Description

Book Synopsis
This book aims to provide a self-contained account of energy landscape theory and how it is used in studies of clusters, biomolecules and glasses. It is the first book to cover this active field. Illustrated in full colour, the book is aimed at graduate students and researchers in the field.

Trade Review
'This beautifully illustrated book provides a detailed background and description of energy landscapes and gives many examples of how they can be used to explain the properties of atomic and molecular clusters, biomolecules, glasses, and supercooled liquids … Energy Landscapes provides a pictorial language that simplifies complicated calculations to a form that can be understood and used by many scientists interested in molecular problems, from undergraduates to those at the frontier of research.' Science Magazine
'Since this is the first book published in this very active field, it should serve as a reference source for a long time, and will be a very valuable resource for young scientists to become acquainted with the study of the PES of complex systems.' Angewandte Chemie
'… the energy landscape community … owes a great debt to Dr Wales for producing a detailed yet eminently readable book that will serve as the standard reference for many years to come … the author is to be recommended for tackling this important and vase area and for presenting it in a lucid and unified picture. The author's clear and gentle style make the book accessible to undergraduates, while the depth of coverage and the insights that are generously sprinkled throughout the book will make it invaluable to researchers in the field … On many occasions I found myself picking up the book just for random browsing and the sheer enjoyment of the clear discussion and beautiful presentation.' Physics in Canada
' … Wales' book defines a whole new subject, even more - a whole new field, and at the same time presents its state of the art description … a superb and laudable achievement, and I believe it will represent a resource on the subject of PES for years to come … I can certainly recommend it as an exhaustive guide and treasure trove of resources in the fascinating worlds of PES … a first class achievement … in many respects a beautiful, well conceived and most informative book. It moves elegantly and engagingly through various fields of theoretical physics, physical chemistry and molecular biology to expose and explain the unifying workings of the potential energy surfaces and along the way finds an elegant and meaningful connection, on a most fundamental level, between the worlds of nano and bioscience in a way hardly attempted before.' Journal of Statistical Physics

Table of Contents
1. Introduction; 2. The Born–Oppenheimer approximation and normal modes; 3. Symmetry considerations; 4. Features of the landscape; 5. Describing the landscape; 6. Exploring the landscape; 7. Properties of the landscape; 8. Clusters; 9. Biomolecules; 10. Glasses and supercooled liquids.

Energy Landscapes

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    £152.95

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    RRP £161.00 – you save £8.05 (5%)

    Order before 4pm tomorrow for delivery by Sat 27 Jun 2026.

    A Hardback by David Wales

    15 in stock


      View other formats and editions of Energy Landscapes by David Wales

      Publisher: Cambridge University Press
      Publication Date: 1/22/2004 12:00:00 AM
      ISBN13: 9780521814157, 978-0521814157
      ISBN10: 0521814154

      Description

      Book Synopsis
      This book aims to provide a self-contained account of energy landscape theory and how it is used in studies of clusters, biomolecules and glasses. It is the first book to cover this active field. Illustrated in full colour, the book is aimed at graduate students and researchers in the field.

      Trade Review
      'This beautifully illustrated book provides a detailed background and description of energy landscapes and gives many examples of how they can be used to explain the properties of atomic and molecular clusters, biomolecules, glasses, and supercooled liquids … Energy Landscapes provides a pictorial language that simplifies complicated calculations to a form that can be understood and used by many scientists interested in molecular problems, from undergraduates to those at the frontier of research.' Science Magazine
      'Since this is the first book published in this very active field, it should serve as a reference source for a long time, and will be a very valuable resource for young scientists to become acquainted with the study of the PES of complex systems.' Angewandte Chemie
      '… the energy landscape community … owes a great debt to Dr Wales for producing a detailed yet eminently readable book that will serve as the standard reference for many years to come … the author is to be recommended for tackling this important and vase area and for presenting it in a lucid and unified picture. The author's clear and gentle style make the book accessible to undergraduates, while the depth of coverage and the insights that are generously sprinkled throughout the book will make it invaluable to researchers in the field … On many occasions I found myself picking up the book just for random browsing and the sheer enjoyment of the clear discussion and beautiful presentation.' Physics in Canada
      ' … Wales' book defines a whole new subject, even more - a whole new field, and at the same time presents its state of the art description … a superb and laudable achievement, and I believe it will represent a resource on the subject of PES for years to come … I can certainly recommend it as an exhaustive guide and treasure trove of resources in the fascinating worlds of PES … a first class achievement … in many respects a beautiful, well conceived and most informative book. It moves elegantly and engagingly through various fields of theoretical physics, physical chemistry and molecular biology to expose and explain the unifying workings of the potential energy surfaces and along the way finds an elegant and meaningful connection, on a most fundamental level, between the worlds of nano and bioscience in a way hardly attempted before.' Journal of Statistical Physics

      Table of Contents
      1. Introduction; 2. The Born–Oppenheimer approximation and normal modes; 3. Symmetry considerations; 4. Features of the landscape; 5. Describing the landscape; 6. Exploring the landscape; 7. Properties of the landscape; 8. Clusters; 9. Biomolecules; 10. Glasses and supercooled liquids.

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