Fheft%2F2020-03-rezensionen.pdf&usg=AOvVaw0iY3f_zNcvEjeZ6inHVnOK]. In: Open Password Nr. 805 vom 14.08.2020 (H.-C. Hobohm) [Unter: https://www.password-online.de/?mailpoet_router&endpoint=view_in_browser&action=view&data=WzE0MywiOGI3NjZkZmNkZjQ1IiwwLDAsMTMxLDFd].
  2. Gödert, W.: ¬An ontology-based model for indexing and retrieval (2016) 0.03
    0.02907518 = product of:
      0.043612767 = sum of:
        0.02960988 = weight(_text_:of in 2777) [ClassicSimilarity], result of:
          0.02960988 = score(doc=2777,freq=18.0), product of:
            0.08160993 = queryWeight, product of:
              1.5637573 = idf(docFreq=25162, maxDocs=44218)
              0.05218836 = queryNorm
            0.36282203 = fieldWeight in 2777, product of:
              4.2426405 = tf(freq=18.0), with freq of:
                18.0 = termFreq=18.0
              1.5637573 = idf(docFreq=25162, maxDocs=44218)
              0.0546875 = fieldNorm(doc=2777)
        0.0140028875 = product of:
          0.028005775 = sum of:
            0.028005775 = weight(_text_:science in 2777) [ClassicSimilarity], result of:
              0.028005775 = score(doc=2777,freq=2.0), product of:
                0.13747036 = queryWeight, product of:
                  2.6341193 = idf(docFreq=8627, maxDocs=44218)
                  0.05218836 = queryNorm
                0.20372227 = fieldWeight in 2777, product of:
                  1.4142135 = tf(freq=2.0), with freq of:
                    2.0 = termFreq=2.0
                  2.6341193 = idf(docFreq=8627, maxDocs=44218)
                  0.0546875 = fieldNorm(doc=2777)
          0.5 = coord(1/2)
      0.6666667 = coord(2/3)
    
    Abstract
    The presented ontology-based model for indexing and retrieval combines the methods and experiences of traditional indexing languages with their cognitively interpreted entities and relationships with the strengths and possibilities of formal knowledge representation. The core component of the model uses inferences along the paths of typed relations between the entities of a knowledge representation for enabling the determination of result sets in the context of retrieval processes. A proposal for a general, but condensed, inventory of typed relations is given. The entities are arranged in aspect-oriented facets to ensure a consistent hierarchical structure. The possible consequences for indexing and retrieval are discussed.
    Source
    Journal of the Association for Information Science and Technology. 67(2016) no.3, S.594-609
  3. Gödert, W.; Hubrich, J.; Nagelschmidt, M.: Semantic knowledge representation for information retrieval (2014) 0.02
    0.023910332 = product of:
      0.035865497 = sum of:
        0.014653091 = weight(_text_:of in 987) [ClassicSimilarity], result of:
          0.014653091 = score(doc=987,freq=6.0), product of:
            0.08160993 = queryWeight, product of:
              1.5637573 = idf(docFreq=25162, maxDocs=44218)
              0.05218836 = queryNorm
            0.17955035 = fieldWeight in 987, product of:
              2.4494898 = tf(freq=6.0), with freq of:
                6.0 = termFreq=6.0
              1.5637573 = idf(docFreq=25162, maxDocs=44218)
              0.046875 = fieldNorm(doc=987)
        0.021212406 = product of:
          0.042424813 = sum of:
            0.042424813 = weight(_text_:22 in 987) [ClassicSimilarity], result of:
              0.042424813 = score(doc=987,freq=2.0), product of:
                0.18275474 = queryWeight, product of:
                  3.5018296 = idf(docFreq=3622, maxDocs=44218)
                  0.05218836 = queryNorm
                0.23214069 = fieldWeight in 987, product of:
                  1.4142135 = tf(freq=2.0), with freq of:
                    2.0 = termFreq=2.0
                  3.5018296 = idf(docFreq=3622, maxDocs=44218)
                  0.046875 = fieldNorm(doc=987)
          0.5 = coord(1/2)
      0.6666667 = coord(2/3)
    
    Abstract
    This book covers the basics of semantic web technologies and indexing languages, and describes their contribution to improve languages as a tool for subject queries and knowledge exploration. The book is relevant to information scientists, knowledge workers and indexers. It provides a suitable combination of theoretical foundations and practical applications.
    Content
    Introduction: envisioning semantic information spacesIndexing and knowledge organization -- Semantic technologies for knowledge representation -- Information retrieval and knowledge exploration -- Approaches to handle heterogeneity -- Problems with establishing semantic interoperability -- Formalization in indexing languages -- Typification of semantic relations -- Inferences in retrieval processes -- Semantic interoperability and inferences -- Remaining research questions.
    Date
    23. 7.2017 13:49:22
  4. Gödert, W.: Facets and typed relations as tools for reasoning processes in information retrieval (2014) 0.02
    0.018640747 = product of:
      0.02796112 = sum of:
        0.0139582325 = weight(_text_:of in 1565) [ClassicSimilarity], result of:
          0.0139582325 = score(doc=1565,freq=4.0), product of:
            0.08160993 = queryWeight, product of:
              1.5637573 = idf(docFreq=25162, maxDocs=44218)
              0.05218836 = queryNorm
            0.17103596 = fieldWeight in 1565, product of:
              2.0 = tf(freq=4.0), with freq of:
                4.0 = termFreq=4.0
              1.5637573 = idf(docFreq=25162, maxDocs=44218)
              0.0546875 = fieldNorm(doc=1565)
        0.0140028875 = product of:
          0.028005775 = sum of:
            0.028005775 = weight(_text_:science in 1565) [ClassicSimilarity], result of:
              0.028005775 = score(doc=1565,freq=2.0), product of:
                0.13747036 = queryWeight, product of:
                  2.6341193 = idf(docFreq=8627, maxDocs=44218)
                  0.05218836 = queryNorm
                0.20372227 = fieldWeight in 1565, product of:
                  1.4142135 = tf(freq=2.0), with freq of:
                    2.0 = termFreq=2.0
                  2.6341193 = idf(docFreq=8627, maxDocs=44218)
                  0.0546875 = fieldNorm(doc=1565)
          0.5 = coord(1/2)
      0.6666667 = coord(2/3)
    
    Abstract
    Faceted arrangement of entities and typed relations for representing different associations between the entities are established tools in knowledge representation. In this paper, a proposal is being discussed combining both tools to draw inferences along relational paths. This approach may yield new benefit for information retrieval processes, especially when modeled for heterogeneous environments in the Semantic Web. Faceted arrangement can be used as a selection tool for the semantic knowledge modeled within the knowledge representation. Typed relations between the entities of different facets can be used as restrictions for selecting them across the facets.
    Series
    Communications in computer and information science; 478
  5. Gödert, W.: ¬An ontology-based model for indexing and retrieval (2013) 0.01
    0.010634843 = product of:
      0.03190453 = sum of:
        0.03190453 = weight(_text_:of in 1510) [ClassicSimilarity], result of:
          0.03190453 = score(doc=1510,freq=16.0), product of:
            0.08160993 = queryWeight, product of:
              1.5637573 = idf(docFreq=25162, maxDocs=44218)
              0.05218836 = queryNorm
            0.39093933 = fieldWeight in 1510, product of:
              4.0 = tf(freq=16.0), with freq of:
                16.0 = termFreq=16.0
              1.5637573 = idf(docFreq=25162, maxDocs=44218)
              0.0625 = fieldNorm(doc=1510)
      0.33333334 = coord(1/3)
    
    Abstract
    Starting from an unsolved problem of information retrieval this paper presents an ontology-based model for indexing and retrieval. The model combines the methods and experiences of cognitive-to-interpret indexing languages with the strengths and possibilities of formal knowledge representation. The core component of the model uses inferences along the paths of typed relations between the entities of a knowledge representation for enabling the determination of hit quantities in the context of retrieval processes. The entities are arranged in aspect-oriented facets to ensure a consistent hierarchical structure. The possible consequences for indexing and retrieval are discussed.
  6. Gödert, W.; Lepsky, K.: Reception of externalized knowledge : a constructivistic model based on Popper's Three Worlds and Searle's Collective Intentionality (2019) 0.01
    0.010634843 = product of:
      0.03190453 = sum of:
        0.03190453 = weight(_text_:of in 5205) [ClassicSimilarity], result of:
          0.03190453 = score(doc=5205,freq=16.0), product of:
            0.08160993 = queryWeight, product of:
              1.5637573 = idf(docFreq=25162, maxDocs=44218)
              0.05218836 = queryNorm
            0.39093933 = fieldWeight in 5205, product of:
              4.0 = tf(freq=16.0), with freq of:
                16.0 = termFreq=16.0
              1.5637573 = idf(docFreq=25162, maxDocs=44218)
              0.0625 = fieldNorm(doc=5205)
      0.33333334 = coord(1/3)
    
    Abstract
    We provide a model for the reception of knowledge from externalized information sources. The model is based on a cognitive understanding of information processing and draws up ideas of an exchange of information in communication processes. Karl Popper's three-world theory with its orientation on falsifiable scientific knowledge is extended by John Searle's concept of collective intentionality. This allows a consistent description of externalization and reception of knowledge including scientific knowledge as well as everyday knowledge.
  7. Gödert, W.: Detecting multiword phrases in mathematical text corpora (2012) 0.01
    0.009947985 = product of:
      0.029843956 = sum of:
        0.029843956 = weight(_text_:of in 466) [ClassicSimilarity], result of:
          0.029843956 = score(doc=466,freq=14.0), product of:
            0.08160993 = queryWeight, product of:
              1.5637573 = idf(docFreq=25162, maxDocs=44218)
              0.05218836 = queryNorm
            0.36569026 = fieldWeight in 466, product of:
              3.7416575 = tf(freq=14.0), with freq of:
                14.0 = termFreq=14.0
              1.5637573 = idf(docFreq=25162, maxDocs=44218)
              0.0625 = fieldNorm(doc=466)
      0.33333334 = coord(1/3)
    
    Abstract
    We present an approach for detecting multiword phrases in mathematical text corpora. The method used is based on characteristic features of mathematical terminology. It makes use of a software tool named Lingo which allows to identify words by means of previously defined dictionaries for specific word classes as adjectives, personal names or nouns. The detection of multiword groups is done algorithmically. Possible advantages of the method for indexing and information retrieval and conclusions for applying dictionary-based methods of automatic indexing instead of stemming procedures are discussed.
  8. Gödert, W.; Lepsky, K.; Nagelschmidt, M.: Informationserschließung und Automatisches Indexieren : ein Lehr- und Arbeitsbuch (2011) 0.01
    0.0066680415 = product of:
      0.020004123 = sum of:
        0.020004123 = product of:
          0.040008247 = sum of:
            0.040008247 = weight(_text_:science in 2550) [ClassicSimilarity], result of:
              0.040008247 = score(doc=2550,freq=8.0), product of:
                0.13747036 = queryWeight, product of:
                  2.6341193 = idf(docFreq=8627, maxDocs=44218)
                  0.05218836 = queryNorm
                0.2910318 = fieldWeight in 2550, product of:
                  2.828427 = tf(freq=8.0), with freq of:
                    8.0 = termFreq=8.0
                  2.6341193 = idf(docFreq=8627, maxDocs=44218)
                  0.0390625 = fieldNorm(doc=2550)
          0.5 = coord(1/2)
      0.33333334 = coord(1/3)
    
    LCSH
    Computer science
    Library science
    Subject
    Computer science
    Library science
  9. Boteram, F.; Gödert, W.; Hubrich, J.: Semantic interoperability and retrieval paradigms (2010) 0.01
    0.0065124854 = product of:
      0.019537456 = sum of:
        0.019537456 = weight(_text_:of in 3362) [ClassicSimilarity], result of:
          0.019537456 = score(doc=3362,freq=6.0), product of:
            0.08160993 = queryWeight, product of:
              1.5637573 = idf(docFreq=25162, maxDocs=44218)
              0.05218836 = queryNorm
            0.23940048 = fieldWeight in 3362, product of:
              2.4494898 = tf(freq=6.0), with freq of:
                6.0 = termFreq=6.0
              1.5637573 = idf(docFreq=25162, maxDocs=44218)
              0.0625 = fieldNorm(doc=3362)
      0.33333334 = coord(1/3)
    
    Abstract
    This paper presents a new approach to understanding how indexing strategies, models for interoperability and retrieval paradigms interact in information systems and how this can be used to support the design and implementation of components of a semantic navigation for information retrieval systems.
    Source
    Paradigms and conceptual systems in knowledge organization: Proceedings of the Eleventh International ISKO Conference, 23-26 February 2010 Rome, Italy. Edited by Claudio Gnoli and Fulvio Mazzocchi
  10. Gödert, W.: Facets and typed relations as tools for reasoning processes in information retrieval (2014) 0.00
    0.004652744 = product of:
      0.0139582325 = sum of:
        0.0139582325 = weight(_text_:of in 3816) [ClassicSimilarity], result of:
          0.0139582325 = score(doc=3816,freq=4.0), product of:
            0.08160993 = queryWeight, product of:
              1.5637573 = idf(docFreq=25162, maxDocs=44218)
              0.05218836 = queryNorm
            0.17103596 = fieldWeight in 3816, product of:
              2.0 = tf(freq=4.0), with freq of:
                4.0 = termFreq=4.0
              1.5637573 = idf(docFreq=25162, maxDocs=44218)
              0.0546875 = fieldNorm(doc=3816)
      0.33333334 = coord(1/3)
    
    Abstract
    Faceted arrangement of entities and typed relations for representing different associations between the entities are established tools in knowledge representation. In this paper, a proposal is being discussed combining both tools to draw inferences along relational paths. This approach may yield new benefit for information retrieval processes, especially when modeled for heterogeneous environments in the Semantic Web. Faceted arrangement can be used as a selection tool for the semantic knowledge modeled within the knowledge representation. Typed relations between the entities of different facets can be used as restrictions for selecting them across the facets.