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Fundamentals of polymer physics and ...
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Bohidar, Himadri B.
Fundamentals of polymer physics and molecular biophysics[electronic resource] /
Record Type:
Electronic resources : Monograph/item
[NT 15000414]:
530.413
Title/Author:
Fundamentals of polymer physics and molecular biophysics/ Himadri B. Bohidar.
remainder title:
Fundamentals of Polymer Physics & Molecular Biophysics
Author:
Bohidar, Himadri B.
Published:
Cambridge : : Cambridge University Press,, 2015.
Description:
xxi, 321 p. : : ill., digital ;; 24 cm.
Subject:
Polymers.
Subject:
Physics.
Subject:
Biophysics.
ISBN:
9781107415959
ISBN:
9781107058705
[NT 15000229]:
Macromolecules in solutions can be distinctly characterised by their transport behaviour in solution phase. The study of the transport processes includes diffusion coefficient, sedimentation coefficient, intrinsic viscosity and friction constant. The question arises as to how to explicitly characterise the macromolecules from the data of coefficients. This book answers this question in a systematic manner. It provides physical interpretation of the data obtained in macromolecular transport phenomena in a given system and also addresses some important issues and concepts related to biopolymers such as proteins and nucleic acids. The application of concepts like conformational properties and salient physicochemical features of protein and nucleic acids is also elucidated in the book. Based on the molecular structure, it provides the essential concepts which can be used to model and analyse the static and transport behaviour of polymers and biopolymers.
Online resource:
https://doi.org/10.1017/CBO9781107415959
Fundamentals of polymer physics and molecular biophysics[electronic resource] /
Bohidar, Himadri B.
Fundamentals of polymer physics and molecular biophysics
[electronic resource] /Fundamentals of Polymer Physics & Molecular BiophysicsHimadri B. Bohidar. - Cambridge :Cambridge University Press,2015. - xxi, 321 p. :ill., digital ;24 cm.
Macromolecules in solutions can be distinctly characterised by their transport behaviour in solution phase. The study of the transport processes includes diffusion coefficient, sedimentation coefficient, intrinsic viscosity and friction constant. The question arises as to how to explicitly characterise the macromolecules from the data of coefficients. This book answers this question in a systematic manner. It provides physical interpretation of the data obtained in macromolecular transport phenomena in a given system and also addresses some important issues and concepts related to biopolymers such as proteins and nucleic acids. The application of concepts like conformational properties and salient physicochemical features of protein and nucleic acids is also elucidated in the book. Based on the molecular structure, it provides the essential concepts which can be used to model and analyse the static and transport behaviour of polymers and biopolymers.
ISBN: 9781107415959Subjects--Topical Terms:
381178
Polymers.
LC Class. No.: QD281.P6 / B62 2015
Dewey Class. No.: 530.413
Fundamentals of polymer physics and molecular biophysics[electronic resource] /
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Macromolecules in solutions can be distinctly characterised by their transport behaviour in solution phase. The study of the transport processes includes diffusion coefficient, sedimentation coefficient, intrinsic viscosity and friction constant. The question arises as to how to explicitly characterise the macromolecules from the data of coefficients. This book answers this question in a systematic manner. It provides physical interpretation of the data obtained in macromolecular transport phenomena in a given system and also addresses some important issues and concepts related to biopolymers such as proteins and nucleic acids. The application of concepts like conformational properties and salient physicochemical features of protein and nucleic acids is also elucidated in the book. Based on the molecular structure, it provides the essential concepts which can be used to model and analyse the static and transport behaviour of polymers and biopolymers.
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https://doi.org/10.1017/CBO9781107415959
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