You can't do much better than rely on Professor Schiesser and his colleagues for clear and reliable advice on solving ODEs and PDEs. This book contains well-tested codes that are both computationally efficient and robust. I have already solved some thorny problems quite quickly, and even subjected
Ordinary and Partial Differential Equation Routines in C, C++, Fortran, Java, Maple, and MATLAB
โ Scribed by Lee H.J., Schiesser W.E.
- Publisher
- Chapman and Hall/CRC
- Year
- 2003
- Tongue
- English
- Leaves
- 516
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
โฆ Synopsis
This book provides a set of ODE/PDE integration routines in the six most widely used computer languages, enabling scientists and engineers to apply ODE/PDE analysis toward solving complex problems. This text concisely reviews integration algorithms, then analyzes the widely used Runge-Kutta method. It first presents a complete code before discussing its components in detail, focusing on integration concepts such as error monitoring and control. The format allows scientists and engineers to understand the basics of ODE/PDE integration, then calculate sample numerical solutions within their targeted programming language. The applications discussed can be used as templates for the development of a spectrum of new applications
๐ SIMILAR VOLUMES
Scientists and engineers attempting to solve complex problems require efficient, effective ways of applying numerical methods to ODEs and PDEs. They need a resource that enables fast access to library routines in their choice of a programming language.Ordinary and Partial Differential Equation Routi
This book provides a set of ODE/PDE integration routines in the six most widely used computer languages, enabling scientists and engineers to apply ODE/PDE analysis toward solving complex problems. This text concisely reviews integration algorithms, then analyzes the widely used Runge-Kutta method.
Scientists and engineers attempting to solve complex problems require efficient, effective ways of applying numerical methods to ODEs and PDEs. They need a resource that enables fast access to library routines in their choice of a programming language.Ordinary and Partial Differential Equation Routi