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Viser: Laplacian Growth on Branched Riemann Surfaces
Laplacian Growth on Branched Riemann Surfaces Vital Source e-bog
Björn Gustafsson og Yu-Lin Lin
(2021)
Laplacian Growth on Branched Riemann Surfaces Vital Source e-bog
Björn Gustafsson og Yu-Lin Lin
(2021)
Laplacian Growth on Branched Riemann Surfaces
Bjö Gustafsson og Yu-Lin Lin
(2021)
Sprog: Engelsk
Detaljer om varen
- Vital Source leje e-bog 90 dage
- Udgiver: Springer Nature (Marts 2021)
- Forfattere: Björn Gustafsson og Yu-Lin Lin
- ISBN: 9783030698638R90
Bookshelf online: 90 dage fra købsdato.
Bookshelf appen: 90 dage fra købsdato.
Udgiveren oplyser at følgende begrænsninger er gældende for dette produkt:
Print: 2 sider kan printes ad gangen
Copy: højest 2 sider i alt kan kopieres (copy/paste)
Detaljer om varen
- Vital Source leje e-bog 180 dage
- Udgiver: Springer Nature (Marts 2021)
- Forfattere: Björn Gustafsson og Yu-Lin Lin
- ISBN: 9783030698638R180
Bookshelf online: 180 dage fra købsdato.
Bookshelf appen: 180 dage fra købsdato.
Udgiveren oplyser at følgende begrænsninger er gældende for dette produkt:
Print: 2 sider kan printes ad gangen
Copy: højest 2 sider i alt kan kopieres (copy/paste)
Detaljer om varen
- Paperback
- Udgiver: Springer International Publishing AG (Marts 2021)
- Forfattere: Bjö Gustafsson og Yu-Lin Lin
- ISBN: 9783030698621
This book studies solutions of the Polubarinova-Galin and Löwner-Kufarev equations, which describe the evolution of a viscous fluid (Hele-Shaw) blob, after the time when these solutions have lost their physical meaning due to loss of univalence of the mapping function involved. When the mapping function is no longer locally univalent interesting phase transitions take place, leading to structural changes in the data of the solution, for example new zeros and poles in the case of rational maps.
This topic intersects with several areas, including mathematical physics, potential theory and complex analysis. The text will be valuable to researchers and doctoral students interested in fluid dynamics, integrable systems, and conformal field theory.