Chemical Thermodynamics and Information Theory with Applications
Author(s): Daniel J. Graham (Author)
Publisher: CRC Press
Publication Date: September 10, 2018
Edition: 1st
Language: English
Print length: 240 pages
ISBN-10: 113837427X
ISBN-13: 9781138374270
Book Description
Thermodynamics and information touch theory every facet of chemistry. However, the physical chemistry curriculum digested by students worldwide is still heavily skewed toward heat/work principles established more than a century ago. Rectifying this situation, Chemical Thermodynamics and Information Theory with Applications explores applications drawn from the intersection of thermodynamics and information theory―two mature and far-reaching fields.
In an approach that intertwines information science and chemistry, this book covers:
The informational aspects of thermodynamic state equations
The algorithmic aspects of transformations―compression, expansion, cyclic, and more
The principles of best-practice programming
How molecules transmit and modify information via collisions and chemical reactions
Using examples from physical and organic chemistry, this book demonstrates how the disciplines of thermodynamics and information theory are intertwined. Accessible to curiosity-driven chemists with knowledge of basic calculus, probability, and statistics, the book provides a fresh perspective on time-honored subjects such as state transformations, heat and work exchanges, and chemical reactions.
Editorial Reviews
About the Author
Daniel J. Graham is with the Department of Chemistry at Loyola University in Chicago.
Chemical Thermodynamics and Information Theory with Applications
Author(s): Daniel J. Graham (Author)
Publisher: CRC Press
Publication Date: June 7, 2011
Edition: 1st
Language: English
Print length: 240 pages
ISBN-10: 1439820872
ISBN-13: 9781439820872
Book Description
Thermodynamics and information touch theory every facet of chemistry. However, the physical chemistry curriculum digested by students worldwide is still heavily skewed toward heat/work principles established more than a century ago. Rectifying this situation, Chemical Thermodynamics and Information Theory with Applications explores applications drawn from the intersection of thermodynamics and information theory―two mature and far-reaching fields.
In an approach that intertwines information science and chemistry, this book covers:
The informational aspects of thermodynamic state equations
The algorithmic aspects of transformations―compression, expansion, cyclic, and more
The principles of best-practice programming
How molecules transmit and modify information via collisions and chemical reactions
Using examples from physical and organic chemistry, this book demonstrates how the disciplines of thermodynamics and information theory are intertwined. Accessible to curiosity-driven chemists with knowledge of basic calculus, probability, and statistics, the book provides a fresh perspective on time-honored subjects such as state transformations, heat and work exchanges, and chemical reactions.
Editorial Reviews
About the Author
Daniel J. Graham is with the Department of Chemistry at Loyola University in Chicago.