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dc.contributor.advisorAhmad, Faozan
dc.contributor.advisorHusinAlatas
dc.contributor.authorZuliyatin
dc.date.accessioned2013-06-18T02:25:55Z
dc.date.available2013-06-18T02:25:55Z
dc.date.issued2013
dc.identifier.urihttp://repository.ipb.ac.id/handle/123456789/64143
dc.description.abstractA basic problem of many biological processes at biomolecular level is mechanism of transfer of bioenergy released by ATP hydrolysis in protein. Davydov’sModel is a model that could describe that mechanism. The Davydov’s model adopted in this research use ansatz as trial function with the variation of dipole-dipole coupling between nearest unit of peptides in the form of a constant function, gaussian function, gradient-line function. We found three dynamical cases that are travelling soliton, bending soliton and breathing soliton. The dynamics are related to the energy transfer in the protein and deflection of soliton that can be controlled by strength of dipole-dipole coupling (Jn), coupling of exciton-phonon ( χ ), and initial condition.en
dc.subjectBogor Agricultural University (IPB)en
dc.subjectdistribution of energyen
dc.subjectDavydoven
dc.subjectsolitonen
dc.subjectα-heliks proteinen
dc.titleDinamika Transfer Energi Pada Protein α-Heliks Berdasarkan Ansatz I Model Davydov Dengan Variasi Kopling Antar Peptidaen
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