Advanced Mathematical Methods in Science and Engineering
Seiten
2000
Marcel Dekker Inc (Verlag)
978-0-8247-0466-7 (ISBN)
Marcel Dekker Inc (Verlag)
978-0-8247-0466-7 (ISBN)
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Gathering a wide range of mathematical topics for solving science and engineering problems, this title elucidates integral methods, field equation derivations, and operations applicable to modern science systems. It reviews basic methods of integration and series solutions for ordinary differential equations.
Gathering an extensive range of mathematical topics into a plenary reference/text for solving science and engineering problems, Advanced Mathematical Models in Science and Engineering elucidates integral methods, field equation derivations, and operations applicable to modern science systems.
Applying academic skills to practical problems in science and engineering, the author reviews basic methods of integration and series solutions for ordinary differential equations; introduces derivations and solution methods for linear boundary value problems in one dimension, covering eigenfunctions and eigenfunction expansions, orthogonality, and adjoint and self-adjoint systems; discusses complex variables, calculus, and integrals as well as application of residues and the integration of multivalued functions; considers linear partial differential equations in classical physics and engineering with derivations for the topics of wave equations, heat flow, vibration, and strength of materials; clarifies the calculus for integral transforms; explains Green's functions for ordinary and partial differential equations for unbounded and bounded media; examines asymptotic methods; presents methods for asymptotic solutions of ordinary differential equations; and more.
Gathering an extensive range of mathematical topics into a plenary reference/text for solving science and engineering problems, Advanced Mathematical Models in Science and Engineering elucidates integral methods, field equation derivations, and operations applicable to modern science systems.
Applying academic skills to practical problems in science and engineering, the author reviews basic methods of integration and series solutions for ordinary differential equations; introduces derivations and solution methods for linear boundary value problems in one dimension, covering eigenfunctions and eigenfunction expansions, orthogonality, and adjoint and self-adjoint systems; discusses complex variables, calculus, and integrals as well as application of residues and the integration of multivalued functions; considers linear partial differential equations in classical physics and engineering with derivations for the topics of wave equations, heat flow, vibration, and strength of materials; clarifies the calculus for integral transforms; explains Green's functions for ordinary and partial differential equations for unbounded and bounded media; examines asymptotic methods; presents methods for asymptotic solutions of ordinary differential equations; and more.
Ordinary differential equations; series solutions of ordinary differential equations; special functions; boundary value problems and eigenvalue problems; functions of a complex variable; partial differential equations of mathematical physics; integral transforms; Green's functions; asymptotic methods; appendix A -infinite series; appendix B - special functions; appendix C -orthogonal coordinate systems; appendix D - Dirac delta functions; appendix E - plots of special functions.
Erscheint lt. Verlag | 13.10.2000 |
---|---|
Verlagsort | New York |
Sprache | englisch |
Maße | 178 x 254 mm |
Gewicht | 1520 g |
Themenwelt | Mathematik / Informatik ► Mathematik ► Angewandte Mathematik |
ISBN-10 | 0-8247-0466-5 / 0824704665 |
ISBN-13 | 978-0-8247-0466-7 / 9780824704667 |
Zustand | Neuware |
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