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Mathematical Theory of Incompressible Nonviscous Fluids (Hardcover, 1994 ed.): Carlo Marchioro, Mario Pulvirenti Mathematical Theory of Incompressible Nonviscous Fluids (Hardcover, 1994 ed.)
Carlo Marchioro, Mario Pulvirenti
R4,101 Discovery Miles 41 010 Ships in 12 - 17 working days

Fluid dynamics is an ancient science incredibly alive today. Modern technol ogy and new needs require a deeper knowledge of the behavior of real fluids, and new discoveries or steps forward pose, quite often, challenging and diffi cult new mathematical {:: oblems. In this framework, a special role is played by incompressible nonviscous (sometimes called perfect) flows. This is a mathematical model consisting essentially of an evolution equation (the Euler equation) for the velocity field of fluids. Such an equation, which is nothing other than the Newton laws plus some additional structural hypo theses, was discovered by Euler in 1755, and although it is more than two centuries old, many fundamental questions concerning its solutions are still open. In particular, it is not known whether the solutions, for reasonably general initial conditions, develop singularities in a finite time, and very little is known about the long-term behavior of smooth solutions. These and other basic problems are still open, and this is one of the reasons why the mathe matical theory of perfect flows is far from being completed. Incompressible flows have been attached, by many distinguished mathe maticians, with a large variety of mathematical techniques so that, today, this field constitutes a very rich and stimulating part of applied mathematics."

Mathematical Models of Viscous Friction (Paperback, 2015 ed.): Paolo Butta, Guido Cavallaro, Carlo Marchioro Mathematical Models of Viscous Friction (Paperback, 2015 ed.)
Paolo Butta, Guido Cavallaro, Carlo Marchioro
R1,733 Discovery Miles 17 330 Ships in 10 - 15 working days

In this monograph we present a review of a number of recent results on the motion of a classical body immersed in an infinitely extended medium and subjected to the action of an external force. We investigate this topic in the framework of mathematical physics by focusing mainly on the class of purely Hamiltonian systems, for which very few results are available. We discuss two cases: when the medium is a gas and when it is a fluid. In the first case, the aim is to obtain microscopic models of viscous friction. In the second, we seek to underline some non-trivial features of the motion. Far from giving a general survey on the subject, which is very rich and complex from both a phenomenological and theoretical point of view, we focus on some fairly simple models that can be studied rigorously, thus providing a first step towards a mathematical description of viscous friction. In some cases, we restrict ourselves to studying the problem at a heuristic level, or we present the main ideas, discussing only some aspects of the proof if it is prohibitively technical. This book is principally addressed to researchers or PhD students who are interested in this or related fields of mathematical physics.

Mathematical Theory of Incompressible Nonviscous Fluids (Paperback, Softcover reprint of the original 1st ed. 1994): Carlo... Mathematical Theory of Incompressible Nonviscous Fluids (Paperback, Softcover reprint of the original 1st ed. 1994)
Carlo Marchioro, Mario Pulvirenti
R4,229 Discovery Miles 42 290 Ships in 10 - 15 working days

Fluid dynamics is an ancient science incredibly alive today. Modern technol ogy and new needs require a deeper knowledge of the behavior of real fluids, and new discoveries or steps forward pose, quite often, challenging and diffi cult new mathematical {:: oblems. In this framework, a special role is played by incompressible nonviscous (sometimes called perfect) flows. This is a mathematical model consisting essentially of an evolution equation (the Euler equation) for the velocity field of fluids. Such an equation, which is nothing other than the Newton laws plus some additional structural hypo theses, was discovered by Euler in 1755, and although it is more than two centuries old, many fundamental questions concerning its solutions are still open. In particular, it is not known whether the solutions, for reasonably general initial conditions, develop singularities in a finite time, and very little is known about the long-term behavior of smooth solutions. These and other basic problems are still open, and this is one of the reasons why the mathe matical theory of perfect flows is far from being completed. Incompressible flows have been attached, by many distinguished mathe maticians, with a large variety of mathematical techniques so that, today, this field constitutes a very rich and stimulating part of applied mathematics."

Trends in Applications of Mathematics to Mechanics (Hardcover): R Grimshaw Trends in Applications of Mathematics to Mechanics (Hardcover)
R Grimshaw; Edited by Gerard Iooss; Contributions by Carlo Marchioro; Edited by Olivier Gues; Contributions by J. Verhas; Edited by …
R4,430 Discovery Miles 44 300 Ships in 12 - 17 working days

The International Society for the Interaction of Mechanics and Mathematics has a long-standing and respected tradition of hosting symposia that provide a forum for disseminating new developments and methods. Trends in Applications of Mathematics to Mechanics represents the proceedings of the eleventh such symposium, held at the University of Nice in May 1998.
Comprising invited lectures and refereed papers, this volume includes recent results that open perspectives on fields in mechanics and their methodological counterparts in mathematics. It also surveys important advances in the areas where mathematics and mechanics interact. The applications addressed include:

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