Mathematical Methods in Physics and Engineering with Mathematica
Title | Mathematical Methods in Physics and Engineering with Mathematica PDF eBook |
Author | Ferdinand F. Cap |
Publisher | CRC Press |
Pages | 349 |
Release | 2003-05-28 |
Genre | Mathematics |
ISBN | 0203502604 |
More than ever before, complicated mathematical procedures are integral to the success and advancement of technology, engineering, and even industrial production. Knowledge of and experience with these procedures is therefore vital to present and future scientists, engineers and technologists. Mathematical Methods in Physics and Engineering
Mathematical Methods for Physics and Engineering
Title | Mathematical Methods for Physics and Engineering PDF eBook |
Author | Mattias Blennow |
Publisher | CRC Press |
Pages | 749 |
Release | 2018-01-03 |
Genre | Science |
ISBN | 1351676075 |
Suitable for advanced undergraduate and graduate students, this new textbook contains an introduction to the mathematical concepts used in physics and engineering. The entire book is unique in that it draws upon applications from physics, rather than mathematical examples, to ensure students are fully equipped with the tools they need. This approach prepares the reader for advanced topics, such as quantum mechanics and general relativity, while offering examples, problems, and insights into classical physics. The book is also distinctive in the coverage it devotes to modelling, and to oft-neglected topics such as Green's functions.
Mathematics for Physical Science and Engineering
Title | Mathematics for Physical Science and Engineering PDF eBook |
Author | Frank E. Harris |
Publisher | Academic Press |
Pages | 787 |
Release | 2014-05-24 |
Genre | Mathematics |
ISBN | 0128010495 |
Mathematics for Physical Science and Engineering is a complete text in mathematics for physical science that includes the use of symbolic computation to illustrate the mathematical concepts and enable the solution of a broader range of practical problems. This book enables professionals to connect their knowledge of mathematics to either or both of the symbolic languages Maple and Mathematica. The book begins by introducing the reader to symbolic computation and how it can be applied to solve a broad range of practical problems. Chapters cover topics that include: infinite series; complex numbers and functions; vectors and matrices; vector analysis; tensor analysis; ordinary differential equations; general vector spaces; Fourier series; partial differential equations; complex variable theory; and probability and statistics. Each important concept is clarified to students through the use of a simple example and often an illustration. This book is an ideal reference for upper level undergraduates in physical chemistry, physics, engineering, and advanced/applied mathematics courses. It will also appeal to graduate physicists, engineers and related specialties seeking to address practical problems in physical science. - Clarifies each important concept to students through the use of a simple example and often an illustration - Provides quick-reference for students through multiple appendices, including an overview of terms in most commonly used applications (Mathematica, Maple) - Shows how symbolic computing enables solving a broad range of practical problems
Advanced Mathematical Methods for Scientists and Engineers I
Title | Advanced Mathematical Methods for Scientists and Engineers I PDF eBook |
Author | Carl M. Bender |
Publisher | Springer Science & Business Media |
Pages | 605 |
Release | 2013-03-09 |
Genre | Mathematics |
ISBN | 1475730691 |
A clear, practical and self-contained presentation of the methods of asymptotics and perturbation theory for obtaining approximate analytical solutions to differential and difference equations. Aimed at teaching the most useful insights in approaching new problems, the text avoids special methods and tricks that only work for particular problems. Intended for graduates and advanced undergraduates, it assumes only a limited familiarity with differential equations and complex variables. The presentation begins with a review of differential and difference equations, then develops local asymptotic methods for such equations, and explains perturbation and summation theory before concluding with an exposition of global asymptotic methods. Emphasizing applications, the discussion stresses care rather than rigor and relies on many well-chosen examples to teach readers how an applied mathematician tackles problems. There are 190 computer-generated plots and tables comparing approximate and exact solutions, over 600 problems of varying levels of difficulty, and an appendix summarizing the properties of special functions.
Mathematical Methods for Physics and Engineering
Title | Mathematical Methods for Physics and Engineering PDF eBook |
Author | Kenneth Franklin Riley |
Publisher | |
Pages | 1008 |
Release | 1997 |
Genre | |
ISBN |
Nonlinear Physics with Mathematica for Scientists and Engineers
Title | Nonlinear Physics with Mathematica for Scientists and Engineers PDF eBook |
Author | Richard H. Enns |
Publisher | Springer Science & Business Media |
Pages | 720 |
Release | 2001-06-26 |
Genre | Mathematics |
ISBN | 9780817642235 |
Nonlinear physics continues to be an area of dynamic modern research, with applications to physics, engineering, chemistry, mathematics, computer science, biology, medicine and economics. In this text extensive use is made of the Mathematica computer algebra system. No prior knowledge of Mathematica or programming is assumed. This book includes 33 experimental activities that are designed to deepen and broaden the reader's understanding of nonlinear physics. These activities are correlated with Part I, the theoretical framework of the text.
Mathematical Methods in Physics and Engineering
Title | Mathematical Methods in Physics and Engineering PDF eBook |
Author | John W. Dettman |
Publisher | Courier Corporation |
Pages | 450 |
Release | 2013-01-23 |
Genre | Science |
ISBN | 0486169367 |
Intended for college-level physics, engineering, or mathematics students, this volume offers an algebraically based approach to various topics in applied math. It is accessible to undergraduates with a good course in calculus which includes infinite series and uniform convergence. Exercises follow each chapter to test the student's grasp of the material; however, the author has also included exercises that extend the results to new situations and lay the groundwork for new concepts to be introduced later. A list of references for further reading will be found at the end of each chapter. For this second revised edition, Professor Dettman included a new section on generalized functions to help explain the use of the Dirac delta function in connection with Green's functions. In addition, a new approach to series solutions of ordinary differential equations has made the treatment independent of complex variable theory. This means that the first six chapters can be grasped without prior knowledge of complex variables. However, since Chapter 8 depends heavily on analytic functions of a complex variable, a new Chapter 7 on analytic function theory has been written.