Scientific Computing for Scientists and Engineers is designed to teach undergraduate students relevant numerical methods and required fundamentals in scientific computing. Most problems in science and engineering require the solution of mathematical problems, most of which can only be done on a com
Scientific Computing: For Scientists and Engineers (De Gruyter Textbook)
β Scribed by Timo Heister, Leo G. Rebholz
- Publisher
- De Gruyter
- Year
- 2023
- Tongue
- English
- Leaves
- 184
- Edition
- 2
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
Scientific Computing for Scientists and Engineers is designed to teach undergraduate students relevant numerical methods and required fundamentals in scientific computing. Most problems in science and engineering require the solution of mathematical problems, most of which can only be done on a computer. Accurately approximating those problems requires solving differential equations and linear systems with millions of unknowns, and smart algorithms can be used on computers to reduce calculation times from years to minutes or even seconds. This book explains: How can we approximate these important mathematical processes? How accurate are our approximations? How efficient are our approximations? Scientific Computing for Scientists and Engineers covers: An introduction to a wide range of numerical methods for linear systems, eigenvalue problems, differential equations, numerical integration, and nonlinear problems; Scientific computing fundamentals like floating point representation of numbers and convergence; Analysis of accuracy and efficiency; Simple programming examples in MATLAB to illustrate the algorithms and to solve real life problems; Exercises to reinforce all topics.
β¦ Table of Contents
Preface
Acknowledgments
Contents
1 Introduction
2 Computer representation of numbers and roundoff error
3 Solving linear systems of equations
4 Finite difference methods
5 Solving nonlinear equations
6 Accuracy in solving linear systems
7 Eigenvalues and eigenvectors
8 Fitting curves to data
9 Numerical integration
10 Initial value ODEs
A Getting started with Octave and MATLAB
Index
π SIMILAR VOLUMES
<p><em>Scientific Computing for Scientists and Engineers</em> is designed to teach undergraduate students relevant numerical methods and required fundamentals in scientific computing.</p> <p>Most problems in science and engineering require the solution of mathematical problems, most of which can onl
<p><em>Scientific Computing for Scientists and Engineers</em> is designed to teach undergraduate students relevant numerical methods and required fundamentals in scientific computing.</p> <p>Most problems in science and engineering require the solution of mathematical problems, most of which can onl
<p><b>A SCIENTIFIC APPROACH TO WRITING</b><p>Technical ideas may be solid or even groundbreaking, but if these ideas cannot be clearly communicated, reviewers of technical documentsβe.g., proposals for research funding, articles submitted to scientific journals, and business plans to commercialize t
<p><b>A SCIENTIFIC APPROACH TO WRITING</b></p> <p>Technical ideas may be solid or even groundbreaking, but if these ideas cannot be clearly communicated, reviewers of technical documentsβe.g., proposals for research funding, articles submitted to scientific journals, and business plans to commercial