Senin, 24 Maret 2014

Free Download Practical Numerical Methods for Chemical Engineers: Using Excel with VBA, 3rd EditionBy Richard A Davis

Free Download Practical Numerical Methods for Chemical Engineers: Using Excel with VBA, 3rd EditionBy Richard A Davis

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Practical Numerical Methods for Chemical Engineers: Using Excel with VBA, 3rd EditionBy Richard A Davis

Practical Numerical Methods for Chemical Engineers: Using Excel with VBA, 3rd EditionBy Richard A Davis


Practical Numerical Methods for Chemical Engineers: Using Excel with VBA, 3rd EditionBy Richard A Davis


Free Download Practical Numerical Methods for Chemical Engineers: Using Excel with VBA, 3rd EditionBy Richard A Davis

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Practical Numerical Methods for Chemical Engineers: Using Excel with VBA, 3rd EditionBy Richard A Davis

This new edition expands Practical Numerical Methods with more VBA to boost Excel's power for numerical modeling and analysis. Visit the companion web site to access the book's Excel and VBA files, and learn how to customize your Excel workbooks with the same numerical techniques found in specialized math software.

www.d.umn.edu/~rdavis/PNM/PNMExcelVBA3

Download:

  • A refined macro-enabled Excel workbook with a suite of over 170 VBA user-defined functions, macros and user forms for learning VBA and implementing advanced numerical techniques in Excel.
  • More than 200 practical example and animation workbook files from the book that demonstrate the power of numerical methods. Customize the example files and macros to tackle your own problems using VBA in Excel.
  • Hundreds of practice problems for self-guided study to sharpen your Excel and VBA skills.
  • The first chapter sets the stage for problem solving with numerical methods. The next two chapters cover frequently overlooked features of Excel (2010, 2013 and later) and VBA for implementing numerical methods in Excel, as well as documenting results. The remaining chapters present powerful numerical techniques using Excel and VBA to find roots to algebraic equations, approximate derivatives, optimize, model data by least-squares regression and interpolation, analyze risk and uncertainty, solve integrals and ordinary and partial differential equations:

  • Numerical Methods & Mathematical Modeling: expert problem solving
  • Excel: Documentation, Graphing, Worksheet Functions, Input Validation and Formatting, What-if Analysis
  • VBA: Editor and objects, Function and Sub Procedures, Data Types, Structured Programming, Arithmetic and Worksheet Functions, Flow Control, Arrays, Communication, Message and Input Boxes, User Forms, Reading/Writing Files, Debugging, Unit Conversions
  • Linear Equations: Matrix Algebra, Gaussian Elimination and Crout Reduction with Pivoting, Thomas, Cholesky, Power, Jacobi, and Interpolation Methods for Eigenvalues and Eigenvectors, Jacobi and Gauss-Seidel Iteration, Relaxation
  • Taylor Series Analysis: Finite Difference Derivative Approximation, Richardson's Extrapolation, Ridder's algorithm, Sensitivity
  • Nonlinear Equations Root Finding: Methods of Bisection, Regula Falsi, Newton, Secant, Pade, Wegstein, Quasi-Newton, Aitkin/Steffensen, Homotopy, Bairstow (for polynomial roots), Goal Seek and Solver
  • Optimization: Solver, Luus-Jaakola, Quadratic, Golden Section, Powell, Downhill Simplex, Firefly, Constraints, Scaling and Sensitivity
  • Uncertainty and Risk Analysis: Bootstrap, Confidence Intervals, Law of Propagation, Monte Carlo Simulations with Latin Hypercube Sampling
  • Least-squares Regression: Linear, Nonlinear, LINEST, Gauss-Newton, Levenberg-Marquardt, Validation and Assessment, Uncertainty Analysis, Weighted Regression
  • Interpolation: Linear, Newton Divided Difference and Lagrange Polynomials, Rational, Bulirsh-Stoer Pade, Stineman, Cubic, B, Akima and Constrained Hermite Splines, Bivariate Interpolation
  • Integration: Graphical, Trapezoidal, Midpoint and transformation for Improper Integrals, Romberg, Adaptive Simpson and Gauss-Kronrod, Multiple Integrals by Simpson, Kronrod and Monte Carlo
  • Initial-value Problems: Single Step Euler and Backward Euler, Implicit Trapezoidal for Stiffness, Variable Step Runge-Kutta Cash-Karp, Dormand-Prince, Multi-step Adams-Bashforth-Moulton, Differential-Algebraic Systems
  • Boundary-value Problems and Partial Differential Equations: Shooting, Finite Difference, Orthogonal Collocation, Quasilinearization, Method of Lines, Crank-Nicholson
  • Review: Reference Tables of Excel and VBA Functions, User-defined Functions, Macros, User Forms
  • Primer on chemical reaction engineering
    • Sales Rank: #1161532 in Books
    • Published on: 2014-10-02
    • Original language: English
    • Dimensions: 11.00" h x 1.40" w x 8.50" l, 3.03 pounds
    • Binding: Paperback
    • 620 pages

    About the Author

    Richard Davis is a Jean G. Blehart Distinguished Professor of Chemical Engineering at the University of Minnesota Duluth.

    Professor Davis has over two decades experience teaching a variety of courses including computational methods, unit operations of momentum, heat and mass transfer, chemical reactor design, engineering economics, bioprocessing and green engineering.

    His current teaching and research interests include process modeling and simulation applied to mineral processing, energy conversion, air pollution control, chemical process safety, and environmental management.Professor Davis serves as the Executive Secretary for the National Chemical Engineering Honor Society Omega Chi Epsilon, and is active in AIChE and ASEE. He is the academic adviser to the local engineering student chapters of Tau Beta Pi, Omega Chi Epsilon, and the Society for Mining, Metallurgy, and Exploration.

    He is the recipient of the University’s Outstanding Adviser and Exceptional Teaching awards.

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    Practical Numerical Methods for Chemical Engineers: Using Excel with VBA, 3rd EditionBy Richard A Davis PDF

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