FreeComputerBooks.com
Links to Free Computer, Mathematics, Technical Books all over the World
|
|
- Title Introduction to Finite Elements Methods
- Author(s) Hans Petter Langtangen
- Publisher: Norwegian Centre of Excellence
- Hardcover N/A
- eBook: HTML and PDF
- Language: English
- ISBN-10: N/A
- ISBN-13: N/A
- Share This:
This book is aimed at presenting the theory and practice of Finite Element Method (FEM) in a manner which makes it is easy to learn the concepts, analysis, and methodology of FEM through simple derivations and worked out examples in interdisciplinary areas. While there are many advanced books and manuals on the subject, there are very few books illustrating the method through simple examples and computations. The emphasis is on hands on learning of the FEM through manually worked out examples.
About the Authors- Hans Petter Langtangen was a Norwegian scientist trained in mechanics and scientific computing.
- Numerical Analysis and Computation
- Mathematical and Computational Software
- Computational and Algorithmic Mathematics
- Electronic and Computer Engineering
- Introduction to Finite Elements Methods (Hans Petter Langtangen)
- PDF Format
- The Mirror Site (1) - PDF
- The Mirror Site (2) - PDF
-
Solving PDEs in Python: The FEniCS Tutorial I (H. Langtangen)
This book offers a concise and gentle introduction to Finite Element programming in Python based on the popular FEniCS software library. Using a series of examples, it guides readers through the essential steps to quickly solving a PDE in FEniCS.
-
Introduction to Numerical Methods for Variational Problems
This textbook teaches Finite Element Methods from a computational point of view. It focuses on how to develop flexible computer programs with Python, a programming language in which a combination of symbolic and numerical tools.
-
Finite Element Analysis (David Moratal)
This book provides a bird's eye view on this very broad matter through original and innovative research studies exhibiting various investigation directions. You will gain a better understanding of where Finite Element Analysis stands today.
-
Finite Element Analysis: Biomedical Apps to Industrial
This book presents represents a numerical technique for finding approximate solutions to partial differential equations as well as integral equations, permitting the numerical analysis of complex structures based on their material properties.
-
Finite-element Methods for Electromagnetics (Stanley Humphries)
This book covers a broad range of practical applications involving electric and magnetic fields. The text emphasizes finite-element techniques to solve real-world problems in research and industry.
-
Boundary Element Methods in Engineering and Sciences
This book is designed to provide readers with a comprehensive and up-to-date account of the Boundary Element Methods (BEM) and its application to problems in engineering and science, with historical development, basic theory, derivation and examples.
-
Finite Difference Computing with PDEs: A Software Approach
This easy-to-read book introduces the basics of solving partial differential equations by means of finite difference methods. Unlike many of the traditional academic works on the topic, this book was written for practitioners.
-
Architecture of Advanced Numerical Analysis Systems
This unique open access book applies the functional OCaml programming language to numerical or computational weighted data science, engineering, and scientific applications. It's based on Owl, an OCaml-based numerical computing library.
-
Tea Time Numerical Analysis: Experiences in Mathematics
This textbook was born of a desire to contribute a viable, free, introductory Numerical Analysis textbook. The ultimate goal of this book is to be a complete, one-semester, single-pdf, downloadable textbook designed for mathematics classes.
-
The Art of Polynomial Interpolation (Stuart Murphy)
Exploring the techniques of interpolating data allows us to view the development and birth of a polynomial. This book is focused on laying a foundation for understanding and applying several common forms of Polynomial Interpolation.
-
Numerical Algorithms: Computer Vision, Machine Learning, etc.
This book presents a new approach to numerical analysis for modern computer scientists, covers a wide range of topics - from numerical linear algebra to optimization and differential equations - focusing on real-world motivation and unifying themes.
-
Numerical Methods and MATLAB Programming for Engineers
It covers the fundamentals while emphasizing the most essential numerical methods. Readers will enhance their programming skills using MATLAB to implement algorithms, discover how to use MATLAB to solve problems in science and engineering.
-
Numerical Methods with Applications, 2nd Edition (Autar K Kaw)
This book entitled Numerical Methods with Applications is written primarily for engineering undergraduates taking a course in Numerical Methods. It offers a unique treatise to numerical methods which is based on a holistic approach and short chapters.
-
Parallel Spectral Numerical Methods (Gong Chen, et al)
This book teaches the principals of Fourier spectral methods, their utility in solving partial differential equation and how to implement them in code. The programs will use Matlab and Fortran. A Python implementation of some of the Matlab programs is also provided.
-
Numerical Methods for Large Eigenvalue Problems (Yousef Saad)
This book is intended for researchers in applied mathematics and scientific computing as well as for practitioners interested in understanding the theory of numerical methods used for eigenvalue problems.
-
First Semester in Numerical Analysis with Julia (Giray Okten)
This book presents the theory and methods, together with the implementation of the algorithms using the Julia programming language. The book covers computer arithmetic, root-finding, numerical quadrature and differentiation, and approximation theory.
-
Numerical Analysis - Theory and Application (Jan Awrejcewicz)
This book is a book focused on introducing theoretical approaches of numerical analysis as well as applications of various numerical methods to either study or solving numerous theoretical and engineering problems.
:
|
|