Numerical Recipes in FORTRAN Example Book: The Art of Scientific Computing / Edition 2

Numerical Recipes in FORTRAN Example Book: The Art of Scientific Computing / Edition 2

by William H. Press, Brian P. Flannery, Saul A. Teukolsky, William T. Vetterling
     
 

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ISBN-10: 0521437210

ISBN-13: 9780521437219

Pub. Date: 11/28/1992

Publisher: Cambridge University Press

The example books published as part of the Numerical Recipes, Second Edition series are source programs that demonstrate all of the Numerical Recipes subroutines. Each example program contains comments and is prefaced by a short description of how it functions. The books consist of all of the material from the original edition, as well as new material from the

Overview

The example books published as part of the Numerical Recipes, Second Edition series are source programs that demonstrate all of the Numerical Recipes subroutines. Each example program contains comments and is prefaced by a short description of how it functions. The books consist of all of the material from the original edition, as well as new material from the Second Edition. They will be valuable for readers who wish to incorporate procedures and subroutines into their own source programs. They are available in both Fortran and C.

Product Details

ISBN-13:
9780521437219
Publisher:
Cambridge University Press
Publication date:
11/28/1992
Edition description:
2nd ed
Pages:
256
Product dimensions:
5.98(w) x 8.98(h) x 0.67(d)

Table of Contents

Preface; 1. Preliminaries; 2. Solution of linear algebraic equations; 3. Interpolation and extrapolation; 4. Integration of functions; 5. Evaluation of functions; 6. Special functions; 7. Random numbers; 8. Sorting; 9. Root finding and nonlinear sets of equations; 10. Minimization and maximization of functions; 11. Eigensystems; 12. Fast Fourier transform; 13. Fourier and spectral applications; 14. Statistical description of data; 15. Modeling of data; 16. Integration of ordinary differential equations; 17. Two point boundary value problems; 18. Integral equations and inverse theory; 19. Partial differential equations; 20. Less-numerical algorithms; Index of demonstrated subroutines.

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