Search (18 results, page 1 of 1)

  • × theme_ss:"Information"
  • × type_ss:"a"
  • × year_i:[1970 TO 1980}
  1. Hollnagel, E.: ¬The relation between intention, meaning and action (1979) 0.01
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    Abstract
    A defintion of the meaning of a text should not be based on the concept of truth, but on the concepts of intention and action. Uses the cybernetic paradigm of communication in which the purpose of communication is taken to be the control of a system's behaviour with the intention of regulating action in the system. The meaning of the action is thus that interpretation most consistent with the receiving system's model of the sending system. Discusses the applicability of the model to a man-machine system, and examines implications of the analysis
    Source
    Informatics 5: the analysis of meaning, March 25-28, Oxford. Ed.: K. Gray and M. MacCafferty
  2. DeMey, M.: ¬The cognitive viewpoint : its development and its scope (1977) 0.01
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    Imprint
    Gent : University of Gent
    Source
    International Workshop on the Cognitive Viewpoint. Ed.: M. DeMey
  3. Farradane, J.: ¬The nature of information (1979) 0.00
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    Source
    Journal of information science. 1(1979) no.1, S.13-17
  4. Eigen, M.: ¬The origin of biological information (1973) 0.00
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    Source
    The physicist's concept of nature. Ed.: J. Mehra
  5. Belkin, N.J.; Robertson, S.E: Information science and the phenomenon of information (1976) 0.00
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    Source
    Journal of the American Society for information science. 27(1976), S.197-204
  6. Belzer, J.: Information theory as a measure of information content (1973) 0.00
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    Source
    Journal of the American Society for Information Science. 24(1973), S.300-304
  7. Pratt, A.D.: ¬The information of the image : a model of the communication process (1977) 0.00
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  8. Chaitin, G.J.: Algorithmic information theory (1977) 0.00
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    Abstract
    This paper reviews algorithmic information theory, which is an attempt to apply information-theoretic and probabilistic ideas to recursive function theory. Typical concerns in this approach are, for example, the number of bits of information required to specify an algorithm, or the probability that a program whose bits are chosen by coin flipping produces a given output. During the past few years the definitions of algorithmic information theory have been reformulated. The basic features of the new formalism are presented here and certain results of R. M. Solovay are reported.
  9. Bransford, J.D.; Johnson, M.K.: Contextual prerequisites for understanding : some investigations of comprehension and recall (1972) 0.00
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    Source
    Journal of verbal learning and verbal behavior. 61(1972), S.717-726
  10. Ruch, E.; Lesche, B.: Information extent and information distance (1978) 0.00
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    Source
    Journal of chemical physics. 69(1978), S.393-401
  11. Dermer, J.D.: Cognitive characteristics and the perceived importance of information (1973) 0.00
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  12. Artandi, S.: Information concepts and their utility (1973) 0.00
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    Source
    Journal of the American Society for Information Science. 24(1973), S.242-245
  13. Belkin, N.J.: Information concepts for information science (1978) 0.00
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    Source
    Journal of documentation. 34(1978), S.55-85
  14. Pratt, A.D.: Letters to the editor: Information concepts (1978) 0.00
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    Source
    Journal of documentation. 34(1978), S.242-244
  15. Marko, H.: ¬The bidirectional communication theory : a generalization of information theory (1973) 0.00
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  16. Reddy, M.J.: ¬The conduit metaphor : a case of frame conflict in our language about language (1979) 0.00
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  17. Stent, G.: Explicit and implicit semantic content of genetic information (1977) 0.00
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  18. Brookes, B.C.: Measurement in information science : objective and subjective metrical space (1979) 0.00
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    Abstract
    It is argued that in information science we have to distinguish physical, objective, or document space from perspective, subjective, or information space. These two spaces are like maps and landscapes: each is a systematic distortion of the other. However, transformations can be easily made once the two spaces are distinguished. If the transformations are omitted we only get unhelpful physical solutions to information problems
    Source
    Journal of the American Society for Information Science. 30(1979), S.248-255