Theory and Applications of Partial Functional Differential Equations: Applied Mathematical Sciences, cartea 119
Autor Jianhong Wuen Limba Engleză Hardback – 26 sep 1996
Toate formatele și edițiile | Preț | Express |
---|---|---|
Paperback (1) | 647.73 lei 6-8 săpt. | |
Springer – oct 2011 | 647.73 lei 6-8 săpt. | |
Hardback (1) | 653.14 lei 6-8 săpt. | |
Springer – 26 sep 1996 | 653.14 lei 6-8 săpt. |
Din seria Applied Mathematical Sciences
- 13% Preț: 426.94 lei
- 13% Preț: 426.46 lei
- 13% Preț: 427.63 lei
- 24% Preț: 906.78 lei
- 23% Preț: 659.05 lei
- Preț: 375.64 lei
- 18% Preț: 909.47 lei
- 18% Preț: 795.02 lei
- 18% Preț: 950.52 lei
- 15% Preț: 645.47 lei
- 20% Preț: 755.46 lei
- Preț: 382.65 lei
- 24% Preț: 808.03 lei
- Preț: 452.62 lei
- Preț: 190.23 lei
- Preț: 399.12 lei
- 18% Preț: 966.90 lei
- 15% Preț: 643.48 lei
- 15% Preț: 528.80 lei
- Preț: 413.15 lei
- Preț: 390.25 lei
- 18% Preț: 736.01 lei
- 18% Preț: 1411.05 lei
- 15% Preț: 711.21 lei
- Preț: 395.47 lei
- 18% Preț: 1017.26 lei
- Preț: 403.15 lei
- 18% Preț: 1130.14 lei
- 18% Preț: 1134.87 lei
- 18% Preț: 1329.00 lei
- 18% Preț: 1129.65 lei
- 18% Preț: 1140.71 lei
Preț: 653.14 lei
Preț vechi: 768.40 lei
-15% Nou
Puncte Express: 980
Preț estimativ în valută:
124.98€ • 130.49$ • 103.44£
124.98€ • 130.49$ • 103.44£
Carte tipărită la comandă
Livrare economică 04-18 aprilie
Preluare comenzi: 021 569.72.76
Specificații
ISBN-13: 9780387947716
ISBN-10: 038794771X
Pagini: 432
Ilustrații: X, 432 p.
Dimensiuni: 155 x 235 x 34 mm
Greutate: 0.77 kg
Ediția:1996
Editura: Springer
Colecția Springer
Seria Applied Mathematical Sciences
Locul publicării:New York, NY, United States
ISBN-10: 038794771X
Pagini: 432
Ilustrații: X, 432 p.
Dimensiuni: 155 x 235 x 34 mm
Greutate: 0.77 kg
Ediția:1996
Editura: Springer
Colecția Springer
Seria Applied Mathematical Sciences
Locul publicării:New York, NY, United States
Public țintă
ResearchCuprins
1. Preliminaries.- 1.1 Semigroups and generators.- 1.2 Function spaces, elliptic operators, and maximal principles.- Bibliographical Notes.- 2. Existence and Compactness of Solution Semiflows.- 2.1 Existence and compactness.- 2.2 Local existence and global continuation.- 2.3 Extensions to neutral partial functional differential equations.- Bibliographical Notes.- 3. Generators and Decomposition of State Spaces for Linear Systems.- 3.1 Infinitesimal generators of solution semiflows of linear systems.- 3.2 Decomposition of state spaces by invariant subspaces.- 3.3 Computation of center, stable, and unstable subspaces.- 3.4 Extensions to equations with infinite delay.- 3.5 L2-stability and reduction of neutral equations.- Bibliographical Notes.- 4. Nonhomogeneous Systems and Linearized Stability.- 4.1 Dual operators and an alternative theorem.- 4.2 Variation of constants formula.- 4.3 Existence of periodic or almost periodic solutions.- 4.4 Principle of linearized stability.- 4.5 Fundamental transformations and representations of solutions.- Bibliographical Notes.- 5. Invariant Manifolds of Nonlinear Systems.- 5.1 Stable and unstable manifolds.- 5.2 Center manifolds.- 5.3 Flows on center manifolds.- 5.4 Global invariant manifolds of perturbed wave equations.- Bibliographical Notes.- 6. Hopf Bifurcations.- 6.1 Some classical Hopf bifurcation theorems for ODEs.- 6.2 Smooth local Hopf bifurcations: a special case.- 6.3 Some examples from population dynamics.- 6.4 Smooth local Hopf bifurcations: general situations.- 6.5 A topological global Hopf bifurcation theory.- 6.6 Global continuation of wave solutions.- Bibliographical Notes.- 7. Small and Large Diffusivity.- 7.1 Destablization of periodic solutions by small diffusivity.- 7.2 Large diffusivity under Neumann boundary conditions.- Bibliographical Notes.- 8. Invariance, Comparison, and Upper and Lower Solutions.- 8.1 Invariance and inequalities.- 8.2 Systems and strict inequalities.- 8.3 Applications to reaction diffusion equations with delay.- Bibliographical Notes.- 9. Convergence, Monotonicity, and Contracting Rectangles.- 9.1 Monotonicity and generic convergence.- 9.2 Stability and steady state solutions of quasimonotone systems.- 9.3 Comparison and convergence results.- 9.4 Applications to Lotka-Volterra competition models.- Bibliographical Notes.- 10. Dispativeness, Exponential Growth, and Invariance Principles.- 10.1 Point dispativeness in a scalar equation.- 10.2 Convergence in a scalar equation.- 10.3 Exponential growth in a scalar equation.- 10.4 An invariance principle.- Bibliographical Notes.- 11. Traveling Wave Solutions.- 11.1 Huxley nonlinearities and phase plane arguments.- 11.2 Delayed Fisher equation: sub-super solution method.- 11.3 Systems and monotone iteration method.- 11.4 Traveling oscillatory waves.- Bibliographical Notes.