Question: nothing is missing its the complete problem Consider the following network representation of a transportation problem. The supplies, demands, and transportation costs per unit are

nothing is missing its the complete problem Consider the following network representation of a transportation problem.
The supplies, demands, and transportation costs per unit are shown on the network.
(a) Develop a linear programming model for this problem; be sure to define the variables in your model.
Let
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
x23= amount shipped from Omaha to St. Louis
Min
s.t.
From Jefferson City
From Omaha
To Des Moines
To Kansas City
To St. Louis
x11,x12,x13,x21,x22,x230
(b) Solve the linear program to determine the optimal solution.
\table[[,Amount,Cost],[Jefferson City-Des Moines,,],[Jefferson City-Kansas City,,],[Jefferson City-St. Louis,,],[Omaha-Des Moines,,],[Omaha-Kansas City,,],[Omaha-St. Louis,,],[Total,,]]
 nothing is missing its the complete problem Consider the following network

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