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Breakthroughs in handling nonlinear systems have had a tremendous impact throughout the sciences, allowing researchers to create more realistic models for a wide range of processes. This book, although written at an introductory level, covers some of the most exciting recent work, including soliton theory, nonlinear lattices, excitable media, perturbation theory, and the theory of quantum lattices. It will be a valuable guide for graduate students and researchers in physics, applied mathematics, biophysics, and engineering.
This text investigates the mathematical frameworks and physical mechanisms that govern the emergence and stability of coherent structures within nonlinear systems. The authors, M.P. Soerensen and P.L. Christiansen, synthesize complex theoretical concepts into an introductory format suitable for advanced students and practitioners. By examining the interaction between nonlinear dynamics and physical processes, the book provides a rigorous foundation for modeling phenomena across diverse scientific disciplines.
What You Will Find
Experts recognize this work as a structured introduction to the field of nonlinear dynamics, particularly for those transitioning from theoretical mathematics to applied engineering. Readers frequently note the technical density of the prose, which serves as a foundational resource for graduate-level research in physics and biophysics.
Page Count:
496
Publication Date:
1999-04-29
Publisher:
Oxford University Press
ISBN-10:
0198501072
ISBN-13:
9780198501077
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