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1. |
Record Nr. |
UNINA9910485038103321 |
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Autore |
Schmid Hans Ulrich |
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Titolo |
Einführung in die deutsche Sprachgeschichte / / von Hans Ulrich Schmid |
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Pubbl/distr/stampa |
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Stuttgart : , : J.B. Metzler : , : Imprint : J.B. Metzler, , 2017 |
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ISBN |
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Edizione |
[3rd ed. 2017.] |
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Descrizione fisica |
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1 online resource (IX, 314 S.) |
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Disciplina |
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Soggetti |
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Germanic languages |
Historical linguistics |
Germanic Languages |
Historical Linguistics |
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Lingua di pubblicazione |
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Formato |
Materiale a stampa |
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Livello bibliografico |
Monografia |
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Nota di contenuto |
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1. Einleitung -- 2. Perioden der deutschen Sprachgeschichte -- 3. Laut und Schrift -- 4. Wortformen -- 5. Satzbau -- 6. Wortschatz -- 7. Anhang. |
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Sommario/riassunto |
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Diese Einführung bietet einen Überblick über die Entwicklung der deutschen Sprache vom Althochdeutschen bis zum Frühneuhochdeutschen mit Ausblicken auf die jüngere Sprachgeschichte und die Gegenwartssprache. Der Autor dokumentiert wichtige Sprachstufen anhand zahlreicher Analysebeispiele und stellt die Sprachentwicklung epochenübergreifend auf den verschiedenen Ebenen dar: Laut und Schrift, Wortformen, Satzbau und Wortschatz. Mit Abbildungen und Tabellen (zu Laut- und Flexionsparadigmen) sowie kommentierten Textbeispielen. - Für die dritte Auflage wurde der Band durchgesehen, aktualisiert und insbesondere das Kapitel zur Syntax überarbeitet. |
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2. |
Record Nr. |
UNINA9911019919103321 |
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Autore |
Davies J (N. John) |
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Titolo |
Semantic Web technologies : trends and research in ontology-based systems / / John Davies, Rudi Studer, Paul Warren |
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Pubbl/distr/stampa |
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Chichester, England ; ; Hoboken, NJ, : John Wiley & Sons, c2006 |
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ISBN |
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9786610448883 |
9781280448881 |
1280448881 |
9780470030332 |
047003033X |
9780470030349 |
0470030348 |
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Descrizione fisica |
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1 online resource (328 p.) |
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Altri autori (Persone) |
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StuderRudi |
WarrenPaul (Paul W.) |
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Disciplina |
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Soggetti |
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Lingua di pubblicazione |
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Formato |
Materiale a stampa |
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Livello bibliografico |
Monografia |
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Note generali |
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Description based upon print version of record. |
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Nota di bibliografia |
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Includes bibliographical references and index. |
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Nota di contenuto |
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Semantic Web Technologies; Contents; Foreword; 1. Introduction; 1.1. Semantic Web Technologies; 1.2. The Goal of the Semantic Web; 1.3. Ontologies and Ontology Languages; 1.4. Creating and Managing Ontologies; 1.5. Using Ontologies; 1.6. Applications; 1.7. Developing the Semantic Web; References; 2. Knowledge Discovery for Ontology Construction; 2.1. Introduction; 2.2. Knowledge Discovery; 2.3. Ontology Definition; 2.4. Methodology for Semi-automatic Ontology Construction; 2.5. Ontology Learning Scenarios; 2.6. Using Knowledge Discovery for Ontology Learning; 2.6.1. Unsupervised Learning |
2.6.2. Semi-Supervised, Supervised, and Active Learning2.6.3. Stream Mining and Web Mining; 2.6.4. Focused Crawling; 2.6.5. Data Visualization; 2.7. Related Work on Ontology Construction; 2.8. Discussion and Conclusion; Acknowledgments; References; 3. Semantic Annotation and Human Language Technology; 3.1. Introduction; 3.2. Information Extraction: A Brief Introduction; 3.2.1. Five Types of IE; 3.2.2. Entities; 3.2.3. Mentions; 3.2.4. Descriptions; 3.2.5. Relations; |
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3.2.6. Events; 3.3. Semantic Annotation; 3.3.1. What is Ontology-Based Information Extraction |
3.4. Applying 'Traditional' IE in Semantic Web Applications3.4.1. AeroDAML; 3.4.2. Amilcare; 3.4.3. MnM; 3.4.4. S-Cream; 3.4.5. Discussion; 3.5. Ontology-based IE; 3.5.1. Magpie; 3.5.2. Pankow; 3.5.3. SemTag; 3.5.4. Kim; 3.5.5. KIM Front-ends; 3.6. Deterministic Ontology Authoring using Controlled Language IE; 3.7. Conclusion; References; 4. Ontology Evolution; 4.1. Introduction; 4.2. Ontology Evolution: State-of-the-art; 4.2.1. Change Capturing; 4.2.2. Change Representation; 4.2.3. Semantics of Change; 4.2.4. Change Propagation; 4.2.5. Change Implementation; 4.2.6. Change Validation |
4.3. Logical Architecture4.4. Data-driven Ontology Changes; 4.4.1. Incremental Ontology Learning; 4.5. Usage-driven Ontology Changes; 4.5.1. Usage-driven Hierarchy Pruning; 4.6. Conclusion; References; 5. Reasoning With Inconsistent Ontologies: Framework, Prototype, and Experiment; 5.1. Introduction; 5.2. Brief Survey of Approaches to Reasoning with Inconsistency; 5.2.1. Paraconsistent Logics; 5.2.2. Ontology Diagnosis; 5.2.3. Belief Revision; 5.2.4. Synthesis; 5.3. Brief Survey of Causes for Inconsistency in the Semantic Web; 5.3.1. Inconsistency by Mis-representation of Default |
5.3.2. Inconsistency Caused by Polysemy5.3.3. Inconsistency through Migration from Another Formalism; 5.3.4. Inconsistency Caused by Multiple Sources; 5.4. Reasoning with Inconsistent Ontologies; 5.4.1. Inconsistency Detection; 5.4.2. Formal Definitions; 5.5. Selection Functions; 5.6. Strategies for Selection Functions; 5.7. Syntactic Relevance-Based Selection Functions; 5.8. Prototype of Pion; 5.8.1. Implementation; 5.8.2. Experiments and Evaluation; 5.8.3. Future Experiments; 5.9. Discussion and Conclusions; Acknowledgment; References; 6. Ontology Mediation, Merging, and Aligning |
6.1. Introduction |
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Sommario/riassunto |
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The Semantic Web combines the descriptive languages RDF (Resource Description Framework) and OWL (Web Ontology Language), with the data-centric, customizable XML (eXtensible Mark-up Language) to provide descriptions of the content of Web documents. These machine-interpretable descriptions allow more intelligent software systems to be written, automating the analysis and exploitation of web-based information. Software agents will be able to create automatically new services from already published services, with potentially huge implications for models of e-Business. Semantic Web T |
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