Differential Equations with Mathematica
Autor Martha L. Abell, James P. Braseltonen Limba Engleză Paperback – 13 iul 2022
Mathematica’s diversity makes it particularly well suited to performing calculations encountered when solving many ordinary and partial differential equations. In some cases, Mathematica’s built-in functions can immediately solve a differential equation by providing an explicit, implicit, or numerical solution. In other cases, Mathematica can be used to perform the calculations encountered when solving a differential equation.
Because one goal of elementary differential equations courses is to introduce students to basic methods and algorithms so that they gain proficiency in them, nearly every topic covered this book introduces basic commands, also including typical examples of their application. A study of differential equations relies on concepts from calculus and linear algebra, so this text also includes discussions of relevant commands useful in those areas. In many cases, seeing a solution graphically is most meaningful, so the book relies heavily on Mathematica’s outstanding graphics capabilities.
- Demonstrates how to take advantage of the advanced features of Mathematica
- Introduces the fundamental theory of ordinary and partial differential equations using Mathematica to solve typical problems of interest to students, instructors, scientists, and practitioners in many fields
- Showcases practical applications and case studies drawn from biology, physics, and engineering
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Specificații
ISBN-13: 9780128241608
ISBN-10: 0128241608
Pagini: 608
Ilustrații: Approx. 300 illustrations
Dimensiuni: 216 x 276 mm
Greutate: 1.6 kg
Ediția:5
Editura: ELSEVIER SCIENCE
ISBN-10: 0128241608
Pagini: 608
Ilustrații: Approx. 300 illustrations
Dimensiuni: 216 x 276 mm
Greutate: 1.6 kg
Ediția:5
Editura: ELSEVIER SCIENCE
Public țintă
Primary: Researchers/ProfessionalsSecondary: Differential Equations
Cuprins
1. Preface
2. Introduction to Differential Equations
3. First-Order Ordinary Differential Equations
4. Applications of First-Order Ordinary Differential Equations
5. Higher-Order Differential Equations
6. Applications of Higher-Order Differential Equations
7. Systems of Ordinary Differential Equations
8. Applications of Systems of Ordinary Differential Equations
9. Laplace Transform Methods
10. Eigenvalue Problems and Fourier Series
11. Partial Differential Equations
12. Appendix: Getting Started
13. The Mathematica Menu
14. Bibliography
15. Index
2. Introduction to Differential Equations
3. First-Order Ordinary Differential Equations
4. Applications of First-Order Ordinary Differential Equations
5. Higher-Order Differential Equations
6. Applications of Higher-Order Differential Equations
7. Systems of Ordinary Differential Equations
8. Applications of Systems of Ordinary Differential Equations
9. Laplace Transform Methods
10. Eigenvalue Problems and Fourier Series
11. Partial Differential Equations
12. Appendix: Getting Started
13. The Mathematica Menu
14. Bibliography
15. Index