Shannon -- A mathematical theory of communication -- 1948
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| 2007 | - | Computational Models of Real World Phonological Change - Choudhury |
| | Shannon, C. E. 1948. A mathematical theory of communication. Bell system technical journal 27, 379-423, 623-656.
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| 2004 | - | Colour Terms, Syntax and Bayes: Modelling Acquisition and Evolution - Dowman |
| | Shannon, C. E. (1948). A Mathematical Theory of Communication. Bell System Technical Journal, 27, 379-423 & 623-656.
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| 2006 | - | When language breaks into pieces: A conflict between communication through isolated signals and language - Ferrer-i-Cancho |
| | Shannon, C.E., 1948. A mathematical theory of communication. Bell Syst. Tech. J. 27 379-423 623-656.
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| 2004 | - | Imitation Is Not Enough for Lexicon Learning - Fleischer,Shapiro |
| | Shannon, C. (1948). A mathematical theory of communication. The Bell System Technical Journal, 27:379 -423, 623 -656.
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| 2005 | - | Unsupervised Lexical Learning As Inductive Inference via Compression - Kit |
| | [23] C. Shannon. A mathematical theory of communication. Bell System Technical Journal, 27:379--423, 623--656, 1948.
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| 2003 | - | The digital origin of human language - a synthesis - Noll |
| | 1. Shannon CE. A mathematical theory of communication. Bell System Technical Journal 1948;27:379-423 and 623-656.
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| 2000 | - | Language evolution and information theory - Plotkin,Nowak |
| | SHANNON, C. E. (1948). A Mathematical Theory of Communication. Bell System Technical Journal 27, 379-423, 623-656.
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| 2005 | - | Selection, domestication, and the emergence of learned communication systems - Ritchie,Kirby |
| | C. E. Shannon. A mathematical theory of communication. Bell Systems Technical Journal, 27:379-423 and 623--656, 1948.
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| 2005 | - | Acquisition and evolution of quasi-regular languages: two puzzles for the price of one - Roberts,Onnis,Chater |
| | Shannon, C.E. (1948). A Mathematical Theory of Communication, Bell System Technical Journal, 27, 379-423 and 623-656.
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| 2005 | - | Exploring the Adaptive Structure of the Mental Lexicon - Tamariz |
| | Shannon, C.E. 1948. A mathematical theory of communication, Bell Systems Technology Journal, 27(July), 379-423 and (October), 623-656.
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| 2003 | - | Modelling Zipfian Distributions in Language - Tullo,Hurford |
| | Shannon, Claude E., (1948) ``A mathematical theory of communication'', Bell Systems Technical Journal, 27:379-423, 623-656.
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| 2001 | - | Bootstrapping grounded symbols by minimal autonomous robots - Vogt |
| | Shannon, C. (1948). A mathematical theory of communication. The Bell System Technical Journal 27, 379-423, 623-656.
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| 2000 | - | Lexicon Grounding on Mobile Robots - Vogt |
| | Shannon, C. (1948). A mathematical theory of communication. The Bell System Technical Journal 27, 379--423, 623--656.
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| 2003 | - | Investigating social interaction strategies for bootstrapping lexicon development - Vogt,Coumans |
| | SHANNON, C. (1948). A mathematical theory of communication. The Bell System Technical Journal, 27, 379-423, 623-656.
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| 2005 | - | The Major Transitions in the Evolution of Language - Zuidema |
| | SHANNON, C. E. (1948). A mathematical theory of communication. The Bell Systems Technical Journal 27, 379--423 and 623--656.
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| 2003 | - | Optimal communication in a noisy and heterogeneous environment - Zuidema |
| | [18] C.E. Shannon. A mathematical theory of communication. The Bell Systems Technical Journal, 27:379--423 and 623--656, 1948.
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| 2005 | - | Cultural and Biological Evolution of Phonemic Speech - de Boer |
| | 11. Shannon, C. E.: A mathematical theory of communication. The Bell system technical journal 27: (1948) 379-423,623-656
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| 2003 | - | Phonemic Coding: Optimal Communication under Noise? - de Boer,Zuidema |
| | SHANNON, C. E. (1948). A mathematical theory of communication. The Bell Systems Technical Journal 27, 379-423 and 623-656.
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| 2000 | - | Autonomous Formation of Concepts and Communication - de Jong |
| | Shannon, C. (1948). A mathematical theory of communication. The Bell System Technical Journal, 27, 379-423, 623-656.
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