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Modern Methods For Theoretical Physical Chemistry Of Biopolymers 1st Edition Evgeni Starikov

  • SKU: BELL-2086630
Modern Methods For Theoretical Physical Chemistry Of Biopolymers 1st Edition Evgeni Starikov
$ 31.00 $ 45.00 (-31%)

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Modern Methods For Theoretical Physical Chemistry Of Biopolymers 1st Edition Evgeni Starikov instant download after payment.

Publisher: Elsevier Science
File Extension: PDF
File size: 24.12 MB
Pages: 565
Author: Evgeni Starikov, James P. Lewis, Shigenori Tanaka
ISBN: 0444522204
Language: English
Year: 2006
Edition: 1

Product desciption

Modern Methods For Theoretical Physical Chemistry Of Biopolymers 1st Edition Evgeni Starikov by Evgeni Starikov, James P. Lewis, Shigenori Tanaka 0444522204 instant download after payment.

Modern Methods for Theoretical Physical Chemistry of Biopolymers provides an interesting selection of contributions from an international team of researchers in theoretical chemistry. This book is extremely useful for tackling the complicated scientific problems connected with biopolymers' physics and chemistry. The applications of both the classical molecular-mechanical and molecular-dynamical methods and the quantum chemical methods needed for bridging the gap to structural and dynamical properties dependent on electron dynamics are explained. Also included are ways to deal with complex problems when all three approaches need to be considered at the same time. The book gives a rich spectrum of applications: from theoretical considerations of how ATP is produced and used as 'energy currency' in the living cell, to the effects of subtle solvent influence on properties of biopolymers and how structural changes in DNA during single-molecule manipulation may be interpreted. · Presents modern successes and trends in theoretical physical chemistry/chemical physics of biopolymers· Topics covered are of relevant importance to rapidly developing areas in science such as nanotechnology and molecular medicine· Quality selection of contributions from renowned scientists in the field

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