Limit this search to....

Chaotic Modelling and Simulation: Analysis of Chaotic Models, Attractors and Forms
Contributor(s): Skiadas, Christos H. (Author), Skiadas, Charilaos (Author)
ISBN: 0367386658     ISBN-13: 9780367386658
Publisher: CRC Press
OUR PRICE:   $78.84  
Product Type: Paperback - Other Formats
Published: October 2019
Qty:
Temporarily out of stock - Will ship within 2 to 5 weeks
Additional Information
BISAC Categories:
- Mathematics | Differential Equations - General
- Science | Chaotic Behavior In Systems
- Science | Physics - General
Dewey: 003.857
Physical Information: 0.8" H x 6" W x 9.2" (1.65 lbs) 364 pages
 
Descriptions, Reviews, Etc.
Publisher Description:

Offers Both Standard and Novel Approaches for the Modeling of SystemsExamines the Interesting Behavior of Particular Classes of Models

Chaotic Modelling and Simulation: Analysis of Chaotic Models, Attractors and Forms presents the main models developed by pioneers of chaos theory, along with new extensions and variations of these models. Using more than 500 graphs and illustrations, the authors show how to design, estimate, and test an array of models.

Requiring little prior knowledge of mathematics, the book focuses on classical forms and attractors as well as new simulation methods and techniques. Ideas clearly progress from the most elementary to the most advanced. The authors cover deterministic, stochastic, logistic, Gaussian, delay, Hénon, Holmes, Lorenz, Rössler, and rotation models. They also look at chaotic analysis as a tool to design forms that appear in physical systems; simulate complicated and chaotic orbits and paths in the solar system; explore the Hénon-Heiles, Contopoulos, and Hamiltonian systems; and provide a compilation of interesting systems and variations of systems, including the very intriguing Lotka-Volterra system.

Making a complex topic accessible through a visual and geometric style, this book should inspire new developments in the field of chaotic models and encourage more readers to become involved in this rapidly advancing area.