Description
In a rapidly evolving field of mathematical science, the exploration of hyperbolic and Schrödinger-type evolution equations presents a multitude of challenges and opportunities. This work delves deep into the intricacies of these equations, examining their asymptotic behavior, providing rigorous estimates, and uncovering the complexities surrounding nonlinearities. The authors, Michael Ruzhansky, Mitsuru Sugimoto, and Jens Wirth, bring their expertise to bear, aiming to enrich the understanding and application of these mathematical constructs.
The book serves as a valuable resource for researchers and practitioners alike, guiding readers through the current landscape of evolution equations. By blending theoretical rigor with practical applications, it opens new avenues in both analysis and computational methods. The comprehensive treatment of topics encourages deeper engagement with the subject matter, making it essential for those aspiring to further their knowledge in mathematical physics or applied mathematics.
The book serves as a valuable resource for researchers and practitioners alike, guiding readers through the current landscape of evolution equations. By blending theoretical rigor with practical applications, it opens new avenues in both analysis and computational methods. The comprehensive treatment of topics encourages deeper engagement with the subject matter, making it essential for those aspiring to further their knowledge in mathematical physics or applied mathematics.
Book Details
Format
Kindle
Pages
336 pages
Language
English
Published
Aug 4, 2012
Publisher
Birkhäuser
Editions
3 editions
ISBN-10
3034804547
ISBN-13
9783034804547