
Fractional Diffusion and Wave Equations
well-posedness and inverse problems
$509.29
- Hardcover
344 pages
- Release Date
6 November 2024
Summary
Unlocking Time: Fractional Diffusion and Wave Equations
This monograph delves into the theory of time-fractional diffusion and wave equations, presenting a comprehensive exploration of recent advancements in the field. Key topics include well-posedness, regularity, and approximate controllability of Cauchy problems, as well as the existence and regularity of terminal value problems. Detailed examples illustrate the applications of these equations, demonstrating their practical relev…
Book Details
ISBN-13: | 9783031740305 |
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ISBN-10: | 3031740300 |
Author: | Yong Zhou |
Publisher: | Springer International Publishing AG |
Imprint: | Springer International Publishing AG |
Format: | Hardcover |
Number of Pages: | 344 |
Edition: | 2024th |
Release Date: | 6 November 2024 |
Weight: | 0g |
Dimensions: | 235mm x 155mm |
About The Author
Yong Zhou
Dr. Yong Zhou is a Professor at Macau University of Science and Technology. His research fields include fractional differential equations, evolution equations and control theory. Zhou has published seven monographs in Springer, Elsevier, De Gruyter, World Scientific respectively, and more than three hundred research papers in international journals including Mathematische Annalen, Journal of Functional Analysis, Nonlinearity, Inverse Problems, Proceedings of the Royal Society of Edinburgh, and so on. Zhou has undertaken five projects from National Natural Science Foundation of China, and two projects from the Macau Science and Technology Development Fund. He won the second prize of Chinese University Natural Science Award in 2000, and the second prize of Natural Science Award of Hunan Province, China in 2017 and 2021. Zhou had worked as an Associate Editor for IEEE Transactions on Fuzzy Systems, Journal of Applied Mathematics & Computing, Mathematical Inequalities & Applications, and an Editorial Board Member of Fractional Calculus and Applied Analysis.
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