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  • × language_ss:"e"
  • × theme_ss:"Klassifikationstheorie: Elemente / Struktur"
  1. Bowker, G.C.; Star, S.L.: Sorting things out : classification and its consequences (1999) 0.00
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    Footnote
    Rez. in: Knowledge organization 27(2000) no.3, H.175-177 (B. Kwasnik); College and research libraries 61(2000) no.4, S.380-381 (J. Williams); Library resources and technical services 44(2000) no.4, S.107-108 (H.A. Olson); JASIST 51(2000) no.12, S.1149-1150 (T.A. Brooks)
  2. Kublik, A.; Clevette, V.; Ward, D.; Olson, H.A.: Adapting dominant classifications to particular contexts (2003) 0.00
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  3. Ellis, D.; Vasconcelos, A.: Ranganathan and the Net : using facet analysis to search and organise the World Wide Web (1999) 0.00
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  4. Batty, D.: ¬The future of DDC in the perspective of current classification research (1989) 0.00
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  5. Machado, L.; Martínez-Ávila, D.; Barcellos Almeida, M.; Borges, M.M.: Towards a moderate realistic foundation for ontological knowledge organization systems : the question of the naturalness of classifications (2023) 0.00
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  6. Szostak, R.: Classifying science : phenomena, data, theory, method, practice (2004) 0.00
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    Footnote
    Rez. in: KO 32(2005) no.2, S.93-95 (H. Albrechtsen): "The book deals with mapping of the structures and contents of sciences, defined broadly to include the social sciences and the humanities. According to the author, the study of science, as well as the practice of science, could benefit from a detailed classification of different types of science. The book defines five universal constituents of the sciences: phenomena, data, theories, methods and practice. For each of these constituents, the author poses five questions, in the well-known 5W format: Who, What, Where, When, Why? - with the addition of the question How? (Szostak 2003). Two objectives of the author's endeavor stand out: 1) decision support for university curriculum development across disciplines and decision support for university students at advanced levels of education in selection of appropriate courses for their projects and to support cross-disciplinary inquiry for researchers and students; 2) decision support for researchers and students in scientific inquiry across disciplines, methods and theories. The main prospective audience of this book is university curriculum developers, university students and researchers, in that order of priority. The heart of the book is the chapters unfolding the author's ideas about how to classify phenomena and data, theory, method and practice, by use of the 5W inquiry model. . . .
  7. Parrochia, D.: Mathematical theory of classification (2018) 0.00
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  8. Frické, M.: Logic and the organization of information (2012) 0.00
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    Footnote
    Rez. in: J. Doc. 70(2014) no.4: "Books on the organization of information and knowledge, aimed at a library/information audience, tend to fall into two clear categories. Most are practical and pragmatic, explaining the "how" as much or more than the "why". Some are theoretical, in part or in whole, showing how the practice of classification, indexing, resource description and the like relates to philosophy, logic, and other foundational bases; the books by Langridge (1992) and by Svenonious (2000) are well-known examples this latter kind. To this category certainly belongs a recent book by Martin Frické (2012). The author takes the reader for an extended tour through a variety of aspects of information organization, including classification and taxonomy, alphabetical vocabularies and indexing, cataloguing and FRBR, and aspects of the semantic web. The emphasis throughout is on showing how practice is, or should be, underpinned by formal structures; there is a particular emphasis on first order predicate calculus. The advantages of a greater, and more explicit, use of symbolic logic is a recurring theme of the book. There is a particularly commendable historical dimension, often omitted in texts on this subject. It cannot be said that this book is entirely an easy read, although it is well written with a helpful index, and its arguments are generally well supported by clear and relevant examples. It is thorough and detailed, but thereby seems better geared to the needs of advanced students and researchers than to the practitioners who are suggested as a main market. For graduate students in library/information science and related disciplines, in particular, this will be a valuable resource. I would place it alongside Svenonious' book as the best insight into the theoretical "why" of information organization. It has evoked a good deal of interest, including a set of essay commentaries in Journal of Information Science (Gilchrist et al., 2013). Introducing these, Alan Gilchrist rightly says that Frické deserves a salute for making explicit the fundamental relationship between the ancient discipline of logic and modern information organization. If information science is to continue to develop, and make a contribution to the organization of the information environments of the future, then this book sets the groundwork for the kind of studies which will be needed." (D. Bawden)
  9. Broughton, V.: Essential classification (2004) 0.00
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    Footnote
    Weitere Rez. in: ZfBB 53(2006) H.2, S.111-113 (W. Gödert)
  10. Scerri, E.R.: ¬The periodic table : its story and its significance (2007) 0.00
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    Biographed
    Mendelejev, D.

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