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Information Theory Meets Power Laws: Stochastic Processes and Language Models

Editorial WILEY

Information Theory Meets Power Laws: Stochastic Processes and Language Models
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  • Verlag WILEY
  • ISBN13 9781119625278
  • ISBN10 1119625270
  • Gegenstandsart BUCH
  • Buchseiten 384

Information Theory Meets Power Laws: Stochastic Processes and Language Models

Editorial WILEY

-5% Rabatt.    134,00€
127,30€
Speichern 6,70€
Nicht verfügbar, verfügbarkeit bestätigen
Kostenloser Versand
Festland Spanien
KOSTENLOSER Versand ab 19 €

zum spanischen Festland

Versand in 24/48 Stunden

5% Rabatt auf alle Bücher

Kostenlose Abholung in der Buchhandlung

Komm und lass dich überraschen!

Buch Details

Discover new theoretical connections between stochastic phenomena and the structure of natural language with this powerful volume

Information Theory Meets Power Laws: Stochastic Processes and Language Models presents readers with a novel subtype of a probabilistic approach to language, which is based on statistical laws of texts and their analysis by means of information theory. The distinguished author insightfully and rigorously examines the linguistic and mathematical subject matter while eschewing needlessly abstract and superfluous constructions.

The book begins with a less formal treatment of its subjects in the first chapter, introducing its concepts to readers without mathematical training and allowing those unfamiliar with linguistics to learn the book's motivations. Despite its inherent complexity, Information Theory Meets Power Laws: Stochastic Processes and Language Models is a surprisingly approachable treatment of idealized mathematical models of human language.

The author succeeds in developing some of the theory underlying fundamental stochastic and semantic phenomena, like strong nonergodicity, in a way that has not previously been attempted. In doing so, he covers topics including:

  • Zipf's and Herdan's laws for natural language
  • Power laws for information, repetitions, and correlations
  • Markov, finite-state, and Santa Fe processes
  • Bayesian and frequentist interpretations of probability
  • Ergodic decomposition, Kolmogorov complexity, and universal coding
  • Theorems about facts and words
  • Information measures for fields
  • Rényi entropies, recurrence times, and subword complexity
  • Asymptotically mean stationary processes

Written primarily for mathematics graduate students and professionals interested in information theory or discrete stochastic processes, Information Theory Meets Power Laws: Stochastic Processes and Language Models also belongs on the bookshelves of doctoral students and researchers in artificial intelligence, computational and quantitative linguistics as well as physics of complex systems.


Biografía del autor
?UKASZ D?BOWSKI, PHD, works at the Institute of Computer Science of the Polish Academy of Sciences in Poland. His doctorate is in mathematics and computer science and his primary research focus is in the areas of information theory and discrete stochastic processes. He is also interested in the theoretical properties of statistical and neural language models.