Bültmann & Gerriets
Trends and Perspectives in Applied Mathematics
von Lawrence Sirovich
Verlag: Palgrave MacMillan Us
Reihe: Applied Mathematical Sciences Nr. 100
Gebundene Ausgabe
ISBN: 978-0-387-94201-8
Auflage: 1994 edition
Erschienen am 13.05.1994
Sprache: Englisch
Format: 242 mm [H] x 162 mm [B] x 22 mm [T]
Gewicht: 676 Gramm
Umfang: 337 Seiten

Preis: 56,50 €
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Klappentext
Inhaltsverzeichnis

This marks the 100th volume to appear in the Applied Mathematical Sci­ ences series. Partial Differential Equations, by Fritz John, the first volume of the series, appeared in 1971. One year prior to its appearance, the then mathematics editor of Springer-Verlag, Klaus Peters, organized a meeting to look into the possibility of starting a series slanted toward applications. The meeting took place in New Rochelle, at the home of Fritz and Char­ lotte John. K.O. Friedrichs, Peter Lax, Monroe Donsker, Joe Keller, and others from the Courant Institute (previously, the Institute for Mathemat­ ical Sciences) were present as were Joe LaSalle and myself, the two of us having traveled down from Providence for the meeting. The John home, a large, comfortable house, especially lent itself to the informal, relaxed, and wide-ranging discussion that ensued. What emerged was a consensus that mathematical applications appeared to be poised for a period of growth and that there was a clear need for a series committed to applied mathematics. The first paragraph ofthe editorial statement written at that time reads as follows: The mathematization of all sciences, the fading of traditional scientific boundaries, the impact of computer technology, the growing importance of mathematical-computer modeling and the necessity of scientific planning all create the need both in education and research for books that are introductory to and abreast of these developments.



1 Mathematical Problems in Classical Physics.- 2 Geometric and Analytic Studies in Turbulence.- 3 Riemann Maps and World Maps.- 4 Symmetry of Attractors and the Karhunen-Loève Decomposition.- 5 Viscous and Viscoelastic Potential Flow.- 6 Singularities and Similarities in Interface Flows.- 7 Difference Methods for Time-Dependent Partial Differential Equations.- 8 Statistical Mechanics of Nonlinear Wave Equations.- 9 Geometric Mechanics, Stability, and Control.- 10 Applications of Inertial Manifolds to Scientific Computing: A New Insight in Multilevel Methods.


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