Scientific computing: Fast Fourier Transform, finite differences, finite elements, spectral method, numerical linear algebra. Complex variables and applications. Initial-value problems: stability or chaos in ordinary differential equations, wave equation versus heat equation, conservation laws and shocks, dissipation and dispersion. Optimization: network flows, linear programming. Includes one computational project
Numerical methods for solving problems arising in heat and mass transfer, fluid mechanics, chemical ...
Computational science is one of the rapidly growing multidisciplinary fields. The high-performance c...
This book presents an exhaustive and in-depth exposition of the various numerical methods used in sc...
Review of linear algebra, applications to networks, structures, and estimation, Lagrange multipliers...
This book provides readers with modern computational techniques for solving variety of problems from...
As technology continues to move ahead, modern engineers and scientists are frequently faced with dif...
This book provides readers with modern computational techniques for solving variety of problems from...
Applications of computing for solving scientific and engineering problems. Numerical solution of ini...
This course provides a review of linear algebra, including applications to networks, structures, and...
This course provides a review of linear algebra, including applications to networks, structures, and...
Mathematics in Physics and Engineering describes the analytical and numerical (desk-machine) methods...
Computing Methods, Volume 2 is a five-chapter text that presents the numerical methods of solving se...
This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 Internati...
Advanced introduction to applications and theory of numerical methods for solution of differential e...
Introducing those areas of mathematics which are most important to practical problem solving in the ...
Numerical methods for solving problems arising in heat and mass transfer, fluid mechanics, chemical ...
Computational science is one of the rapidly growing multidisciplinary fields. The high-performance c...
This book presents an exhaustive and in-depth exposition of the various numerical methods used in sc...
Review of linear algebra, applications to networks, structures, and estimation, Lagrange multipliers...
This book provides readers with modern computational techniques for solving variety of problems from...
As technology continues to move ahead, modern engineers and scientists are frequently faced with dif...
This book provides readers with modern computational techniques for solving variety of problems from...
Applications of computing for solving scientific and engineering problems. Numerical solution of ini...
This course provides a review of linear algebra, including applications to networks, structures, and...
This course provides a review of linear algebra, including applications to networks, structures, and...
Mathematics in Physics and Engineering describes the analytical and numerical (desk-machine) methods...
Computing Methods, Volume 2 is a five-chapter text that presents the numerical methods of solving se...
This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 Internati...
Advanced introduction to applications and theory of numerical methods for solution of differential e...
Introducing those areas of mathematics which are most important to practical problem solving in the ...
Numerical methods for solving problems arising in heat and mass transfer, fluid mechanics, chemical ...
Computational science is one of the rapidly growing multidisciplinary fields. The high-performance c...
This book presents an exhaustive and in-depth exposition of the various numerical methods used in sc...