01089nam a2200313 i 450099100093784970753620020507104118.0951218s1980 uk ||| | eng 0521227771b10150766-39ule_instLE00639429ExLDip.to Fisicaita53.1.3453.7.2531'.3823QA935Hudson, J.A.461966The excitation and propagation of elastic waves /J.A. HudsonCambridge ; New York :Cambridge University Press,c1980vi, 224 p. :ill. ;22 cm.Cambridge monographs on mechanics and applied mathematicsIncludes index.Elastic waves.b1015076617-02-1727-06-02991000937849707536LE006 53.7.2 HUD12006000058797le006-E0.00-l- 02020.i1018064327-06-02Excitation and propagation of elastic waves187788UNISALENTOle00601-01-95ma -enguk 4105446nam 22007095 450 991064589400332120231204161614.09783031120008(electronic bk.)978303111999610.1007/978-3-031-12000-8(MiAaPQ)EBC7184607(Au-PeEL)EBL7184607(CKB)26028010100041(DE-He213)978-3-031-12000-8(PPN)267811047(EXLCZ)992602801010004120230119d2023 u| 0engurcnu||||||||txtrdacontentcrdamediacrrdacarrierDifference Matrices for ODE and PDE A MATLAB® Companion /by John M. Neuberger1st ed. 2023.Cham :Springer International Publishing :Imprint: Springer,2023.1 online resource (212 pages)Print version: Neuberger, John M. Difference Matrices for ODE and PDE Cham : Springer International Publishing AG,c2023 9783031119996 Includes bibliographical references.1. Introduction -- 2. Review of elementary numerical methods and MATLAB(R) -- 3. Ordinary Differential Equations -- 4. Partial Differential Equations -- 5. Advanced topics in semilinear elliptic BVP -- References.The use of difference matrices and high-level MATLAB® commands to implement finite difference algorithms is pedagogically novel. This unique and concise textbook gives the reader easy access and a general ability to use first and second difference matrices to set up and solve linear and nonlinear systems in MATLAB which approximate ordinary and partial differential equations. Prerequisites include a knowledge of basic calculus, linear algebra, and ordinary differential equations. Some knowledge of partial differential equations is a plus though the text may easily serve as a supplement for the student currently working through an introductory PDEs course. Familiarity with MATLAB is not required though a little prior experience with programming would be helpful.In addition to its special focus on solving in MATLAB, the abundance of examples and exercises make this text versatile in use. It would serve well in a graduate course in introductory scientific computing for partial differential equations. With prerequisites mentioned above plus some elementary numerical analysis, most of the material can be covered and many of the exercises assigned in a single semester course. Some of the more challenging exercises make substantial projects and relate to topics from other typical graduate mathematics courses, e.g., linear algebra, differential equations, or topics in nonlinear functional analysis. A selection of the exercises may be assigned as projects throughout the semester. The student will develop the skills to run simulations corresponding to the primarily theoretical course material covered by the instructor. The book can serve as a supplement for the instructor teaching any course in differential equations. Many of the examples can be easily implemented and the resulting simulation demonstrated by the instructor. If the course has a numerical component, a few of the more difficult exercises may be assigned as student projects. Established researchers in theoretical partial differential equations may find this book useful as well, particularly as an introductory guide for their research students. Those unfamiliar with MATLAB can use the material as a reference to quickly develop their own applications in that language. Practical assistance in implementing algorithms in MATLAB can be found in these pages. A mathematician who is new to the practical implementation of methods for scientific computation in general can learn how to implement and execute numerical simulations of differential equations in MATLAB with relative ease by working through a selection of exercises. Additionally, the book can serve as a practical guide in independent study, undergraduate or graduate research experiences, or for reference in simulating solutions to specific thesis or dissertation-related experiments.Mathematics—Data processingDifference equationsFunctional equationsMathematical analysisComputational Mathematics and Numerical AnalysisDifference and Functional EquationsAnalysisEquacions diferencialsthubEquacions en derivades parcialsthubProgrames d'ordinador 2thubAlgorismes 2thubLlibres electrònicsthubMathematics—Data processing.Difference equations.Functional equations.Mathematical analysis.Computational Mathematics and Numerical Analysis.Difference and Functional Equations.Analysis.Equacions diferencials.Equacions en derivades parcials.Programes d'ordinador 2thubAlgorismes 2thub515.625515.3520285Neuberger John M.1962-1353363MiAaPQMiAaPQMiAaPQ9910645894003321Difference Matrices for ODE and PDE3251595UNINA