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Advances in Applied Mathematics, Modeling, and Computational Science: Fields Institute Communications, cartea 66

Editat de Roderick Melnik, Ilias S. Kotsireas
en Limba Engleză Hardback – 23 sep 2012
The volume presents a selection of in-depth studies and state-of-the-art surveys of several challenging topics that are at the forefront of modern applied mathematics, mathematical modeling, and computational science. These three areas represent the foundation upon which the methodology of mathematical modeling and computational experiment is built as a ubiquitous tool in all areas of mathematical applications. This book covers both fundamental and applied research, ranging from studies of elliptic curves over finite fields with their applications to cryptography, to dynamic blocking problems, to random matrix theory with its innovative applications. The book provides the reader with state-of-the-art achievements in the development and application of new theories at the interface of applied mathematics, modeling, and computational science.
This book aims at fostering interdisciplinary collaborations required to meet the modern challenges of applied mathematics, modeling, and computational science. At the same time, the contributions combine rigorous mathematical and computational procedures and examples from applications ranging from engineering to life sciences, providing a rich ground for graduate student projects.
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Specificații

ISBN-13: 9781461453888
ISBN-10: 1461453887
Pagini: 252
Ilustrații: X, 242 p.
Dimensiuni: 155 x 235 x 18 mm
Greutate: 0.52 kg
Ediția:2013
Editura: Springer Us
Colecția Springer
Seria Fields Institute Communications

Locul publicării:New York, NY, United States

Public țintă

Research

Cuprins

Preface.-Interconnected Challenges and New Perspectives in Applied Mathematical and Computational Sciences (Melnik, Korsireas).-Dynamic Blocking Problems for a Model of Fire Propagation (Bressan).-Inverse Lax-Wendroff Procedure for Numerical Boundary Conditions of Hyperbolic Equations: Survey and New Developments (Tan, Shu).-Illiptic Curves Over Finite Fields (Shparlinski).-Random Matrix Theory and its Innovative (Edelman, Wang).-Boundary Closures for Sixth-Order Energy-Stable Weighted Essentially Non-Oscillatory Finite-Difference Schemes (Carpenter, Yamaleev, Fisher).-A Multiscale Method Coupling Network and Continuum Models in Porous Media II—Single- and Two-Phase Flows (Chu, Engquist, Prodanovic, Tsai).-Statistical Geometry and Topology of the Human Placenta (Seong, Getreuer, Li, Girardi, Salafia, Vvedensky).-Illustrating Optimal Control Applications with Discrete and Continuous Features (Lenhart, Bodine, Zhong, Joshi).

Textul de pe ultima copertă

This volume presents a selection of in-depth studies and state-of-the-art surveys of several challenging topics that are at the forefront of modern applied mathematics, mathematical modeling, and computational science.  These three areas represent the foundation upon which the methodology of mathematical modeling and computational experiment is built as a tool in all areas of applications of mathematics. The articles cover both fundamental and applied research, and provide the reader with state-of-the-art achievements in the development and application of new theories at the interfaces of applied mathematics, modeling, and computational science.

The book can serve as a reference on several important current topics in modern applied mathematics and modeling, including random matrix theory with its innovative applications, and dynamic blocking problems. Other important areas covered include: energy stable weighted essentially non-oscillatory schemes with applications in fluid dynamics and aerospace sciences; elliptic curves over finite fields and their applications in cryptography; multiple scale methods coupling network and continuum models and their applications in various areas involving porous media; new and efficient finite difference schemes for hyperbolic equations; statistical geometric  and topological techniques and their applications in the life sciences; optimal control applications combining discrete and continuous features.

The material presented in this book aims at fostering interdisciplinary collaborations required to meet the modern challenges of applied mathematics, modeling and computational science. At the same time, the contributions combine rigorous mathematical and computational procedures and examples from a variety of applications ranging from engineering to life sciences, and provide a rich source for graduate student projects.

Caracteristici

Provides state-of-the-art original works and surveys on several key areas in applied mathematics Combines rigorous mathematical procedures and important examples from applications With its many examples, the book is accessible to graduate students and can serve as a source for graduate student projects Has a strong multidisciplinary focus, promoting the methodology of mathematical modeling and computational experiment as a ubiquitous tool in applications Includes supplementary material: sn.pub/extras