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  • × subject_ss:"Artificial intelligence"
  1. Corporate Semantic Web : wie semantische Anwendungen in Unternehmen Nutzen stiften (2015) 0.03
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    Content
    Kapitel 1; Corporate Semantic Web; 1.1 Das Semantic Web; 1.2 Semantische Anwendungen im Unternehmenseinsatz; 1.3 Bereitstellen von Linked Data reicht nicht; 1.4 Eine global vernetzte Wissensbasis -- Fiktion oder Realität?; 1.5 Semantik)=)RDF?; 1.6 Richtig vorgehen; 1.7 Modellieren ist einfach (?!); 1.8 Juristische Fragen; 1.9 Semantische Anwendungen stiften Nutzen in Unternehmen -- nachweislich!; 1.10 Fazit; Literatur; Kapitel 2; Einordnung und Abgrenzung des Corporate Semantic Webs; 2.1 Grundlegende Begriffe; 2.2 Corporate Semantic Web 2.3 Public Semantic Web2.4 Social Semantic Web 3.0; 2.5 Pragmatic Web; 2.6 Zusammenfassung und Ausblick "Ubiquitous Pragmatic Web 4.0"; Literatur; Kapitel 3; Marktstudie: Welche Standards und Tools werden in Unternehmen eingesetzt?; 3.1 Einleitung; 3.2 Semantische Suche in Webarchiven (Quantinum AG); 3.2.1 Kundenanforderungen; 3.2.2 Technische Umsetzung; 3.2.3 Erfahrungswerte; 3.3 Semantische Analyse und Suche in Kundenspezifikationen (Ontos AG); 3.3.1 Kundenanforderungen; 3.3.2 Technische Umsetzung; 3.3.3 Erfahrungswerte 3.4 Sicherheit für Banken im Risikomanagement (VICO Research & Consulting GmbH)3.4.1 Kundenanforderungen; 3.4.2 Technische Umsetzung; 3.4.3 Erfahrungswerte; 3.5 Interaktive Fahrzeugdiagnose (semafora GmbH); 3.5.1 Kundenanforderungen; 3.5.2 Technische Umsetzung; 3.5.3 Erfahrungswerte; 3.6 Quo Vadis?; 3.7 Umfrage-Ergebnisse; 3.8 Semantic Web Standards & Tools; 3.9 Ausblick; Literatur; Kapitel 4; Modellierung des Sprachraums von Unternehmen; 4.1 Hintergrund; 4.2 Eine Frage der Bedeutung; 4.3 Bedeutung von Begriffen im Unternehmenskontext; 4.3.1 Website-Suche bei einem Industrieunternehmen 4.3.2 Extranet-Suche bei einem Marktforschungsunternehmen4.3.3 Intranet-Suche bei einem Fernsehsender; 4.4 Variabilität unserer Sprache und unseres Sprachgebrauchs; 4.4.1 Konsequenzen des Sprachgebrauchs; 4.5 Terminologiemanagement und Unternehmensthesaurus; 4.5.1 Unternehmensthesaurus; 4.5.2 Mut zur Lücke: Arbeiten mit unvollständigen Terminologien; 4.6 Pragmatischer Aufbau von Unternehmensthesauri; 4.6.1 Begriffsanalyse des Anwendungsbereichs; 4.6.2 Informationsquellen; 4.6.3 Häufigkeitsverteilung; 4.6.4 Aufwand und Nutzen; Literatur; Kapitel 5 Schlendern durch digitale Museen und Bibliotheken5.1 Einleitung; 5.2 Anwendungsfall 1: Schlendern durch das Digitale Museum; 5.3 Anwendungsfall 2: Literatur in Bibliotheken finden; 5.4 Herausforderungen; 5.5 Die Anforderungen treiben die Architektur; 5.5.1 Semantic ETL; 5.5.2 Semantic Logic; 5.5.3 Client; 5.6 Diskussion; 5.7 Empfehlungen und Fazit; Literatur; Kapitel 6; Semantische Suche im Bereich der Energieforschungsförderung; 6.1 Das Projekt EnArgus®; 6.2 Die Fachontologie; 6.2.1 Semantische Suche; 6.2.2 Repräsentation der semantischen Relationen in der Fachontologie
    LCSH
    Information storage and retrieval system
    Subject
    Information storage and retrieval system
  2. Ford, N.: Expert systems and artificial intelligence : an information manager's guide (1991) 0.02
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    Abstract
    A guide to database management, online searching, text retrieval, data analysis, intelligent documents and more ...
  3. Becker, B.: Künstliche Intelligenz : Konzepte, Systeme, Verheißungen (1992) 0.01
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    Abstract
    "Das Anliegen dieses Buches ist es, eine einführende Darstellung der Forschung in Künstlicher Intelligenz zu geben. Außerdem soll gezeigt werden, welche Rückwirkungen die Grundannahme der KI, unser Geist gleiche im wesentlichen einem Computer, auf unser Denken hat: Der ursprüngliche Bedeutungsgehalt von Begriffen wie Denken, Wissen und Verstehen werde fälschlich eingeschränkt, und die so entstehende reduktionistische Sichtweise beeinflusse deshalb das Selbstbild des Menschen sowie das soziale Miteinander auf bedenkliche Weise"
  4. Ramge, T.: Mensch und Maschine : wie Künstliche Intelligenz und Roboter unser Leben verändern (2018) 0.01
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    Abstract
    Computerprogramme können menschliche Gesichter zuverlässiger erkennen als Menschen. Sie schlagen uns im Brettspiel Go, das strategisches Denken und Intuition erfordert, und sie bluffen besser als die besten Pokerspieler der Welt. Maschinen treffen komplexe Entscheidungen - oft besser und schneller als wir. Thomas Ramge erklärt sachkundig und verständlich, wie Maschinen dabei sind, das Lernen zu lernen und diskutiert die Frage: Was wird aus uns Menschen, wenn smarte Maschinen immer intelligenter werden?
  5. Penrose, R.: Schatten des Geistes : Wege zu einer neuen Physik des Bewußtseins (1995) 0.01
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    Abstract
    Computer haben merkwürdige Eigenschaften. Sie erledigen eine Menge komplexer Aufgaben schneller, geauer und zuverlässiger als der Mensch. Mit relativ simplen Fähigkeiten, die wir intuitiv einsetzen, haben sie jedoch zu kämpfen. Und bei Verstehen, Intelligenz und Bewußtsein versagen sie völlig. Der menschliche Geist läßt sich prinzipiell rechnerisch nicht angemessen simulieren, behauptet der Autor. Dennoch sind es physikalische Prozesse im Gehirn, die das Bewußtsein ausmachen. Er fordert in der Fortsetzung der Diskussion um 'Computerdenken' eine neue, eine nicht-rechnerische 'Physik des Bewußtseins' für die Beschreibung des Geistes, die eine Art Verallgemeinerung der Quantenmechanik sein könnte. Er entwirft schließlich ein eigenens Modell für das Gehirn, in dem die heute bekannten Vorgänge nur die Schatten eines tieferen Phänomens, des Geistes sind
  6. Vowinkel, B.: Maschinen mit Bewusstsein : wohin führt die künstliche Intelligenz? (2006) 0.01
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    Abstract
    Die künstliche Intelligenz hat in den letzten Jahrzehnten gewaltige Fortschritte gemacht. Setzt sich dieser Fortschritt in den nächsten Jahren mit der gleichen Geschwindigkeit fort, so werden unsere Personal Computer bis etwa zum Jahr 2015 die gleiche Leistungsfähigkeit wie das menschliche Gehirn erreicht haben. Die entscheidende Frage ist, ob diese Maschinen dann auch all die geistigen Fähigkeiten erwerben können, die als zutiefst menschlich empfunden werden. Im Zentrum steht dabei vor allem die Frage nach dem Bewusstsein. Gelingt es tatsächlich, Computer mit allen geistigen Fähigkeiten des Menschen auszustatten, so reicht unsere Fantasie kaum aus, die dadurch bedingten langfristigen Folgen für unsere Zivilisation vorauszusagen. Da die künstliche Intelligenz nicht den Einschränkungen des biologischen Lebens unterliegt, ist eine Entwicklung weit über die Fähigkeiten menschlicher Intelligenz hinaus denkbar. Dies schließt sogar eine potenzielle Unsterblichkeit ein - und somit den Abschied von der Wunschvorstellung, daß der Mensch die Krone der Schöpfung sei.
  7. Semantic applications (2018) 0.01
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    LCSH
    Information storage and retrieval
    Information Storage and Retrieval
    RSWK
    Information Retrieval
    Subject
    Information Retrieval
    Information storage and retrieval
    Information Storage and Retrieval
  8. ¬The Semantic Web : research and applications ; second European Semantic WebConference, ESWC 2005, Heraklion, Crete, Greece, May 29 - June 1, 2005 ; proceedings (2005) 0.01
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    Abstract
    This book constitutes the refereed proceedings of the Second European Semantic Web Conference, ESWC 2005, heldin Heraklion, Crete, Greece in May/June 2005. The 48 revised full papers presented were carefully reviewed and selected from 148 submissions. The papers are organized in topical sections on semantic Web services, languages, ontologies, reasoning and querying, search and information retrieval, user and communities, natural language for the semantic Web, annotation tools, and semantic Web applications.
    LCSH
    Information storage and retrieval systems
    Subject
    Information storage and retrieval systems
  9. Metadata and semantics research : 9th Research Conference, MTSR 2015, Manchester, UK, September 9-11, 2015, Proceedings (2015) 0.01
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    Content
    The papers are organized in several sessions and tracks: general track on ontology evolution, engineering, and frameworks, semantic Web and metadata extraction, modelling, interoperability and exploratory search, data analysis, reuse and visualization; track on digital libraries, information retrieval, linked and social data; track on metadata and semantics for open repositories, research information systems and data infrastructure; track on metadata and semantics for agriculture, food and environment; track on metadata and semantics for cultural collections and applications; track on European and national projects.
    LCSH
    Information storage and retrieval systems
    Subject
    Information storage and retrieval systems
  10. Metadata and semantics research : 5th International Conference, MTSR 2011, Izmir, Turkey, October 12-14, 2011. Proceedings (2011) 0.00
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    LCSH
    Information storage and retrieval systems
    Subject
    Information storage and retrieval systems
  11. Metadata and semantics research : 8th Research Conference, MTSR 2014, Karlsruhe, Germany, November 27-29, 2014, Proceedings (2014) 0.00
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    LCSH
    Information storage and retrieval systems
    Subject
    Information storage and retrieval systems
  12. Reasoning Web : Semantic Interoperability on the Web, 13th International Summer School 2017, London, UK, July 7-11, 2017, Tutorial Lectures (2017) 0.00
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    LCSH
    Information storage and retrieval
    Subject
    Information storage and retrieval
  13. Sakr, S.; Wylot, M.; Mutharaju, R.; Le-Phuoc, D.; Fundulaki, I.: Linked data : storing, querying, and reasoning (2018) 0.00
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    LCSH
    Information storage and retrieval
    Subject
    Information storage and retrieval
  14. Nagao, M.: Knowledge and inference (1990) 0.00
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    Theme
    Semantisches Umfeld in Indexierung u. Retrieval
  15. Kissinger, H.A.; Schmidt, E.; Huttenlocher, D.: ¬The age of AI : and our human future (2021) 0.00
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    Abstract
    Three of the world's most accomplished and deep thinkers come together to explore Artificial Intelligence (AI) and the way it is transforming human society-and what this technology means for us all. An AI learned to win chess by making moves human grand masters had never conceived. Another AI discovered a new antibiotic by analyzing molecular properties human scientists did not understand. Now, AI-powered jets are defeating experienced human pilots in simulated dogfights. AI is coming online in searching, streaming, medicine, education, and many other fields and, in so doing, transforming how humans are experiencing reality. In The Age of AI, three leading thinkers have come together to consider how AI will change our relationships with knowledge, politics, and the societies in which we live. The Age of AI is an essential roadmap to our present and our future, an era unlike any that has come before. Artificial Intelligence (AI) is transforming human society in fundamental and profound ways. Not since the Age of Reason have we changed how we approach security, economics, order, and even knowledge itself. In the Age of AI, three deep and accomplished thinkers come together to consider what AI will mean for us all.

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  • m 15
  • s 7

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