Maximize Z = 2x1 + 5x2 + 3x3 subject to 2x2 + 2x1 + 4x2 + Т1> 0, 22 2 0, Хз > 0. (1) (2) X1 X3 > 20 X3 50 Let M → o. Construct the big-M problem in algebraic/tabular form by introduci slack, excess and/or artificial variables. Define all variables clearly. Use the tabular form of the big-M method to find an optimal solution for (x1, x2, x3) a the associated optimal value for Z. In each simplex tableau, identify the current soluti for (x1, x2, 13), its feasibility for the original problem, and the associated value for Z i is feasible for the original problem
Maximize Z = 2x1 + 5x2 + 3x3 subject to 2x2 + 2x1 + 4x2 + Т1> 0, 22 2 0, Хз > 0. (1) (2) X1 X3 > 20 X3 50 Let M → o. Construct the big-M problem in algebraic/tabular form by introduci slack, excess and/or artificial variables. Define all variables clearly. Use the tabular form of the big-M method to find an optimal solution for (x1, x2, x3) a the associated optimal value for Z. In each simplex tableau, identify the current soluti for (x1, x2, 13), its feasibility for the original problem, and the associated value for Z i is feasible for the original problem
Practical Management Science
6th Edition
ISBN:9781337406659
Author:WINSTON, Wayne L.
Publisher:WINSTON, Wayne L.
Chapter8: Evolutionary Solver: An Alternative Optimization Procedure
Section8.3: Introduction To Evolutionary Solver
Problem 2P
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