Advanced Engineering Mathematics with Mathematica and Matlab
Title | Advanced Engineering Mathematics with Mathematica and Matlab PDF eBook |
Author | Reza Malek-Madani |
Publisher | |
Pages | 580 |
Release | 1998 |
Genre | Engineering mathematics |
ISBN |
Advanced Engineering Mathematics with Mathematica and MATLAB
Title | Advanced Engineering Mathematics with Mathematica and MATLAB PDF eBook |
Author | Reza Malek-Madani |
Publisher | Addison Wesley |
Pages | 612 |
Release | 1998 |
Genre | Computers |
ISBN |
See previous listing for contents.
Advanced Engineering Mathematics with Mathematica
Title | Advanced Engineering Mathematics with Mathematica PDF eBook |
Author | Edward B. Magrab |
Publisher | CRC Press |
Pages | 529 |
Release | 2020-02-26 |
Genre | Mathematics |
ISBN | 100003450X |
Advanced Engineering Mathematics with Mathematica® presents advanced analytical solution methods that are used to solve boundary-value problems in engineering and integrates these methods with Mathematica® procedures. It emphasizes the Sturm–Liouville system and the generation and application of orthogonal functions, which are used by the separation of variables method to solve partial differential equations. It introduces the relevant aspects of complex variables, matrices and determinants, Fourier series and transforms, solution techniques for ordinary differential equations, the Laplace transform, and procedures to make ordinary and partial differential equations used in engineering non-dimensional. To show the diverse applications of the material, numerous and widely varied solved boundary value problems are presented.
Advanced Engineering Mathematics
Title | Advanced Engineering Mathematics PDF eBook |
Author | Lawrence Turyn |
Publisher | CRC Press |
Pages | 1459 |
Release | 2013-09-25 |
Genre | Mathematics |
ISBN | 1439834474 |
Beginning with linear algebra and later expanding into calculus of variations, Advanced Engineering Mathematics provides accessible and comprehensive mathematical preparation for advanced undergraduate and beginning graduate students taking engineering courses. This book offers a review of standard mathematics coursework while effectively integrating science and engineering throughout the text. It explores the use of engineering applications, carefully explains links to engineering practice, and introduces the mathematical tools required for understanding and utilizing software packages. Provides comprehensive coverage of mathematics used by engineering students Combines stimulating examples with formal exposition and provides context for the mathematics presented Contains a wide variety of applications and homework problems Includes over 300 figures, more than 40 tables, and over 1500 equations Introduces useful MathematicaTM and MATLAB® procedures Presents faculty and student ancillaries, including an online student solutions manual, full solutions manual for instructors, and full-color figure sides for classroom presentations Advanced Engineering Mathematics covers ordinary and partial differential equations, matrix/linear algebra, Fourier series and transforms, and numerical methods. Examples include the singular value decomposition for matrices, least squares solutions, difference equations, the z-transform, Rayleigh methods for matrices and boundary value problems, the Galerkin method, numerical stability, splines, numerical linear algebra, curvilinear coordinates, calculus of variations, Liapunov functions, controllability, and conformal mapping. This text also serves as a good reference book for students seeking additional information. It incorporates Short Takes sections, describing more advanced topics to readers, and Learn More about It sections with direct references for readers wanting more in-depth information.
Engineering Analysis
Title | Engineering Analysis PDF eBook |
Author | Yen-Ching Pao |
Publisher | CRC Press |
Pages | 374 |
Release | 2019-04-24 |
Genre | Computers |
ISBN | 9781420049619 |
This book provides a concise introduction to numerical concepts in engineering analysis, using FORTRAN, QuickBASIC, MATLAB, and Mathematica to illustrate the examples. Discussions include: matrix algebra and analysis solution of matrix equations methods of curve fit methods for finding the roots of polynom
Engineering Mathematics with Mathematica
Title | Engineering Mathematics with Mathematica PDF eBook |
Author | John S. Robertson |
Publisher | McGraw-Hill Science, Engineering & Mathematics |
Pages | 306 |
Release | 1995 |
Genre | Computers |
ISBN |
This supplementary text for applied mathematics courses where Mathematica is used in a laboratory setting, is intended to be compatible with a broad range of engineering mathematics texts, as well as smaller, more specialized texts in differential equations and complex variables. It covers topics found in courses on ordinary and partial differential equations, vector analysis, and applied complex analysis. Students are guided through a series of laboratory exercises that present cogent applications of the mathematics and demonstrate the use of Mathematica as a computational tool to do the mathematics. Relevant applications along with discussions of the results obtained combine to stimulate innovative thinking from the students about additional concepts and applications.
Advanced Engineering Mathematics with Mathematica
Title | Advanced Engineering Mathematics with Mathematica PDF eBook |
Author | Edward B. Magrab |
Publisher | CRC Press |
Pages | 453 |
Release | 2020-02-26 |
Genre | Mathematics |
ISBN | 1000034526 |
Advanced Engineering Mathematics with Mathematica® presents advanced analytical solution methods that are used to solve boundary-value problems in engineering and integrates these methods with Mathematica® procedures. It emphasizes the Sturm–Liouville system and the generation and application of orthogonal functions, which are used by the separation of variables method to solve partial differential equations. It introduces the relevant aspects of complex variables, matrices and determinants, Fourier series and transforms, solution techniques for ordinary differential equations, the Laplace transform, and procedures to make ordinary and partial differential equations used in engineering non-dimensional. To show the diverse applications of the material, numerous and widely varied solved boundary value problems are presented.