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Titlebook: Davydov’s Soliton Revisited; Self-Trapping of Vib Peter Leth Christiansen,Alwyn C. Scott Book 1990 Springer Science+Business Media New York

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Conclusions and Future Researche-I or .(NH) vibration in a hydrogen-bonded polypeptide or polyamide chain. Both the split-valence 4-3 1G and STO-3G atomic orbital basis sets are utilized in this study, and a hydrogen-bonded, linear formamide dimer is employed as a model of the chain. The theoretical analysis of the linear dimer c
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Definition of Customer Co-Designy parameters (χ’s) these experimental estimates are of a comparatively indirect and uncertain nature. Since some analytic and numeric studies show that soliton propagation in the discrete chain only is possible for | χ| within certain limits it is of interest to look for alternative ways of estimati
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Quantum-Mechanical Derivation of the Davydov Equations for Multi-Quanta Statesins of molecules. The problem was to explain how the energy released by hydrolysis of adenosine triphosphate and transferred to proteins in biological systems remains localized and moves along the protein chains at a reasonable rate to perform useful biological functions. The α-helix protein structu
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A Classical and Quantum Theory of Dynamical Self-Trapping in Nonlinear Systems and its Implication tuantum systems has received much attention in recent years. The principal reason for the upsurge of the renewed interest is due to: (i) The development of the soliton theory in mathematical physics. (ii) Ever-lasting interest in Davydov solitons and their possible implication to biological energy tr
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