Search (196 results, page 9 of 10)

  • × theme_ss:"Metadaten"
  1. Masanès, J.; Lupovici, C.: Preservation metadata : the NEDLIB's proposal Bibliothèque Nationale de France (2001) 0.01
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    Date
    17.12.1996 21:11:09
  2. Dunsire, G.: Integrating Dublin Core / RDF records with MARC21 via the OCLC Connexion service at the Centre for Digital Library Research (2003) 0.01
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    Date
    17.12.1996 21:11:09
  3. Niederée, C.: Metadaten als Bausteine des Semantic Web (2003) 0.01
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    Date
    17.12.1996 21:11:09
  4. Fischer, T.: Metadata registries : Aktueller Stand und zukünftige Entwicklungen (2003) 0.01
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    Date
    17.12.1996 21:11:09
  5. Nelson, M.L.; Harrison, T.L.; Rocker, J.A.: OAI and NASA's scientific and technical information (2003) 0.01
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    Source
    Library hi tech. 21(2003) no.2, S.140-150
  6. Slavic, A.: General library classification in learning material metadata : the application in IMS/LOM and CDMES metadata schemas (2003) 0.01
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    Date
    31. 8.2005 21:57:49
  7. Cole, T.W..: Using OAI : innovations in the sharing of information (2003) 0.01
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    Source
    Library hi tech. 21(2003) no.2, S.115-117
  8. Arms, C.R.: Available and useful : OAI at the Library of Congress (2003) 0.01
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    Source
    Library hi tech. 21(2003) no.2, S.129-139
  9. Shreeves, S.L.; Kaczmarek, J.S.; Cole, T.W.: Harvesting cultural heritage metadata using OAI Protocol (2003) 0.01
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    Source
    Library hi tech. 21(2003) no.2, S.159-161
  10. Hagedorn, K.: OAIster: a "no dead ends" OAI service provider (2003) 0.01
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    Source
    Library hi tech. 21(2003) no.2, S.170-181
  11. Halbert, M.: ¬The Metascholar Initiative : AmericanSouth.Org and MetaArchive.Org (2003) 0.01
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    Source
    Library hi tech. 21(2003) no.2, S.182-198
  12. Prom, C.J.: Reengineering archival access through the OAI protocols (2003) 0.01
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    Source
    Library hi tech. 21(2003) no.2, S.199-209
  13. Suleman, H.; Fox, E.A.: Leveraging OAI harvesting to disseminate theses (2003) 0.01
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    Source
    Library hi tech. 21(2003) no.2, S.219-227
  14. Arms, W.Y.; Dushay, N.; Fulker, D.; Lagoze, C.: ¬A case study in metadata harvesting : the NSDL (2003) 0.01
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    Source
    Library hi tech. 21(2003) no.2, S.228-237
  15. Baker, T.; Dekkers, M.: Identifying metadata elements with URIs : The CORES resolution (2003) 0.01
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    Abstract
    On 18 November 2002, at a meeting organised by the CORES Project (Information Society Technologies Programme, European Union), several organisations regarded as maintenance authorities for metadata elements achieved consensus on a resolution to assign Uniform Resource Identifiers (URIs) to metadata elements as a useful first step towards the development of mapping infrastructures and interoperability services. The signatories of the CORES Resolution agreed to promote this consensus in their communities and beyond and to implement an action plan in the following six months. Six months having passed, the maintainers of GILS, ONIX, MARC 21, CERIF, DOI, IEEE/LOM, and Dublin Core report on their implementations of the resolution and highlight issues of relevance to establishing good-practice conventions for declaring, identifying, and maintaining metadata elements more generally. In June 2003, the resolution was also endorsed by the maintainers of UNIMARC. The "Resolution on Metadata Element Identifiers", or CORES Resolution, is an agreement among the maintenance organisations for several major metadata standards - GILS, ONIX, MARC 21, UNIMARC, CERIF, DOI®, IEEE/LOM, and Dublin Core - to identify their metadata elements using Uniform Resource Identifiers (URIs). The Uniform Resource Identifier, defined in the IETF RFC 2396 as "a compact string of characters for identifying an abstract or physical resource", has been promoted for use as a universal form of identification by the World Wide Web Consortium. The CORES Resolution, formulated at a meeting organised by the European project CORES in November 2002, included a commitment to publicise the consensus statement to a wider audience of metadata standards initiatives and to implement key points of the agreement within the following six months - specifically, to define URI assignment mechanisms, assign URIs to elements, and formulate policies for the persistence of those URIs. This article marks the passage of six months by reporting on progress made in implementing this common action plan. After presenting the text of the CORES Resolution and its three "clarifications", the article summarises the position of each signatory organisation towards assigning URIs to its metadata elements, noting any practical or strategic problems that may have emerged. These progress reports were based on input from Thomas Baker, José Borbinha, Eliot Christian, Erik Duval, Keith Jeffery, Rebecca Guenther, and Norman Paskin. The article closes with a few general observations about these first steps towards the clarification of shared conventions for the identification of metadata elements and perhaps, one can hope, towards the ultimate goal of improving interoperability among a diversity of metadata communities.
  16. Wessel, C.: "Publishing and sharing your metadata application profile" : 2. SCHEMAS-Workshop in Bonn (2001) 0.01
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    Date
    11. 3.2001 17:10:22
  17. Baker, T.: ¬A grammar of Dublin Core (2000) 0.01
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    Date
    26.12.2011 14:01:22
  18. Rice, R.: Applying DC to institutional data repositories (2008) 0.01
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    Source
    Metadata for semantic and social applications : proceedings of the International Conference on Dublin Core and Metadata Applications, Berlin, 22 - 26 September 2008, DC 2008: Berlin, Germany / ed. by Jane Greenberg and Wolfgang Klas
  19. Willis, C.; Greenberg, J.; White, H.: Analysis and synthesis of metadata goals for scientific data (2012) 0.01
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    Abstract
    The proliferation of discipline-specific metadata schemes contributes to artificial barriers that can impede interdisciplinary and transdisciplinary research. The authors considered this problem by examining the domains, objectives, and architectures of nine metadata schemes used to document scientific data in the physical, life, and social sciences. They used a mixed-methods content analysis and Greenberg's () metadata objectives, principles, domains, and architectural layout (MODAL) framework, and derived 22 metadata-related goals from textual content describing each metadata scheme. Relationships are identified between the domains (e.g., scientific discipline and type of data) and the categories of scheme objectives. For each strong correlation (>0.6), a Fisher's exact test for nonparametric data was used to determine significance (p < .05). Significant relationships were found between the domains and objectives of the schemes. Schemes describing observational data are more likely to have "scheme harmonization" (compatibility and interoperability with related schemes) as an objective; schemes with the objective "abstraction" (a conceptual model exists separate from the technical implementation) also have the objective "sufficiency" (the scheme defines a minimal amount of information to meet the needs of the community); and schemes with the objective "data publication" do not have the objective "element refinement." The analysis indicates that many metadata-driven goals expressed by communities are independent of scientific discipline or the type of data, although they are constrained by historical community practices and workflows as well as the technological environment at the time of scheme creation. The analysis reveals 11 fundamental metadata goals for metadata documenting scientific data in support of sharing research data across disciplines and domains. The authors report these results and highlight the need for more metadata-related research, particularly in the context of recent funding agency policy changes.
  20. Hunter, J.: MetaNet - a metadata term thesaurus to enable semantic interoperability between metadata domains (2001) 0.01
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    Date
    12. 8.2001 15:57:21

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