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DNA (deoxyribonucleic acid) is a fundamental basis of life, which is not only an interesting object of study for biologists, but also raises numerous questions demanding for physicists to solve the development of DNA physics is now still new. This paper investigates several nonlinear models for DNA...

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Main Author: DWIPUTRA (NIM. 10210046), DONNY
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/20041
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:20041
spelling id-itb.:200412017-09-27T11:45:17Z#TITLE_ALTERNATIVE# DWIPUTRA (NIM. 10210046), DONNY Indonesia Final Project INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/20041 DNA (deoxyribonucleic acid) is a fundamental basis of life, which is not only an interesting object of study for biologists, but also raises numerous questions demanding for physicists to solve the development of DNA physics is now still new. This paper investigates several nonlinear models for DNA including the soliton solutions of the motions, with in prior the DNA biological aspects: structure, dynamics, and functions are explained as the models basis. In the first part, the DNA structure is drawn completely and the DNA dynamics is pictured out by the scale of external force which had been reported by a previous experiment. The physical phenomenon in focus here is the DNA denaturation i.e. separation of both DNA chains. The nonlinear models are Englander, Muto, Yakushevich, and Peyrard-Bishop model. Each model will be explained schematically and the solutions will be derived in the manner of detail, and completed with the solutions illustrations. Several methods are used to solve the nonlinear equations one of them is the Hirota bilinear method. After the investigation of DNA models, this paper presents the statistical mechanics using Path Integral method. The Path Integral formalism, as in quantum eld theory, will be derived rigorously. To get the application in field of DNA, this paper also gives the application of Path Integral in statistical mechanics, which is the calculation of partition function Z. The method is used to do an exact calculation to get the mean stretching of the Hydrogen bond connecting the base pairs under the effect of temperature. The statistical approach gives a good description of the DNA denaturation. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description DNA (deoxyribonucleic acid) is a fundamental basis of life, which is not only an interesting object of study for biologists, but also raises numerous questions demanding for physicists to solve the development of DNA physics is now still new. This paper investigates several nonlinear models for DNA including the soliton solutions of the motions, with in prior the DNA biological aspects: structure, dynamics, and functions are explained as the models basis. In the first part, the DNA structure is drawn completely and the DNA dynamics is pictured out by the scale of external force which had been reported by a previous experiment. The physical phenomenon in focus here is the DNA denaturation i.e. separation of both DNA chains. The nonlinear models are Englander, Muto, Yakushevich, and Peyrard-Bishop model. Each model will be explained schematically and the solutions will be derived in the manner of detail, and completed with the solutions illustrations. Several methods are used to solve the nonlinear equations one of them is the Hirota bilinear method. After the investigation of DNA models, this paper presents the statistical mechanics using Path Integral method. The Path Integral formalism, as in quantum eld theory, will be derived rigorously. To get the application in field of DNA, this paper also gives the application of Path Integral in statistical mechanics, which is the calculation of partition function Z. The method is used to do an exact calculation to get the mean stretching of the Hydrogen bond connecting the base pairs under the effect of temperature. The statistical approach gives a good description of the DNA denaturation.
format Final Project
author DWIPUTRA (NIM. 10210046), DONNY
spellingShingle DWIPUTRA (NIM. 10210046), DONNY
#TITLE_ALTERNATIVE#
author_facet DWIPUTRA (NIM. 10210046), DONNY
author_sort DWIPUTRA (NIM. 10210046), DONNY
title #TITLE_ALTERNATIVE#
title_short #TITLE_ALTERNATIVE#
title_full #TITLE_ALTERNATIVE#
title_fullStr #TITLE_ALTERNATIVE#
title_full_unstemmed #TITLE_ALTERNATIVE#
title_sort #title_alternative#
url https://digilib.itb.ac.id/gdl/view/20041
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