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  1. 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) 0.03
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    Abstract
    The 8th International Conference on Conceptual Structures - Logical, Linguistic, and Computational Issues (ICCS 2000) brings together a wide range of researchers and practitioners working with conceptual structures. During the last few years, the ICCS conference series has considerably widened its scope on different kinds of conceptual structures, stimulating research across domain boundaries. We hope that this stimulation is further enhanced by ICCS 2000 joining the long tradition of conferences in Darmstadt with extensive, lively discussions. This volume consists of contributions presented at ICCS 2000, complementing the volume "Conceptual Structures: Logical, Linguistic, and Computational Issues" (B. Ganter, G.W. Mineau (Eds.), LNAI 1867, Springer, Berlin-Heidelberg 2000). It contains submissions reviewed by the program committee, and position papers. We wish to express our appreciation to all the authors of submitted papers, to the general chair, the program chair, the editorial board, the program committee, and to the additional reviewers for making ICCS 2000 a valuable contribution in the knowledge processing research field. Special thanks go to the local organizers for making the conference an enjoyable and inspiring event. We are grateful to Darmstadt University of Technology, the Ernst Schröder Center for Conceptual Knowledge Processing, the Center for Interdisciplinary Studies in Technology, the Deutsche Forschungsgemeinschaft, Land Hessen, and NaviCon GmbH for their generous support
    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)
    Pages
    315 S
    Type
    s
  2. Conceptual structures : logical, linguistic, and computational issues. 8th International Conference on Conceptual Structures, ICCS 2000, Darmstadt, Germany, August 14-18, 2000 (2000) 0.01
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    Abstract
    Computer scientists create models of a perceived reality. Through AI techniques, these models aim at providing the basic support for emulating cognitive behavior such as reasoning and learning, which is one of the main goals of the Al research effort. Such computer models are formed through the interaction of various acquisition and inference mechanisms: perception, concept learning, conceptual clustering, hypothesis testing, probabilistic inference, etc., and are represented using different paradigms tightly linked to the processes that use them. Among these paradigms let us cite: biological models (neural nets, genetic programming), logic-based models (first-order logic, modal logic, rule-based systems), virtual reality models (object systems, agent systems), probabilistic models (Bayesian nets, fuzzy logic), linguistic models (conceptual dependency graphs, language-based rep resentations), etc. One of the strengths of the Conceptual Graph (CG) theory is its versatility in terms of the representation paradigms under which it falls. It can be viewed and therefore used, under different representation paradigms, which makes it a popular choice for a wealth of applications. Its full coupling with different cognitive processes lead to the opening of the field toward related research communities such as the Description Logic, Formal Concept Analysis, and Computational Linguistic communities. We now see more and more research results from one community enrich the other, laying the foundations of common philosophical grounds from which a successful synergy can emerge. ICCS 2000 embodies this spirit of research collaboration. It presents a set of papers that we believe, by their exposure, will benefit the whole community. For instance, the technical program proposes tracks on Conceptual Ontologies, Language, Formal Concept Analysis, Computational Aspects of Conceptual Structures, and Formal Semantics, with some papers on pragmatism and human related aspects of computing. Never before was the program of ICCS formed by so heterogeneously rooted theories of knowledge representation and use. We hope that this swirl of ideas will benefit you as much as it already has benefited us while putting together this program
    Content
    Concepts and Language: The Role of Conceptual Structure in Human Evolution (Keith Devlin) - Concepts in Linguistics - Concepts in Natural Language (Gisela Harras) - Patterns, Schemata, and Types: Author Support through Formalized Experience (Felix H. Gatzemeier) - Conventions and Notations for Knowledge Representation and Retrieval (Philippe Martin) - Conceptual Ontology: Ontology, Metadata, and Semiotics (John F. Sowa) - Pragmatically Yours (Mary Keeler) - Conceptual Modeling for Distributed Ontology Environments (Deborah L. McGuinness) - Discovery of Class Relations in Exception Structured Knowledge Bases (Hendra Suryanto, Paul Compton) - Conceptual Graphs: Perspectives: CGs Applications: Where Are We 7 Years after the First ICCS ? (Michel Chein, David Genest) - The Engineering of a CC-Based System: Fundamental Issues (Guy W. Mineau) - Conceptual Graphs, Metamodeling, and Notation of Concepts (Olivier Gerbé, Guy W. Mineau, Rudolf K. Keller) - Knowledge Representation and Reasonings: Based on Graph Homomorphism (Marie-Laure Mugnier) - User Modeling Using Conceptual Graphs for Intelligent Agents (James F. Baldwin, Trevor P. Martin, Aimilia Tzanavari) - Towards a Unified Querying System of Both Structured and Semi-structured Imprecise Data Using Fuzzy View (Patrice Buche, Ollivier Haemmerlé) - Formal Semantics of Conceptual Structures: The Extensional Semantics of the Conceptual Graph Formalism (Guy W. Mineau) - Semantics of Attribute Relations in Conceptual Graphs (Pavel Kocura) - Nested Concept Graphs and Triadic Power Context Families (Susanne Prediger) - Negations in Simple Concept Graphs (Frithjof Dau) - Extending the CG Model by Simulations (Jean-François Baget) - Contextual Logic and Formal Concept Analysis: Building and Structuring Description Logic Knowledge Bases: Using Least Common Subsumers and Concept Analysis (Franz Baader, Ralf Molitor) - On the Contextual Logic of Ordinal Data (Silke Pollandt, Rudolf Wille) - Boolean Concept Logic (Rudolf Wille) - Lattices of Triadic Concept Graphs (Bernd Groh, Rudolf Wille) - Formalizing Hypotheses with Concepts (Bernhard Ganter, Sergei 0. Kuznetsov) - Generalized Formal Concept Analysis (Laurent Chaudron, Nicolas Maille) - A Logical Generalization of Formal Concept Analysis (Sébastien Ferré, Olivier Ridoux) - On the Treatment of Incomplete Knowledge in Formal Concept Analysis (Peter Burmeister, Richard Holzer) - Conceptual Structures in Practice: Logic-Based Networks: Concept Graphs and Conceptual Structures (Peter W. Eklund) - Conceptual Knowledge Discovery and Data Analysis (Joachim Hereth, Gerd Stumme, Rudolf Wille, Uta Wille) - CEM - A Conceptual Email Manager (Richard Cole, Gerd Stumme) - A Contextual-Logic Extension of TOSCANA (Peter Eklund, Bernd Groh, Gerd Stumme, Rudolf Wille) - A Conceptual Graph Model for W3C Resource Description Framework (Olivier Corby, Rose Dieng, Cédric Hébert) - Computational Aspects of Conceptual Structures: Computing with Conceptual Structures (Bernhard Ganter) - Symmetry and the Computation of Conceptual Structures (Robert Levinson) An Introduction to SNePS 3 (Stuart C. Shapiro) - Composition Norm Dynamics Calculation with Conceptual Graphs (Aldo de Moor) - From PROLOG++ to PROLOG+CG: A CG Object-Oriented Logic Programming Language (Adil Kabbaj, Martin Janta-Polczynski) - A Cost-Bounded Algorithm to Control Events Generalization (Gaël de Chalendar, Brigitte Grau, Olivier Ferret)
    Pages
    XI,568 S
    Type
    s
  3. Linguistik und neue Medien (1998) 0.01
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    Editor
    Heyer, G. u. C. Wolff
    Pages
    260 S
    Type
    s
  4. Chomsky, N.: Reflexionen über die Sprache (1977) 0.01
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    Issue
    Übers. von G. Meggle u. M. Ulkan
    Pages
    314 S
  5. Adamzik, K.: Sprache : Wege zum Verstehen (2001) 0.01
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    Pages
    VIII,335 S
  6. Texte verstehen : Konzepte, Methoden, Werkzeuge (1994) 0.01
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    Editor
    Boehm, A., A. Mengel u. T. Muhr
    Pages
    384 S
    Type
    s
  7. Miller, G.A.: Wörter : Streifzüge durch die Psycholinguistik (1993) 0.01
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    Abstract
    Wörter sind der sprachliche Ausdruck unseres Denkens, von uns selbst geschaffen, und doch etwas, das wir selten einer näheren Betrachtung unterziehen. Dabei kann uns gerade diese Betrachtung einiges darüber sagen, was in unseren Gehirnen vor sich geht. Die Sprachforschung hat in den letzten Jahrzehnten durch die Ansätze der Kognitionspsychologie neuen Schwung bekommen - und Georg A. Miller hat als einer der Begründer der modernen Psycholinguistik einen nicht unwesentlichen Anteil daran gehabt. In diesem Buch erzühlt er, oft geürzt mit seinem ganz besonderen Humor, was die Linguistik im Reich der Wörter so alles entdeckt hat. Miller führt dem Leser die verschiedenen Seiten von Wörtern vor Augen; jedes einzelne davon ist das Zusammenspiel einer Äußerung - in der phonetischen Aussprache - , einer Bedeutung - in der Semantik - und einer Rolle im Satz - in der Syntax. Diese drei Seiten sieht Miller als Einheit, wobei er dem Leser die Theorien und Methoden, mit denen die Forschung den Wörtern zu Leibe rückt, anschaulich vorstellt
    Issue
    Hrsg. u. übers. aus dem Amerikanischen von J. Grabowski u. C. Fellbaum.
    Pages
    315 S
  8. Heringer, H.J.; Strecker, B.; Wimmer, R.: Syntax : Fragen, Lösungen, Alternativen (1980) 0.01
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    Pages
    384 S
  9. Fischer, W.L.: Äquivalenz- und Toleranzstrukturen in der Linguistik : zur Theorie der Synonyma (1973) 0.00
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    Abstract
    Wir beschränken uns daher auf die Darstellung des sprachlichen Feldbegriffes durch ein mathematisches Modell ... bzw.: wir definieren das sprachliche Feld über ein mathematisches Modell. Die Feldeigenschaften in einem System sprachlicher Entitäten sind zunächst solche des gegenseitigen Benachbartseins. Wir können von syntaktischen und/oder semantischen Umgebungen sprechen, in denen jeweils alle zu einem Wort (einer sprachlichen Einheit) synonymen oder sinnverwandten oder strukturverwandten Worte (Einheiten) liegen. Die Eigenschaften von Wortfeldern sind also in dieser Sicht vornehmlich topologischer Natur. Dabei bleibt es gleichgültig, welchem Autor man folgt, wenn man den Feldbegriff in der Sprache zu erfassen trachtet. Immer sind es Umgebungs-, Nachbarschaftsrelationen und fundierende Toleranzrelationen, die als formaler, sprich: mathematischer Kern inhärent sind. Bemerkungen über die Möglichkeit einer algebraisch-topologischen Kennzeichnung von Wortfeldsystemen beschließen Teil 3. In Teil 4. stellen wir den Begriff der k-Toleranzrelation vor. Relationen dieser Art stehen in gewissem Sinne zwischen den Äquivalenzrelationen und den Toleranzrelationen. Mit Modellbildungen auf der Basis von k-Toleranzrelationen kommt man der Realität der Sprache vielleicht am nächsten. Für den Problemkreis der Synonymität bedeutet ihre Einführung, daß man jetzt weder die Gültigkeit strenger Äquivalenz noch die schwache Bedingung der Ununterscheidbarkeit fordert, sondern nur eine k-Ununterscheidbarkeit. Relationentheoretisch entspricht dem die Forderung einer abgeschwächten Transitivität. In Teil 5. deuten wir an, wie man die in Teil 3. angegebenen Definitionsschemata für Synonyma auf der Grundlage der k-Toleranzräume verschärfen kann.
    Pages
    90 S
  10. Bünting, K.-D.: Einführung in die Linguistik (1987) 0.00
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    Pages
    270 S
  11. Pilch, H.: Empirical linguistics (1976) 0.00
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    Abstract
    The book is about real languages and the way to study them, as they are spoken and written by real people in different social situations. The linguist listens to them, using scientific methodology to analyse what he hears. This book explains a wide range of linguistic phenomena - including polyglott societies, lingzistic pathology, the reconstruction of unrecorded history - their relevance to other branches of science and their practical applicabiblity. It is couched in straightforward terms intelligible to a general audience, including students of modern language departments
    Pages
    246 S
  12. Linke, A.; Nussbaumer, M.; Portmann, P.R.; Willi, U.: Studienbuch Linguistik (1994) 0.00
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    Pages
    VII,422 S
  13. Geckeler, H.: Strukturelle Semantik und Wortfeldtheorie (1982) 0.00
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    XIV,255 S
  14. Lerat, P.: ¬Les langues spécialisées : linguistique nouvelle (1995) 0.00
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    Footnote
    Rez. in: Knowledge organization 23(1996) no.2, S.115-116 (H. Leclerq)
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    201 S
  15. Chafe, W.L.: Meaning and the structure of language (1980) 0.00
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    Date
    22. 4.2007 12:21:29
    Pages
    360 S
  16. Chomsky, N.: Aspects of the theory of syntax (1965) 0.00
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    Date
    6. 1.1999 10:29:22
  17. Vater, H.: Einführung in die Textlinguistik : Struktur und Verstehen von Texten (2001) 0.00
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    221 S
  18. Hutchins, W.J.: Languages of indexing and classification : a linguistic study of structures and functions (1978) 0.00
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    VIII,148 S
  19. Chomsky, N.: Aspekte der Syntax-Theorie (1972) 0.00
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    Classification
    ST 510 Informatik / Monographien / Einzelne Anwendungen der Datenverarbeitung / Wirtschaftsinformatik / Einzelne Programme (A-Z)
    Pages
    316 S
    RVK
    ST 510 Informatik / Monographien / Einzelne Anwendungen der Datenverarbeitung / Wirtschaftsinformatik / Einzelne Programme (A-Z)
  20. Hörmann, H.: Sprache (1977) 0.00
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Years

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