Search (20 results, page 1 of 1)

  • × year_i:[2000 TO 2010}
  • × theme_ss:"Begriffstheorie"
  1. Jouis, C.: Logic of relationships (2002) 0.03
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    Date
    1.12.2002 11:12:22
    Source
    The semantics of relationships: an interdisciplinary perspective. Eds: Green, R., C.A. Bean u. S.H. Myaeng
  2. Hetzler, B.: Visual analysis and exploration of relationships (2002) 0.01
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    Source
    The semantics of relationships: an interdisciplinary perspective. Eds: Green, R., C.A. Bean u. S.H. Myaeng
    Theme
    Semantisches Umfeld in Indexierung u. Retrieval
  3. Evens, M.: Thesaural relations in information retrieval (2002) 0.01
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    Source
    The semantics of relationships: an interdisciplinary perspective. Eds: Green, R., C.A. Bean u. S.H. Myaeng
    Theme
    Semantisches Umfeld in Indexierung u. Retrieval
  4. Hovy, E.: Comparing sets of semantic relations in ontologies (2002) 0.01
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    Source
    The semantics of relationships: an interdisciplinary perspective. Eds: Green, R., C.A. Bean u. S.H. Myaeng
    Theme
    Semantisches Umfeld in Indexierung u. Retrieval
  5. Bauer, G.: ¬Die vielseitigen Anwendungsmöglichkeiten des Kategorienprinzips bei der Wissensorganisation (2006) 0.01
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    Pages
    S.22-33
  6. Cruse, D.A.: Hyponymy and its varieties (2002) 0.01
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    Source
    The semantics of relationships: an interdisciplinary perspective. Eds: Green, R., C.A. Bean u. S.H. Myaeng
  7. Green, R.: Internally-structured conceptual models in cognitive semantics (2002) 0.01
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    Source
    The semantics of relationships: an interdisciplinary perspective. Eds: Green, R., C.A. Bean u. S.H. Myaeng
  8. Thellefsen, M.: ¬The dynamics of information representation and knowledge mediation (2006) 0.01
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    Source
    Knowledge organization for a global learning society: Proceedings of the 9th International ISKO Conference, 4-7 July 2006, Vienna, Austria. Hrsg.: G. Budin, C. Swertz u. K. Mitgutsch
  9. Rahmstorf, G.: Wortmodell und Begriffssprache als Basis des semantischen Retrievals (2000) 0.01
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    Source
    Informationskompetenz - Basiskompetenz in der Informationsgesellschaft: Proceedings des 7. Internationalen Symposiums für Informationswissenschaft (ISI 2000), Hrsg.: G. Knorz u. R. Kuhlen
  10. Fellbaum, C.: On the semantics of troponymy (2002) 0.01
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    Source
    The semantics of relationships: an interdisciplinary perspective. Eds: Green, R., C.A. Bean u. S.H. Myaeng
  11. Guarino, N.; Welty, C.: Identity and subsumption (2002) 0.01
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    Source
    The semantics of relationships: an interdisciplinary perspective. Eds: Green, R., C.A. Bean u. S.H. Myaeng
  12. Khoo, C.; Chan, S.; Niu, Y.: ¬The many facets of the cause-effect relation (2002) 0.01
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    Source
    The semantics of relationships: an interdisciplinary perspective. Eds: Green, R., C.A. Bean u. S.H. Myaeng
  13. Khoo, C.; Myaeng, S.H.: Identifying semantic relations in text for information retrieval and information extraction (2002) 0.01
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    Source
    The semantics of relationships: an interdisciplinary perspective. Eds: Green, R., C.A. Bean u. S.H. Myaeng
  14. Pribbenow, S.: Meronymic relationships : from classical mereology to complex part-whole relations (2002) 0.01
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    Source
    The semantics of relationships: an interdisciplinary perspective. Eds: Green, R., C.A. Bean u. S.H. Myaeng
  15. McCray, A.T.; Bodenreider, O.: ¬A conceptual framework for the biomedical domain (2002) 0.01
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    Source
    The semantics of relationships: an interdisciplinary perspective. Eds: Green, R., C.A. Bean u. S.H. Myaeng
  16. Olson, H.A.: How we construct subjects : a feminist analysis (2007) 0.01
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    Date
    11.12.2019 19:00:22
  17. Rahmstorf, G.: Wege zur Ontologie (2006) 0.01
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    Abstract
    Ontologie ist in der Philosophie die Auseinandersetzung mit der Frage, welche Arten von Gegenständen existieren und in welcher Weise sie existieren. Ein zentrales Thema ist z. B., ob es geistige Gegenstände, z. B. Gedanken, Ideen, Begriffe, Vorstellungen u. a. gibt und wie ihre Existenz begründet wird. Neuerdings wird mit dem Wort "Ontologie" eine andere, etwas konkretere Bedeutung verbunden. Unter einer Ontologie werden die allgemeinsten Begriffe eines Fachgebiets verstanden. So gehören zur Ontologie des Organischen u. a. "Pflanze", "Tier" und "Mensch". Wenn der Begriff "Tier" schon gegeben ist, lassen sich daraus andere Begriffe, z. B. "Wirbeltier", "Reptil", "Säugetier" usw. spezifizierend durch Angabe weiterer Merkmale bilden. Außerdem können Begriffsbeziehungen und andere formale Mittel zu Ontologien gehören. Ontologie ist danach die Methode, durch die die Begriffswelt eines Sachgebiets bestimmt wird, und insbesondere das Ergebnis dieser Methode: die Struktur aus Begriffen höchster Allgemeinheit, die mit dieser Methode erstellt wird. Das Wort "Ontologie" kann jedoch unterschiedlich verstanden wird. Es bezeichnet auch die Gesamtheit aller Begriffe, die zum Untersuchungsgegenstand gehören. Die Ontologie umfasst dann alles, was an Begriffen aus einer bestimmten Aufgabenstellung betrachtet bzw. erarbeitet wird. Zu einer Ontologie der Elektronik würden alle Begriffe dieses Gebietes gehören. Mit einem so weit gefassten Verständnis des Wortes "Ontologie" wird die Fokussierung auf die Kategorien größter Allgemeinheit der hierarchisch gegliederten Begriffswelt aufgegeben. Außerdem würde eine so verstandene Ontologie mit der Tatsache der Unabgrenzbarkeit des Wortschatzes belastet werden. Komposita können im Deutschen quasi unbegrenzt erweitert werden. Es gibt nicht nur den Kamin und den Kaminfeger, sondern auch die Kaminfegerarbeitskleidungsreinigungsfirma und dergleichen mehr. Komposita sind unverzichtbar. Ihre maximale Länge ist nicht festgelegt. Die Benennungen für Stoffe in der Chemie zeigen, dass man in dieser Fachsprache durchaus problemlos mit sehr langen Zusammensetzungen kommuniziert. Aber die Ontologen werden nicht daran interessiert sein, ihre Untersuchungen bis in die Tiefen aller Fachgebiete auszudehnen. Kurzum "Ontologie" sollte sich auf Begriffe höchster Allgemeinheit beziehen. Das entspricht der engeren Bedeutung des Wortes "Ontologie". Die Unterbegriffe dieser Top-Level-Begriffe können natürlich ebenfalls für Ontologen von Interesse sein, weil sie zeigen, welches Begriffsbildungspotenzial die verschiedenen Top-Level-Begriffe haben. Der Schwerpunkt des Interesses der Ontologen sollte aber auf den Begriffen liegen, die nicht weiter zurückführbar sind.
  18. Schmitz-Esser, W.: EXPO-INFO 2000 : Visuelles Besucherinformationssystem für Weltausstellungen (2000) 0.01
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    Theme
    Semantisches Umfeld in Indexierung u. Retrieval
  19. ¬The semantics of relationships : an interdisciplinary perspective (2002) 0.01
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    Editor
    Green, R., C.A. Bean u. S.H. Myaeng
  20. Working with conceptual structures : contributions to ICCS 2000. 8th International Conference on Conceptual Structures: Logical, Linguistic, and Computational Issues. Darmstadt, August 14-18, 2000 (2000) 0.00
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    Content
    Concepts & Language: Knowledge organization by procedures of natural language processing. A case study using the method GABEK (J. Zelger, J. Gadner) - Computer aided narrative analysis using conceptual graphs (H. Schärfe, P. 0hrstrom) - Pragmatic representation of argumentative text: a challenge for the conceptual graph approach (H. Irandoust, B. Moulin) - Conceptual graphs as a knowledge representation core in a complex language learning environment (G. Angelova, A. Nenkova, S. Boycheva, T. Nikolov) - Conceptual Modeling and Ontologies: Relationships and actions in conceptual categories (Ch. Landauer, K.L. Bellman) - Concept approximations for formal concept analysis (J. Saquer, J.S. Deogun) - Faceted information representation (U. Priß) - Simple concept graphs with universal quantifiers (J. Tappe) - A framework for comparing methods for using or reusing multiple ontologies in an application (J. van ZyI, D. Corbett) - Designing task/method knowledge-based systems with conceptual graphs (M. Leclère, F.Trichet, Ch. Choquet) - A logical ontology (J. Farkas, J. Sarbo) - Algorithms and Tools: Fast concept analysis (Ch. Lindig) - A framework for conceptual graph unification (D. Corbett) - Visual CP representation of knowledge (H.D. Pfeiffer, R.T. Hartley) - Maximal isojoin for representing software textual specifications and detecting semantic anomalies (Th. Charnois) - Troika: using grids, lattices and graphs in knowledge acquisition (H.S. Delugach, B.E. Lampkin) - Open world theorem prover for conceptual graphs (J.E. Heaton, P. Kocura) - NetCare: a practical conceptual graphs software tool (S. Polovina, D. Strang) - CGWorld - a web based workbench for conceptual graphs management and applications (P. Dobrev, K. Toutanova) - Position papers: The edition project: Peirce's existential graphs (R. Mülller) - Mining association rules using formal concept analysis (N. Pasquier) - Contextual logic summary (R Wille) - Information channels and conceptual scaling (K.E. Wolff) - Spatial concepts - a rule exploration (S. Rudolph) - The TEXT-TO-ONTO learning environment (A. Mädche, St. Staab) - Controlling the semantics of metadata on audio-visual documents using ontologies (Th. Dechilly, B. Bachimont) - Building the ontological foundations of a terminology from natural language to conceptual graphs with Ribosome, a knowledge extraction system (Ch. Jacquelinet, A. Burgun) - CharGer: some lessons learned and new directions (H.S. Delugach) - Knowledge management using conceptual graphs (W.K. Pun)