
Numerical Solutions of Boundary Value Problems with Finite Difference Method
Morgan & Claypool Publishers
Published on 11. September 2018
Book
Paperback/Softback
86 pages
978-1-64327-277-1 (ISBN)
Description
Containing an extensive illustration of the use of finite difference method in solving boundary value problems numerically, a wide class of differential equations have been numerically solved in this book.
More details
Series
Language
English
Place of publication
San Rafael
United States
Dimensions
Height: 254 mm
Width: 178 mm
Thickness: 5 mm
Weight
184 gr
ISBN-13
978-1-64327-277-1 (9781643272771)
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Schweitzer Classification
Persons
Sujaul Chowdhury is a Professor in Department of Physics, Shahjalal University of Science and Technology (SUST), Bangladesh. He obtained a BSc (Honours) in Physics in 1994 and MSc in Physics in 1996 from SUST. He obtained a PhD in Physics from The University of Glasgow, UK in 2001. He was a Humboldt Research Fellow for one year at The Max Planck Institute, Stuttgart, Germany. He is the author of the book Numerical Solutions of Initial Value Problems Using Mathematica.
Content
- Author biographies
- 1. A numerical solution of boundary value problem using finite difference method
- 2. Differential equations of some elementary functions: boundary value problems numerically solved using finite difference method
- 3. Differential equations of special functions: boundary value problems numerically solved using finite difference method
- 4. Differential equation of Airy function: boundary value problem numerically solved using finite difference method
- 5. Differential equation of stationary localised wavepacket: boundary value problem numerically solved using finite difference method
- 6. Particle in a box: boundary value problem numerically solved used finite difference method
- 7. Motion under gravitational interaction: boundary value problem numerically solved using finite difference method
- 8. Concluding remarks
- 1. A numerical solution of boundary value problem using finite difference method
- 2. Differential equations of some elementary functions: boundary value problems numerically solved using finite difference method
- 3. Differential equations of special functions: boundary value problems numerically solved using finite difference method
- 4. Differential equation of Airy function: boundary value problem numerically solved using finite difference method
- 5. Differential equation of stationary localised wavepacket: boundary value problem numerically solved using finite difference method
- 6. Particle in a box: boundary value problem numerically solved used finite difference method
- 7. Motion under gravitational interaction: boundary value problem numerically solved using finite difference method
- 8. Concluding remarks