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A Primer on Radial Basis Functions with Applications to the Geosciences
  • Language: en
  • Pages: 226

A Primer on Radial Basis Functions with Applications to the Geosciences

  • Type: Book
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  • Published: 2015-09-30
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  • Publisher: SIAM

?Adapted from a series of lectures given by the authors, this monograph focuses on radial basis functions (RBFs), a powerful numerical methodology for solving PDEs to high accuracy in any number of dimensions. This method applies to problems across a wide range of PDEs arising in fluid mechanics, wave motions, astro- and geosciences, mathematical biology, and other areas and has lately been shown to compete successfully against the very best previous approaches on some large benchmark problems. Using examples and heuristic explanations to create a practical and intuitive perspective, the authors address how, when, and why RBF-based methods work.? The authors trace the algorithmic evolution o...

Nonlocal Modeling, Analysis, and Computation
  • Language: en
  • Pages: 181

Nonlocal Modeling, Analysis, and Computation

  • Type: Book
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  • Published: 2019-03-20
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  • Publisher: SIAM

Studies of complexity, singularity, and anomaly using nonlocal continuum models are steadily gaining popularity. This monograph provides an introduction to basic analytical, computational, and modeling issues and to some of the latest developments in these areas. Nonlocal Modeling, Analysis, and Computation includes motivational examples of nonlocal models, basic building blocks of nonlocal vector calculus, elements of theory for well-posedness and nonlocal spaces, connections to and coupling with local models, convergence and compatibility of numerical approximations, and various applications, such as nonlocal dynamics of anomalous diffusion and nonlocal peridynamic models of elasticity and...

Solitons in Two-Dimensional Shallow Water
  • Language: en
  • Pages: 267

Solitons in Two-Dimensional Shallow Water

  • Type: Book
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  • Published: 2018-12-10
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  • Publisher: SIAM

Web-like waves, often observed on the surface of shallow water, are examples of nonlinear waves. They are generated by nonlinear interactions among several obliquely propagating solitary waves, also known as solitons. In this book, modern mathematical tools?algebraic geometry, algebraic combinatorics, and representation theory, among others?are used to analyze these two-dimensional wave patterns. The author?s primary goal is to explain some details of the classification problem of the soliton solutions of the KP equation (or KP solitons) and their applications to shallow water waves. This book is intended for researchers and graduate students.

Inverse Scattering Theory and Transmission Eigenvalues
  • Language: en
  • Pages: 200

Inverse Scattering Theory and Transmission Eigenvalues

  • Type: Book
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  • Published: 2016-10-28
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  • Publisher: SIAM

Inverse scattering theory is a major theme of applied mathematics, and it has applications to such diverse areas as medical imaging, geophysical exploration, and nondestructive testing. The inverse scattering problem is both nonlinear and ill-posed, thus presenting particular problems in the development of efficient inversion algorithms. Although linearized models continue to play an important role in many applications, an increased need to focus on problems in which multiple scattering effects cannot be ignored has led to a central role for nonlinearity, and the possibility of collecting large amounts of data over limited regions of space means that the ill-posed nature of the inverse scatt...

Singular Perturbations and Boundary Layers
  • Language: en
  • Pages: 412

Singular Perturbations and Boundary Layers

  • Type: Book
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  • Published: 2018-11-21
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  • Publisher: Springer

Singular perturbations occur when a small coefficient affects the highest order derivatives in a system of partial differential equations. From the physical point of view singular perturbations generate in the system under consideration thin layers located often but not always at the boundary of the domains that are called boundary layers or internal layers if the layer is located inside the domain. Important physical phenomena occur in boundary layers. The most common boundary layers appear in fluid mechanics, e.g., the flow of air around an airfoil or a whole airplane, or the flow of air around a car. Also in many instances in geophysical fluid mechanics, like the interface of air and eart...

Solving Problems in Multiply Connected Domains
  • Language: en
  • Pages: 456

Solving Problems in Multiply Connected Domains

  • Type: Book
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  • Published: 2020-04-20
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  • Publisher: SIAM

Whenever two or more objects or entities—be they bubbles, vortices, black holes, magnets, colloidal particles, microorganisms, swimming bacteria, Brownian random walkers, airfoils, turbine blades, electrified drops, magnetized particles, dislocations, cracks, or heterogeneities in an elastic solid—interact in some ambient medium, they make holes in that medium. Such holey regions with interacting entities are called multiply connected. This book describes a novel mathematical framework for solving problems in two-dimensional, multiply connected regions. The framework is built on a central theoretical concept: the prime function, whose significance for the applied sciences, especially for...

Numerical Mathematics and Advanced Applications 2009
  • Language: en
  • Pages: 900
Fractal Analysis
  • Language: en
  • Pages: 296

Fractal Analysis

Fractal analysis has entered a new era. The applications to different areas of knowledge have been surprising. Let us begin with the fractional calculus-fractal geometry relationship, which allows for modeling with extreme precision of phenomena such as diffusion in porous media with fractional partial differential equations in fractal objects. Where the order of the equation is the same as the fractal dimension, this allows us to make calculations with enormous precision in diffusion phenomena-particularly in the oil industry, for new spillage prevention. Main applications to industry, design of fractal antennas to receive all frequencies and that is used in all cell phones, spacecraft, radars, image processing, measure, porosity, turbulence, scattering theory. Benoit Mandelbrot, creator of fractal geometry, would have been surprised by the use of fractal analysis presented in this book: "Part I: Petroleum Industry and Numerical Analysis"; "Part II: Fractal Antennas, Spacecraft, Radars, Image Processing, and Measure"; and "Part III: Scattering Theory, Porosity, and Turbulence." It's impossible to picture today's research without fractal analysis.

Weakly Nonlocal Solitary Waves and Beyond-All-Orders Asymptotics
  • Language: en
  • Pages: 609

Weakly Nonlocal Solitary Waves and Beyond-All-Orders Asymptotics

This is the first thorough examination of weakly nonlocal solitary waves, which are just as important in applications as their classical counterparts. The book describes a class of waves that radiate away from the core of the disturbance but are nevertheless very long-lived nonlinear disturbances.

Mathematics Motivated by the Social and Behavioral Sciences
  • Language: en
  • Pages: 171

Mathematics Motivated by the Social and Behavioral Sciences

  • Type: Book
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  • Published: 2018-02-06
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  • Publisher: SIAM

The mathematical challenges coming from the social and behavioral sciences differ significantly from typical applied mathematical concerns. “Change,” for instance, is ubiquitous, but without knowing the fundamental driving force, standard differential and iterative methods are not appropriate. Although differing forms of aggregation are widely used, a general mathematical assessment of potential pitfalls is missing. These realities provide opportunities to create new mathematical approaches. These themes are described in an introductory, expository, and accessible manner by exploring new ways to handle dynamics and evolutionary game theory, to identify subtleties of decision and voting methods, to recognize unexpected modeling concerns, and to introduce new approaches with which to examine game theory. Applications range from avoiding undesired consequences when designing policy to identifying unanticipated voting (where the “wrong” person could win), nonparametric statistical, and economic “supply and demand” properties.