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Viser: Introduction to Numerical Modeling in the Earth and Planetary Sciences
Introduction to Numerical Modeling in the Earth and Planetary Sciences Vital Source e-bog
Christian Huber
(2025)
Introduction to Numerical Modeling in the Earth and Planetary Sciences Vital Source e-bog
Christian Huber
(2025)
Introduction to Numerical Modeling in the Earth and Planetary Sciences Vital Source e-bog
Christian Huber
(2025)
Introduction to Numerical Modeling in the Earth and Planetary Sciences
Christian Huber
(2025)
Sprog: Engelsk
om ca. 15 hverdage
Detaljer om varen
- Vital Source 180 day rentals (fixed pages)
- Udgiver: Oxford University Press (Juli 2025)
- ISBN: 9780192523778R180
Online udgaven er tilgængelig: 180 dage fra købsdato.
Offline udgaven er tilgængelig: 180 dage fra købsdato.
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Detaljer om varen
- Vital Source 365 day rentals (fixed pages)
- Udgiver: Oxford University Press (Juli 2025)
- ISBN: 9780192523778R365
Online udgaven er tilgængelig: 365 dage fra købsdato.
Offline udgaven er tilgængelig: 365 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 searchable e-book (Fixed pages)
- Udgiver: Oxford University Press (Juli 2025)
- ISBN: 9780192523778
Bookshelf online: 4 år fra købsdato.
Bookshelf appen: ubegrænset dage fra købsdato.
Udgiveren oplyser at følgende begrænsninger er gældende for dette produkt:
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Detaljer om varen
- Hardback: 272 sider
- Udgiver: Oxford University Press (Juli 2025)
- ISBN: 9780198802716
The book is designed to provide a self-contained reference by including the mathematical foundations required to understand the models and their convergence. It includes a detailed discussion of models for ordinary systems of equation and partial differential equations, with pseudo-codes detailing the solution procedure. Examples are drawn from the fields of earth and planetary sciences, including, geochemical box models, non-linear ordinary differential equations describing the evolution of subvolcanic magma chambers, the mass conservation of cosmogenic nuclides in soils, diffusion in minerals, the hillslope equation, the advection-diffusion and wave equations and the shallow water equations.
Featuring numerous examples drawn from earth and planetary sciences, the content of this book has been used by the author to teach numerical methods classes at the undergraduate and graduate levels over several years, and will provide an excellent resources for teachers and learners in this area.
Part I - Mathematical concepts1. Introduction to real valued calculus2. Introduction to multivariate calculus3. Elements of complex calculus4. Elements of linear algebra5. Treating functions as vectors6. Ordinary Differential Equations (ODEs)7. Partial Differential Equations (PDEs)
Part II - Numerical Modeling, Ordinary Differential Equations (ODEs)8. First order ODE (time integration): The nuclear decay equation as a starting point9. What controls convergence? What relates convergence and stability?10. Box Models: from single to multiple coupled ODEs11. Higher order ODEs12. Higher order discretization methodsPart III - Numerical Modeling, Partial Differential Equations (PDEs)13. Important mathematical notions when working with PDEs14. Von Neumann stability analysis: concepts15. 1-D advection equation16. Diffusion equation17. 1-D advection-diffusion equation18. 1-D wave equation19. The shallow water equationPart IV - Overview of other numerical methods20. Top-down approaches21. Bottom-up approaches