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Introduction to Mathematical Programming: Applications and Algorithms, Volume...

by Winston, Wayne L.;... | HC | Acceptable
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Readable copy. Pages may have considerable notes/highlighting. ~ ThriftBooks: Read More, Spend ... Read moreAbout condition
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Item specifics

Condition
Acceptable
A book with obvious wear. May have some damage to the book cover but the book is still completely intact. The binding may be slightly damaged around the edges but it is still completely intact. May have some underlining and highlighting of text and some writing in the margins, but there are no missing pages or anything else that would compromise the readability or legibility of the text. See the seller’s listing for full details and description of any imperfections. See all condition definitionsopens in a new window or tab
Seller notes
“Readable copy. Pages may have considerable notes/highlighting. ~ ThriftBooks: Read More, Spend ...
Binding
Hardcover
Weight
4 lbs
Product Group
Book
IsTextBook
Yes
ISBN
9780534359645
Subject Area
Technology & Engineering, Business & Economics, Mathematics
Publication Name
Introduction to Mathematical Programming
Publisher
Brooks/Cole
Item Length
10 in
Subject
Probability & Statistics / General, Operations Research, Management Science
Publication Year
2002
Type
Textbook
Format
Hardcover
Language
English
Item Height
1.5 in
Author
Wallace J. Kahn, Wayne L. Winston, Munirpallam Venkataramanan
Features
Revised
Item Weight
64.1 Oz
Item Width
8 in
Number of Pages
936 Pages

About this product

Product Information

Authors Wayne Winston and Munirpallam Venkataramanan emphasize model-formulation and model-building skills as well as interpretation of computer software output. Focusing on deterministic models, this book is designed for the first half of an operations research sequence. A subset of Winston's best-selling OPERATIONS RESEARCH, INTRODUCTION TO MATHEMATICAL PROGRAMMING offers self-contained chapters that make it flexible enough for one- or two-semester courses ranging from advanced beginning to intermediate in level. The book has a strong computer orientation and emphasizes model-formulation and model-building skills. Every topic includes a corresponding computer-based modeling and solution method and every chapter presents the software tools needed to solve realistic problems. LINDO, LINGO, and Premium Solver for Education software packages are available with the book.

Product Identifiers

Publisher
Brooks/Cole
ISBN-10
0534359647
ISBN-13
9780534359645
eBay Product ID (ePID)
103114590

Product Key Features

Number of Pages
936 Pages
Language
English
Publication Name
Introduction to Mathematical Programming
Publication Year
2002
Subject
Probability & Statistics / General, Operations Research, Management Science
Features
Revised
Type
Textbook
Subject Area
Technology & Engineering, Business & Economics, Mathematics
Author
Wallace J. Kahn, Wayne L. Winston, Munirpallam Venkataramanan
Format
Hardcover

Dimensions

Item Height
1.5 in
Item Weight
64.1 Oz
Item Length
10 in
Item Width
8 in

Additional Product Features

Edition Number
4
LCCN
2002-111346
Dewey Edition
0
Target Audience
College Audience
Illustrated
Yes
Volume Number
Vol. 1
Dewey Decimal
519.7
Edition Description
Revised Edition
Lc Classification Number
Qa402.5.W53 2002
Table of Content
1. INTRODUCTION TO MODEL BUILDING. An Introduction to Modeling. The Seven-Step Model-Building Process. Examples. 2. BASIC LINEAR ALGEBRA. Matrices and Vectors. Matrices and Systems of Linear Equations. The Gauss-Jordan Method for Solving Systems of Linear Equations. Linear Independence and Linear Dependence. The Inverse of a Matrix. Determinants. 3. INTRODUCTION TO LINEAR PROGRAMING. What is a Linear Programming Problem? The Graphical Solution of Two-Variable Linear Programming Problems. Special Cases. A Diet Problem. A Work-Scheduling Problem. A Capital Budgeting Problem. Short-term Financial Planning. Blending Problems. Production Process Models. Using Linear Programming to Solve Multiperiod Decision Problems: An Inventory Model. Multiperiod Financial Models. Multiperiod Work Scheduling. 4. THE SIMPLEX ALGORITM AND GOAL PROGRAMING. How to Convert an LP to Standard Form. Preview of the Simplex Algorithm. The Simplex Algorithm. Using the Simplex Algorithm to Solve Minimization Problems. Alternative Optimal Solutions. Unbounded LPs. The LINDO Computer Package. Matrix Generators, LINGO, and Scaling of LPs. Degeneracy and the Convergence of the Simplex Algorithm. The Big M Method. The Two-Phase Simplex Method. Unrestricted-in-Sign Variables. Karmarkar's Method for Solving LPs. Multiattribute Decision-Making in the Absence of Uncertainty: Goal Programming. Solving LPs with Spreadsheets. 5. SENSITIVITY ANALYSIS: AN APPLIED APPROACH. A Graphical Introduction to Sensitivity Analysis. The Computer and Sensitivity Analysis. Managerial Use of Shadow Prices. What Happens to the Optimal z-value if the Current Basis is no Longer Optimal? 6. SENSITIVITY ANALYSIS AND DUALITY. A Graphical Introduction to Sensitivity Analysis. Some Important Formulas. Sensitivity Analysis. Sensitivity Analysis When More Than One Parameter is Changed: The 100% Rule. Finding the Dual of an LP. Economic Interpretation of the Dual Problem. The Dual Theorem and Its Consequences. Shadow Prices. Duality and Sensitivity Analysis. 7. TRANSPORTATION, ASSIGNMENT, AND TRANSSHIPMENT PROBLEMS. Formulating Transportation Problems. Finding Basic Feasible Solutions for Transportation Problems. The Transportation Simplex Method. Sensitivity Analysis for Transportation Problems. Assignment Problems. Transshipment Problems. 8. NETWORK MODELS. Basic Definitions. Shortest Path Problems. Maximum Flow Problems. CPM and PERT. Minimum Cost Network Flow Problems. Minimum Spanning Tree Problems. The Network Simplex Method. 9. INTEGER PROGRAMMING. Introduction to Integer Programming. Formulation Integer Programming Problems. The Branch-and-Bound Method for Solving Pure Integer Programming Problems. The Branch-and-Bound Method for Solving Mixed Integer Programming Problems. Solving Knapsack Problems by the Branch-and-Bound Method. Solving Combinatorial Optimization Problems by the Branch-and-Bound Method. Implicit Enumeration. The Cutting Plane Algorithm. 10. ADVANCED TOPICS IN LINEAR PROGRAMMING. The Revised Simplex Algorithm. The Product Form of the Inverse. Using Column Generation to Solve Large-Scale LPs. The Dantzig-Wolfe Decomposition Algorithm. The Simplex Method for Upper-Bounded Variables. Karmarkar's Method for Solving LPs. 11. GAME THEORY. Two-Person Zero-Sum and Constant-Sum Games: Saddle Points. Two-Person Zero-Sum Games: Randomized Str4ategies, Domination, and Graphical Solution. Linear Programming and Zero-Sum Games. Two-Person Nonconstant-Sum Games. Introduction to n-Person Game Theory. The Core o f an n-Person Game. The Shapely Value. 12. NONLINEAR PROGRAMMING. Review of Differential Calculus. Introductory Concepts. Convex and Concave Functions. Solving NLPs with One Variable. Golden Section Search. Unconstrained Maximization and Minimization with Several Variables. The Method of Steepest Ascent. Lagrange Multiples. The Kuhn-Tucker Conditions. Quadratic Programming. Separable Programming. The Method of Feasible Directions. Pareto Optimality and Tradeoff Curves. 13.
Copyright Date
2003

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