Great Deals on Used Textbooks & New Textbooks!             
My Account | Help Desk | Market Place Shopping Cart
Free shipping. Click here for details.
No items in cart.
Total: $0.00
Textbooks Sell Textbooks Books Supplies Medical Books College Apparel Movies Clearance
Search  Advanced >>
Related Topics: Science >> Biochemistry
Nonlinear Physics of DNA,9780471978244
Other versions by this Author
Details>>

Nonlinear Physics of DNA


Author(s): Ludmila V. Yakushevich (Institute for Cell Biophysics, Russian Academy of Sciences, Pushchino, Russia )
ISBN10:  0471978248
ISBN13:  9780471978244
Format:  Hardcover
Pub. Date:  4/1/1998
Publisher(s): WILEY

Buy in Bulk

Share |
New Price  $321.75
List Price $330.00
eVIP Price  $305.67
New Copy:  Usually Ships in 2-3 Business Days
add remove
Marketplace Price $113.18
List Price $330.00 Available in the eCampus Marketplace
Take 90 Days to Pay on $250 or more
with Quick, Easy, Secure
Subject to credit approval.
SummaryTable of Contents
The study of DNA is one of the most important areas of research in modern biochemistry and biology. It is an extremely complex field, and in recent years researchers have found that the application of nonlinear physics methods has led to significant increases in our understanding of the subject. This, the first book on the subject, examines both the experimental and theoretical methods which have been used to study the DNA molecule. Beginning with introductory chapters on DNA structure and dynamics, Nonlinear Physics of DNA goes on to discuss the more advanced recent work. This includes a comparison between linear and nonlinear approaches to the DNA molecule, a chapter devoted to the statistics of nonlinear excitations of DNA, and examples of the interpretation of experimental data on the dynamics of DNA in terms of nonlinear theory. Nonlinear Physics of DNA will prove essential reading for graduate students and researchers in biophysics and nonlinear physics as well as allowing biologists, biochemists and physicists to continue to develop nontraditional techniques of investigating the DNA molecule.
PREFACE xi
1 DNA STRUCTURE
1(19)
1.1 Chemical Composition and Primary Structure
1(3)
1.2 Spatial Geometry and Secondary Structure
4(2)
1.3 Forces Stabilizing Secondary DNA Structure
6(3)
1.4 Polymorphism
9(1)
1.5 Tertiary Structure
10(2)
1.6 Approximate Models of DNA Structure
12(6)
1.7 Experimental Methods of Studying DNA Structure
18(2)
2 DNA DYNAMICS
20(23)
2.1 General Picture of DNA Internal Mobility
20(3)
2.2 Twisting and Bending Motions
23(1)
2.3 Dynamics of Bases
24(3)
2.4 Dynamics of the Sugar-Phosphate Backbone
27(3)
2.5 Conformational Transitions
30(2)
2.6 Motions Associated with Local Strand Separation
32(1)
2.7 Approximate Models of DNA Dynamics
33(2)
2.8 Experimental Methods of Studying DNA Dynamics
35(8)
3 DNA FUNCTIONING
43(9)
3.1 Physical Aspects of DNA Functioning
43(1)
3.2 Intercalation
44(2)
3.3 DNA-Protein Recognition
46(1)
3.4 Gene Expression
47(2)
3.5 Regulation of Gene Expression
49(2)
3.6 Replication
51(1)
4 LINEAR THEORY OF DNA
52(34)
4.1 The Main Mathematical Models
52(13)
4.2 Statistics of Linear Excitations
65(11)
4.3 The Scattering Problem
76(8)
4.4 Linear Theory and Experiment
84(2)
5 NONLINEAR THEORY OF DNA: IDEAL DYNAMICAL MODELS
86(37)
5.1 Nonlinear Mathematical Modeling: General Principles and Restrictions
86(4)
5.2 Nonlinear Rod-like Models
90(5)
5.3 Nonlinear Double Rod-like Models
95(21)
5.4 Nonlinear Models of Higher Levels
116(7)
6 NONLINEAR THEORY OF DNA: NON-IDEAL MODELS
123(17)
6.1 Effects of Environment
123(7)
6.2 Effects of Inhomogeneity
130(6)
6.3 Effects of Helicity
136(4)
7 NONLINEAR THEORY OF DNA: STATISTICS OF NONLINEAR EXCITATIONS
140(20)
7.1 PBD Approach
140(3)
7.2 Ideal Gas Approximation
143(3)
7.3 The Scattering Problem and Nonlinear Mathematical Models
146(14)
8 EXPERIMENTAL TESTS OF DNA NONLINEARITY
160(10)
8.1 Hydrogen-Tritium (or Hydrogen-Deuterium) Exchange
160(2)
8.2 Resonant Microwave Absorption
162(2)
8.3 Scattering of Neutrons and Light
164(4)
8.4 Fluorescence Depolarization
168(2)
9 NONLINEARITY AND FUNCTIONING
170(11)
9.1 Nonlinear Mechanism of Conformational Transitions
170(2)
9.2 Nonlinear Conformational Waves and Long-range Effects
172(2)
9.3 Nonlinear Mechanism of Regulation of Transcription
174(1)
9.4 Direction of Transcription Process
175(2)
9.5 Nonlinear Model of DNA Denaturation
177(4)
APPENDIX 1 Mathematical Description of Torsional and Bending Motions 181(3)
APPENDIX 2 Structural and Dynamical Parameters 184(4)
REFERENCES 188(15)
INDEX 203

Check Out These Items!
eCampus.com Portfolio eCampus.com Portfolio
Retail Price $12.99
Our Price $5.00
eCampus.com T-Shirt eCampus.com T-Shirt
Retail Price $14.99
Our Price $2.00
eCampus.com 4GB USB Drive eCampus.com 4GB USB Drive
Retail Price $32.95
Our Price $25.00
eCampus.com Pen eCampus.com Pen
Retail Price $2.99
Our Price $0.50
  Buy Textbooks
  Sell Textbooks
  College Apparel
  Shop by School
  Virtual Bookstores
  Order Status
  Shipping Rates
  Return Policy
  Marketplace Info
  F.A.S.T.
  Contact Us
  Privacy Policy
  Legal Notices
  Site Security
  Employment
  Help Desk
  eCampus Blog
  Affiliate Program
  Bulk Orders
  College Marketing
HACKER SAFE certified sites prevent over 99.9% of hacker crime.
eCampus.com blog follow eCampus.com on twitter find eCampus.com on facebook RSS Need Help? eService@ecampus.com   Copyright© 1999-2010    PayPal  
.