347,03 €
385,59 €
-10% with code: EXTRA
Emergent Computation
Emergent Computation
347,03
385,59 €
  • We will send in 10–14 business days.
Emergent Computation emphasizes the interrelationship of the different classes of languages studied in mathematical linguistics (regular, context-free, context-sensitive, and type 0) with aspects to the biochemistry of DNA, RNA, and proteins. In addition, aspects of sequential machines such as parity checking and semi-groups are extended to the study of the Biochemistry of DNA, RNA, and proteins. Mention is also made of the relationship of algebraic topology, knot theory, complex fields, quater…
  • Publisher:
  • ISBN-10: 0387220461
  • ISBN-13: 9780387220468
  • Format: 16.8 x 23.9 x 2.5 cm, hardcover
  • Language: English
  • SAVE -10% with code: EXTRA

Emergent Computation (e-book) (used book) | Matthew Simon | bookbook.eu

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Emergent Computation emphasizes the interrelationship of the different classes of languages studied in mathematical linguistics (regular, context-free, context-sensitive, and type 0) with aspects to the biochemistry of DNA, RNA, and proteins. In addition, aspects of sequential machines such as parity checking and semi-groups are extended to the study of the Biochemistry of DNA, RNA, and proteins. Mention is also made of the relationship of algebraic topology, knot theory, complex fields, quaternions, and universal turing machines and the biochemistry of DNA, RNA, and proteins.

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  • Author: Matthew Simon
  • Publisher:
  • ISBN-10: 0387220461
  • ISBN-13: 9780387220468
  • Format: 16.8 x 23.9 x 2.5 cm, hardcover
  • Language: English English

Emergent Computation emphasizes the interrelationship of the different classes of languages studied in mathematical linguistics (regular, context-free, context-sensitive, and type 0) with aspects to the biochemistry of DNA, RNA, and proteins. In addition, aspects of sequential machines such as parity checking and semi-groups are extended to the study of the Biochemistry of DNA, RNA, and proteins. Mention is also made of the relationship of algebraic topology, knot theory, complex fields, quaternions, and universal turing machines and the biochemistry of DNA, RNA, and proteins.

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