0
Your cart

Your cart is empty

Browse All Departments
  • All Departments
Price
  • R2,500 - R5,000 (3)
  • R5,000 - R10,000 (1)
  • -
Status
Brand

Showing 1 - 4 of 4 matches in All Departments

Entropy-Enthalpy Compensation - Finding a Methodological Common Denominator through Probability, Statistics, and Physics... Entropy-Enthalpy Compensation - Finding a Methodological Common Denominator through Probability, Statistics, and Physics (Hardcover)
Evgeni Starikov, Bengt Norden, Shigenori Tanaka
R3,615 Discovery Miles 36 150 Ships in 12 - 17 working days

Professionals recognize entropy-enthalpy compensation as an important factor in molecular recognition, lead design, water networks, and protein engineering. It can be experimentally studied by proper combinations of diverse spectroscopic approaches with isothermal titration calorimetry and is clearly related to molecular dynamics. So, how should we treat entropy-enthalpy compensation? Is it a stubborn hindrance that solely complicates the predictability of phenomena otherwise laid on the line by Mother Nature? How should we then deal with it? This book dwells on these posers. It combines two chapters written by globally recognized specialists. Chapter 1 deals with general issues and suggests a definite approach to how we may answer the posers. Chapter 2 shows how the approach outlined might be successfully applied in a rational design of enzymes. This might provide other interesting strategic perspectives in the general theoretical physical chemistry field.

Recent Advances of the Fragment Molecular Orbital Method - Enhanced Performance and Applicability (Paperback, 1st ed. 2021):... Recent Advances of the Fragment Molecular Orbital Method - Enhanced Performance and Applicability (Paperback, 1st ed. 2021)
Yuji Mochizuki, Shigenori Tanaka, Kaori Fukuzawa
R4,590 Discovery Miles 45 900 Ships in 10 - 15 working days

This book covers recent advances of the fragment molecular orbital (FMO) method, consisting of 5 parts and a total of 30 chapters written by FMO experts. The FMO method is a promising way to calculate large-scale molecular systems such as proteins in a quantum mechanical framework. The highly efficient parallelism deserves being considered the principal advantage of FMO calculations. Additionally, the FMO method can be employed as an analysis tool by using the inter-fragment (pairwise) interaction energies, among others, and this feature has been utilized well in biophysical and pharmaceutical chemistry. In recent years, the methodological developments of FMO have been remarkable, and both reliability and applicability have been enhanced, in particular, for non-bio problems. The current trend of the parallel computing facility is of the many-core type, and adaptation to modern computer environments has been explored as well. In this book, a historical review of FMO and comparison to other methods are provided in Part I (two chapters) and major FMO programs (GAMESS-US, ABINIT-MP, PAICS and OpenFMO) are described in Part II (four chapters). dedicated to pharmaceutical activities (twelve chapters). A variety of new applications with methodological breakthroughs are introduced in Part IV (six chapters). Finally, computer and information science-oriented topics including massively parallel computation and machine learning are addressed in Part V (six chapters). Many color figures and illustrations are included. Readers can refer to this book in its entirety as a practical textbook of the FMO method or read only the chapters of greatest interest to them.

Recent Advances of the Fragment Molecular Orbital Method - Enhanced Performance and Applicability (Hardcover, 1st ed. 2021):... Recent Advances of the Fragment Molecular Orbital Method - Enhanced Performance and Applicability (Hardcover, 1st ed. 2021)
Yuji Mochizuki, Shigenori Tanaka, Kaori Fukuzawa
R3,862 Discovery Miles 38 620 Ships in 12 - 17 working days

This book covers recent advances of the fragment molecular orbital (FMO) method, consisting of 5 parts and a total of 30 chapters written by FMO experts. The FMO method is a promising way to calculate large-scale molecular systems such as proteins in a quantum mechanical framework. The highly efficient parallelism deserves being considered the principal advantage of FMO calculations. Additionally, the FMO method can be employed as an analysis tool by using the inter-fragment (pairwise) interaction energies, among others, and this feature has been utilized well in biophysical and pharmaceutical chemistry. In recent years, the methodological developments of FMO have been remarkable, and both reliability and applicability have been enhanced, in particular, for non-bio problems. The current trend of the parallel computing facility is of the many-core type, and adaptation to modern computer environments has been explored as well. In this book, a historical review of FMO and comparison to other methods are provided in Part I (two chapters) and major FMO programs (GAMESS-US, ABINIT-MP, PAICS and OpenFMO) are described in Part II (four chapters). dedicated to pharmaceutical activities (twelve chapters). A variety of new applications with methodological breakthroughs are introduced in Part IV (six chapters). Finally, computer and information science-oriented topics including massively parallel computation and machine learning are addressed in Part V (six chapters). Many color figures and illustrations are included. Readers can refer to this book in its entirety as a practical textbook of the FMO method or read only the chapters of greatest interest to them.

Modern Methods for Theoretical Physical Chemistry of Biopolymers (Hardcover): Evgeni Starikov, James P. Lewis, Shigenori Tanaka Modern Methods for Theoretical Physical Chemistry of Biopolymers (Hardcover)
Evgeni Starikov, James P. Lewis, Shigenori Tanaka
R5,502 Discovery Miles 55 020 Ships in 12 - 17 working days

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

Free Delivery
Pinterest Twitter Facebook Google+
You may like...
Loot
Nadine Gordimer Paperback  (2)
R398 R330 Discovery Miles 3 300
Elecstor 18W In-Line UPS (Black)
R999 R869 Discovery Miles 8 690
Nuovo All-In-One Car Seat (Black)
R3,599 R2,499 Discovery Miles 24 990
Casio LW-200-7AV Watch with 10-Year…
R999 R884 Discovery Miles 8 840
Taurus Nixus Premium - Cordless Titanium…
 (1)
R873 Discovery Miles 8 730
Comedy 4-Film Collection - Knocked Up…
Seth Rogen, Katherine Heigl, … DVD R60 Discovery Miles 600
Bestway Spiderman Swim Ring (Diameter…
R48 Discovery Miles 480
Cable Guy Ikon "Light Up" PlayStation…
R543 Discovery Miles 5 430
Sony PlayStation 5 DualSense Wireless…
 (2)
R1,599 R1,479 Discovery Miles 14 790
Dig & Discover: Ancient Egypt - Excavate…
Hinkler Pty Ltd Kit R263 Discovery Miles 2 630

 

Partners