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Showing posts with label Structure. Show all posts
Showing posts with label Structure. Show all posts

Friday, 17 June 2011

Software Visualization: Visualizing the Structure, Behaviour, and Evolution of Software: By Solutionsfree.blogspot.com(Free Books and Solutions Manual,Free eBooks,BSCS,BCS,Free Downloadable Books)



Software Visualization: Visualizing the Structure, Behaviour, and Evolution of Software
Publisher: Springer | ISBN: 3540465049 | edition 2007 | PDF | 191 pages | 5,86 mb

Software visualization encompasses the development and evaluation of methods for graphically representing different aspects of software, including its structure, its execution, and its evolution. Software visualization combines techniques from areas like software engineering, programming languages, data mining, computer graphics, information visualization and human-computer interaction.
So far, there exist only anthologies and proceedings about software visualization. With this book, Stephan Diehl has written the first textbook on software visualization. As such it targets both students and teachers in computer science. Topics covered include static program visualization, algorithm animation, visual debugging, as well as the visualization of the evolution of software. The author’s presentation emphasizes common principles and provides different examples mostly taken from seminal work. In addition, each chapter is followed by a list of exercises including both pen and paper exercises, as well as programming tasks. Although written mostly for graduate students, the book will also be a source for researchers in both academia and industry, as it will provide a broad and systematic overview of the area including many pointers to tools available today.

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Thursday, 26 May 2011

Principles of Nucleic Acid Structure:

 Principles of Nucleic Acid Structure
Principles of Nucleic Acid Structure
Description: This unique and practical resource provides the most complete and concise summary of underlying principles and approaches to studying nucleic acid structure, includingdiscussion of x-ray crystallography, NMR, molecular modelling, and databases. Its focus is on a survey of structures especially important for biomedical research and pharmacological applications. To aid novices, the book includes an introduction to technical lingo used to describe nucleic acid structure and conformations (roll, slide, twist, buckle, etc.). This completely updated edition features expanded coverage of the latest advances relevant to recognition of DNA and RNA by small molecules and proteins. In particular, the reader will find extensive new discussions on: RNA folding, ribosome structure and antibiotic interactions, DNA quadruplexes, DNA and RNA proteincomplexes, and short interfering RNA (siRNA). This handy guide ends with a complete list of resources, including relevant online databases and software.
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Wednesday, 25 May 2011

Fundamentals of the Physics of Solids: Volume 1: Structure and Dynamics:





This book is the first of a three-volume series written by the same author that aims to deliver a comprehensive and self-contained account of the vast field of solid-state physics. It goes far beyond most classic texts in the presentation of the properties of solids and experimentally observed phenomena, along with the basic concepts and theoretical methods used to understand them and the essential features of various experimental techniques.
The first volume deals with the atomic and magnetic structure and the dynamics of solids, the second with those electric properties that can be understood in terms of the one-particle approximation, and the third with the effects due to interactions and correlations among electrons.
This volume covers four major topics. After a brief history of solid-state physics, the introductory part presents the classification of condensed phases, describes the basic features of atoms as building blocks of solids, and analyzes how atoms bind together to form solids.
The second part deals with structural aspects. The symmetries of crystalline solids and their consequences are covered in detail.
Deviations from crystalline order either due to defects or in form of quasicrystalline or noncrystalline structures are also discussed. The third part is devoted to the theoretical description and experimental observation of lattice vibrations. Finally, magnetism due to localized magnetic moments is treated both phenomenologically and quantum mechanically.
The text provides ample material for upper-level undergraduate and graduate courses. The book also serves as a valuable reference for researchers in the field of condensed matter physics.
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