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Zipf’s Law for Word Frequencies: Word Forms versus Lemmas in Long Texts

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  • Álvaro Corral
  • Gemma Boleda
  • Ramon Ferrer-i-Cancho

Abstract

Zipf’s law is a fundamental paradigm in the statistics of written and spoken natural language as well as in other communication systems. We raise the question of the elementary units for which Zipf’s law should hold in the most natural way, studying its validity for plain word forms and for the corresponding lemma forms. We analyze several long literary texts comprising four languages, with different levels of morphological complexity. In all cases Zipf’s law is fulfilled, in the sense that a power-law distribution of word or lemma frequencies is valid for several orders of magnitude. We investigate the extent to which the word-lemma transformation preserves two parameters of Zipf’s law: the exponent and the low-frequency cut-off. We are not able to demonstrate a strict invariance of the tail, as for a few texts both exponents deviate significantly, but we conclude that the exponents are very similar, despite the remarkable transformation that going from words to lemmas represents, considerably affecting all ranges of frequencies. In contrast, the low-frequency cut-offs are less stable, tending to increase substantially after the transformation.

Suggested Citation

  • Álvaro Corral & Gemma Boleda & Ramon Ferrer-i-Cancho, 2015. "Zipf’s Law for Word Frequencies: Word Forms versus Lemmas in Long Texts," PLOS ONE, Public Library of Science, vol. 10(7), pages 1-23, July.
  • Handle: RePEc:plo:pone00:0129031
    DOI: 10.1371/journal.pone.0129031
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    Cited by:

    1. Fellipe Silva Martins & Eduardo Biagi Almeida Santos & Amélia Silveira, 2019. "Entrepreneurial Intention: Categorization, Classification of Constructs and Proposition of a Model," Brazilian Business Review, Fucape Business School, vol. 16(1), pages 46-62, January.
    2. Isabel Moreno-Sánchez & Francesc Font-Clos & Álvaro Corral, 2016. "Large-Scale Analysis of Zipf’s Law in English Texts," PLOS ONE, Public Library of Science, vol. 11(1), pages 1-19, January.

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