
Computational Physics
With Worked Out Examples in FORTRANÂŽ and MATLABÂŽ
- 408 pages
- English
- ePUB (mobile friendly)
- Available on iOS & Android
About this book
The work shows, by means of examples coming from different corners of physics, how physical and mathematical questions can be answered using a computer. Starting with maps and neural networks, applications from Newton's mechanics described by ordinary differential equations come into the focus, like the computation of planetary orbits or classical molecular dynamics. A large part of the textbook is dedicated to deterministic chaos normally encountered in systems with sufficiently many degrees of freedom.
Partial differential equations are studied considering (nonlinear) field theories like quantum mechanics, thermodynamics or fluid mechanics. In the second edition, a new chapter gives a detailed survey on delay or memory systems with a direct application to epidemic and road traffic models.
Most of the algorithms are realized in FORTRAN, a language most suitable for effectively solving the discussed problems. On the other hand, the codes given and presented on the book's homepage can be easily translated into other languages. Moreover, several MATLAB examples are presented, mainly for didactic reasons. The book is addressed to advanced Bachelor or Master students of physics, applied mathematics and mechanical engineering.
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Information
Table of contents
- Title Page
- Copyright
- Contents
- 1âIntroduction
- 2âNonlinear maps
- 3âDynamical systems
- 4âOrdinary differential equations I, initial value problems
- 5âOrdinary differential equations II, boundary value problems
- 6âOrdinary differential equations III, memory, delay and noise
- 7âPartial differential equations I, basics
- 8âPartial differential equations II, applications
- 9âMonte Carlo methods
- Subject Index