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Applied Numerical Methods for Chemical Engineers emphasizes the
derivation of a variety of numerical methods and their application
to the solution of engineering problems, with special attention to
problems in the chemical engineering field. These algorithms
encompass linear and nonlinear algebraic equations, eigenvalue
problems, finite difference methods, interpolation, differentiation
and integration, ordinary differential equations, boundary value
problems, partial differential equations, and linear and nonlinear
regression analysis. MATLAB is adopted as the calculation
environment throughout the book because of its ability to perform
all the calculations in matrix form, its large library of built-in
functions, its strong structural language, and its rich graphical
visualization tools. Through this book, students and other users
will learn about the basic features, advantages and disadvantages
of various numerical methods, learn and practice many useful
m-files developed for different numerical methods in addition to
the MATLAB built-in solvers, develop and set up mathematical models
for problems commonly encountered in chemical engineering, and
solve chemical engineering related problems through examples and
after-chapter problems with MATLAB by creating application m-files.
Discusses the CFD-DEM method of modeling which combines both the
Discrete Element Method and Computational Fluid Dynamics to
simulate fluid-particle interactions. Deals with both theoretical
and practical concepts of CFD-DEM, its numerical implementation
accompanied by a hands-on numerical code in FORTRAN Gives examples
of industrial applications
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