
- 414 pages
- English
- ePUB (mobile friendly)
- Available on iOS & Android
eBook - ePub
Mathematical Methods 4 Electrotechnic Freaks
About this book
The book offers a practice-oriented introduction to the mathematical methods of electrical engineering. The focus is on the solution of ordinary and partial differential equations using analytical and numerical methods. The analytical methods are opposed to the numerical methods. The differential equations were chosen with a view to the problems of electrical engineering. It is shown how they can also be transferred to mechanics or thermodynamics. Numerous examples and exercises with elaborated solutions facilitate the transfer of knowledge to applications.
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Yes, you can access Mathematical Methods 4 Electrotechnic Freaks by Jürgen Ulm in PDF and/or ePUB format, as well as other popular books in Technology & Engineering & Electrical Engineering & Telecommunications. We have over one million books available in our catalogue for you to explore.
Information
Edition
1Table of contents
- Cover
- Titel
- Impressum
- Foreword
- Contents
- Symbols and abbreviations
- 1 Required mathematical basics
- 2 Coordinate systems
- 3 Geometric mean distance – GMD
- 4 LCR parallel and series resonant circuit
- 5 Current displacement in conductor
- 6 Bessel equation and Bessel function
- 7 Solution of differential equations using Green’s functions
- 8 Method of Lagrangian multipliers
- 9 Differential equations and finite elements
- 10 From the Method of Moments to the Galerkin Method
- 11 Traditional Galerkin Method
- 12 Galerkin method – solution of du/dx = u
- 13 Galerkin method – solution of −d2u/dx2 = 4x2 + 1
- 14 Galerkin method – solution of d2u/dx2 = −1 (I)
- 15 Galerkin method – solution of d2u/dx2 = −1 (II)
- 16 Galerkin method – Ampere’s law
- 17 Galerkin-FEM
- 18 Galerkin-FEM – solution of d2u/dx2 = −1 (I)
- 19 Galerkin-FEM – solution of d2u/dx2 = −1 (II)
- 20 Galerkin-FEM – Electrostatic field calculation
- 21 Galerkin-FEM – heat diffusion
- 22 Galerkin-FEM – magnetic field diffusion
- 23 Introduction to the finite difference method
- 24 Applications of FEM to product development
- 25 Virtual product design
- 26 Eigenvalue problems
- 27 Eigenvalue problem-MOM – solution of −d2u/dx2 = λu
- 28 Common features of methods to solve differential equations
- 29 Things worth knowing about modelling
- 30 Useful standards
- Bibliography
- A Appendix
- B Campus Künzelsau – Inside
- Index