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Generalized Calculus with Applications to Matter and Forces: Mathematics and Physics for Science and Technology

Autor Luis Manuel Braga de Costa Campos
en Limba Engleză Paperback – 7 oct 2019
Combining mathematical theory, physical principles, and engineering problems, Generalized Calculus with Applications to Matter and Forces examines generalized functions, including the Heaviside unit jump and the Dirac unit impulse and its derivatives of all orders, in one and several dimensions. The text introduces the two main approaches to generalized functions: (1) as a nonuniform limit of a family of ordinary functions, and (2) as a functional over a set of test functions from which properties are inherited. The second approach is developed more extensively to encompass multidimensional generalized functions whose arguments are ordinary functions of several variables.


As part of a series of books for engineers and scientists exploring advanced mathematics, Generalized Calculus with Applications to Matter and Forces presents generalized functions from an applied point of view, tackling problem classes such as:







  • Gauss and Stokes’ theorems in the differential geometry, tensor calculus, and theory of potential fields


  • Self-adjoint and non-self-adjoint problems for linear differential equations and nonlinear problems with large deformations


  • Multipolar expansions and Green’s functions for elastic strings and bars, potential and rotational flow, electro- and magnetostatics, and more




This third volume in the series Mathematics and Physics for Science and Technology is designed to complete the theory of functions and its application to potential fields, relating generalized functions to broader follow-on topics like differential equations. Featuring step-by-step examples with interpretations of results and discussions of assumptions and their consequences, Generalized Calculus with Applications to Matter and Forces enables readers to construct mathematical–physical models suited to new observations or novel engineering devices.
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Specificații

ISBN-13: 9780367378721
ISBN-10: 0367378728
Pagini: 886
Dimensiuni: 178 x 254 x 45 mm
Greutate: 0.45 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
Seria Mathematics and Physics for Science and Technology


Public țintă

Academic and Professional Practice & Development

Cuprins

List of Classifications, Diagrams, Lists, Notes, and Tables. Mathematical Symbols. Physical Quantities. Limit of a Sequence of Functions. Shape of a Loaded String. Functionals over Test Functions. Bending of Bars and Beams. Differential Operators and Geometry. Axisymmetric Flows and Four Sphere Theorems. Convolution, Reciprocity, and Adjointness. Electric/Magnetic Multipoles and Images. Multidimensional Harmonic Potentials. Twenty Examples.

Notă biografică

Considered one of Europe’s leading applied mathematicians, Luis Manuel Braga de Costa Campos has authored 9 books, 129 papers in 56 journals, and 203 communications to symposia. He holds 2 patents in the US and UK and has been involved in over 40 research projects with international external funding. Dr. Campos also received the Von Karman Medal from the NATO Advisory Group for Aerospace Research and Development (AGARD) and Research and Technology Organization (RTO). Participation in AGARD/RTO included a vice-chairmanship of the System Concepts and Integration Panel, chairmanship of the Flight Mechanics and Flight Vehicle Integration Panels, and membership in the Flight Test Techniques Working Group.

Descriere

This volume combines mathematical theory, physical principles, and engineering problems to present generalized functions from an applied point of view. It examines the Heaviside unit jump and the Dirac unit impulse and its derivatives in one and several dimensions. Containing step-by-step examples with interpretations of results and discussions of assumptions and their consequences, the text covers Gauss and Stokes’ theorems, self-adjoint and non-self-adjoint problems, multipolar expansions, Green’s functions, and more to enable readers to construct mathematical–physical models suited to new observations or novel engineering devices.