Stability and Chaos in Celestial Mechanics
Our rough guess is there are 65,250 words in this book.
At a pace averaging 250 words per minute, this book will take 4 hours and 21 minutes to read. With a half hour per day, this will take 9 days to read.
How long will it take you?
This book will take an estimated to read at a reading speed averaging words per minute. With 30 minutes per day, this will take to read.
Enter your reading speedYou can take one of our WPM reading speed tests to find your reading speed.
Create a free account to track your reading progress, build your reading list, and set reading goals.
Author
Contributions
- SpringerLink (Online service) - Contributor
Publication
2010 - Springer-Verlag Berlin Heidelberg, Berlin, Heidelberg, Germany
Language
English
Word Count
65,250 words, Guess
Page Count
261 pages
Physical Format
Electronic resource
Identifiers
- Internet Archivestabilitychaosce00cell_334
- Internet Archivestabilitychaosce00cell
- Internet Archivestabilitychaosce00cell_169
- Internet Archivestabilitychaosce00cell_528
- Internet Archivestabilitychaosce00cell_564
and 9 more
- ISBN-139783540851455
- ISBN-139783540851462
- ISBN-103540851453
- ISBN-103540851461
- Library of Congress Control Number2009936867
- OCLC Control Number401157563
- Better World Books9783540851455
- Better World Books9783540851462
- Open LibraryOL25554213M
Classifications
- LCCQB351 .C443 2010
- LCCQB1-991
- LCCQB351 .C4414 2010
Description
This book presents classical celestial mechanics and its interplay with dynamical systems in a way suitable for advance level undergraduate students as well as postgraduate students and researchers. First paradigmatic models are used to introduce the reader to the concepts of order, chaos, invariant curves, cantori. Next the main numerical methods to investigate a dynamical system are presented. Then the author reviews the classical two-body problem and proceeds to explore the three-body model in order to investigate orbital resonances and Lagrange solutions. In rotational dynamics the author details the derivation of the rigid body motion, and continues by discussing related topics, from spin-orbit resonances to dumbbell satellite dynamics. Perturbation theory is then explored in full detail including practical examples of its application to finding periodic orbits, computation of the libration in longitude of the Moon. The main ideas of KAM theory are provided including a presentation of long-term stability and converse KAM results. Celletti then explains the implementation of computer-assisted techniques, which allow the user to obtain rigorous results in good agreement with the astronomical expectations. Finally the study of collisions in the solar system is approached.
Subjects
Series Statement
- Springer Praxis Books
Other Editions
- Stability and Chaos in Celestial Mechanics
Reader Reviews
No reviews yet for this book.
Be the first to share your thoughts!