The supplies, demands, and transportation costs per unit are shown on the network. The optimal (cost minimizing) distribution plan is given below. (Assume X11 = amount shipped from Jefferson City to Des Moines, X12 = amount shipped from Jefferson City to Kansas City, X13 = amount shipped from Jefferson City to St. Louis, X21 = amount shipped from Omaha to Des Moines, X22 = amount shipped from Omaha to Kansas City, and X23= amount shipped from Omaha to St. Louis.) Des Moines Kansas City St. Louis Supply Jefferson City Omaha Demand 38 23 61 0 51 51 46 0 46 84 74 Use the procedure described in Section 12.7 to try to find an alternative optimal solution. (Round your answers to the nearest integer.) (X11 X12′ 13′ X21 ×22×23) = (0, 38, 46, 61,
The supplies, demands, and transportation costs per unit are shown on the network. The optimal (cost minimizing) distribution plan is given below. (Assume X11 = amount shipped from Jefferson City to Des Moines, X12 = amount shipped from Jefferson City to Kansas City, X13 = amount shipped from Jefferson City to St. Louis, X21 = amount shipped from Omaha to Des Moines, X22 = amount shipped from Omaha to Kansas City, and X23= amount shipped from Omaha to St. Louis.) Des Moines Kansas City St. Louis Supply Jefferson City Omaha Demand 38 23 61 0 51 51 46 0 46 84 74 Use the procedure described in Section 12.7 to try to find an alternative optimal solution. (Round your answers to the nearest integer.) (X11 X12′ 13′ X21 ×22×23) = (0, 38, 46, 61,
Practical Management Science
6th Edition
ISBN:9781337406659
Author:WINSTON, Wayne L.
Publisher:WINSTON, Wayne L.
Chapter2: Introduction To Spreadsheet Modeling
Section: Chapter Questions
Problem 20P: Julie James is opening a lemonade stand. She believes the fixed cost per week of running the stand...
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Question

Transcribed Image Text:Consider the following network representation of a transportation problem.
84
74
Jefferson
City
Omaha
14
16
7
8
10
5
Des Moines
Kansas
City
St. Louis
61
51
46
Supplies
The supplies, demands, and transportation costs per unit are shown on the network. The optimal (cost minimizing) distribution plan is given below. (Assume X₁1 = amount shipped from Jefferson City
to Des Moines, X12 = amount shipped from Jefferson City to Kansas City, X13 = amount shipped from Jefferson City to St. Louis, X21 = amount shipped from Omaha to Des Moines, X22 = amount
shipped from Omaha to Kansas City, and X23 = amount shipped from Omaha to St. Louis.)
Demands
i

Transcribed Image Text:The supplies, demands, and transportation costs per unit are shown on the network. The optimal (cost minimizing) distribution plan is given below. (Assume X1₁1 = amount shipped from Jefferson City
to Des Moines, X12 = amount shipped from Jefferson City to Kansas City, X13 = amount shipped from Jefferson City to St. Louis, X21 = amount shipped from Omaha to Des Moines, X22 = amount
shipped from Omaha to Kansas City, and X23 = amount shipped from Omaha to St. Louis.)
Jefferson City
Omaha
Demand
Des Moines Kansas City St. Louis Supply
38
23
61
0
51
51
46
0
46
84
74
Use the procedure described in Section 12.7 to try to find an alternative optimal solution. (Round your answers to the nearest integer.)
(×11′ ×12′ ×13′ ×21′ ×22′ ×23) = (0, 38, 46, 61,
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