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Book Categories |
Preface | ||
1 | Introduction | 1 |
2 | Macromolecular stability | 17 |
3 | Lattice dynamics | 47 |
4 | Effective phonon theory | 60 |
5 | Premelting disrupted chemical bonds | 78 |
6 | Cooperative melting | 88 |
7 | Strained chemical bonds: salt and pressure effects | 103 |
8 | Bond disruption and conformation change: B to Z conformation change in DNA | 117 |
9 | Hydration effects: structural water | 127 |
10 | Helix with daunomycin intercalated: increased helix stability and daunomycin-DNA binding constant | 137 |
11 | Nonrepeating DNA | 146 |
12 | Cutting and splicing: junctions, inserts, and the replicating fork | 159 |
13 | Interaction between a helix and a single attached molecule | 173 |
14 | Energy considerations in bond opening | 181 |
Appendix 1. Helical lattice dynamics | 193 | |
Appendix 2. Density matrix and effective phonon theory | 199 | |
Appendix 3. Green functions | 206 | |
References | 214 | |
Index | 223 |
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Add Statistical Mechanics and Stability of Macromolecules: Application to Bond Disruption, Base Pair Separation, Melting, and Drug Dissociation of the DNA Double Helix, This book develops a statistical mechanical analysis of the stability of biological macromolecules. The author's approach is valid both for the long time-scale needed for DNA bond disruption, and also for highly cooperative transitions needed to explain h, Statistical Mechanics and Stability of Macromolecules: Application to Bond Disruption, Base Pair Separation, Melting, and Drug Dissociation of the DNA Double Helix to the inventory that you are selling on WonderClubX
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Add Statistical Mechanics and Stability of Macromolecules: Application to Bond Disruption, Base Pair Separation, Melting, and Drug Dissociation of the DNA Double Helix, This book develops a statistical mechanical analysis of the stability of biological macromolecules. The author's approach is valid both for the long time-scale needed for DNA bond disruption, and also for highly cooperative transitions needed to explain h, Statistical Mechanics and Stability of Macromolecules: Application to Bond Disruption, Base Pair Separation, Melting, and Drug Dissociation of the DNA Double Helix to your collection on WonderClub |