Consider the following transshipment network for finding the shortest route from node 1 to node 7. A network diagram between seven parties, distributed across four columns, is shown. The left-most column contains node 1. The second column contains nodes 2, 3, and 4. The third column contains nodes 5 and 6. The right-most column contains node 7. Arrows are shown between various locations. The following list contains the numbers placed on the graph. 1→2: 7 1→3: 9 1→4: 18 2⇆3: 3 2⇆5: 5 3⇆2: 3 3⇆5: 4 4→6: 3 5⇆2: 5 5⇆3: 4 5⇆6: 2 5→7: 6 6⇆5: 2 6→7: 3 7: no departing arrows (a) Formulate a linear programming model of the problem. (Express your answers using xij, where each xij is either 0 or 1 for the arc from node i to node j.) Min s.t.Node 1 Flows Node 2 Flows Node 3 Flows Node 4 Flows Node 5 Flows Node 6 Flows Node 7 Flows For all xij = 0, 1. (b) Find the shortest route from node 1 to node 7 in the network shown. (Enter your answers as a comma-separated list.) path = 1, , 7
Consider the following transshipment network for finding the shortest route from node 1 to node 7. A network diagram between seven parties, distributed across four columns, is shown. The left-most column contains node 1. The second column contains nodes 2, 3, and 4. The third column contains nodes 5 and 6. The right-most column contains node 7. Arrows are shown between various locations. The following list contains the numbers placed on the graph. 1→2: 7 1→3: 9 1→4: 18 2⇆3: 3 2⇆5: 5 3⇆2: 3 3⇆5: 4 4→6: 3 5⇆2: 5 5⇆3: 4 5⇆6: 2 5→7: 6 6⇆5: 2 6→7: 3 7: no departing arrows (a) Formulate a linear programming model of the problem. (Express your answers using xij, where each xij is either 0 or 1 for the arc from node i to node j.) Min s.t.Node 1 Flows Node 2 Flows Node 3 Flows Node 4 Flows Node 5 Flows Node 6 Flows Node 7 Flows For all xij = 0, 1. (b) Find the shortest route from node 1 to node 7 in the network shown. (Enter your answers as a comma-separated list.) path = 1, , 7
Database System Concepts
7th Edition
ISBN:9780078022159
Author:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Publisher:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Chapter1: Introduction
Section: Chapter Questions
Problem 1PE
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Question
Consider the following transshipment network for finding the shortest route from node 1 to node 7.
A network diagram between seven parties, distributed across four columns, is shown. The left-most column contains node 1. The second column contains nodes 2, 3, and 4. The third column contains nodes 5 and 6. The right-most column contains node 7. Arrows are shown between various locations. The following list contains the numbers placed on the graph.
- 1→2: 7
- 1→3: 9
- 1→4: 18
- 2⇆3: 3
- 2⇆5: 5
- 3⇆2: 3
- 3⇆5: 4
- 4→6: 3
- 5⇆2: 5
- 5⇆3: 4
- 5⇆6: 2
- 5→7: 6
- 6⇆5: 2
- 6→7: 3
- 7: no departing arrows
(a)
Formulate a linear programming model of the problem. (Express your answers using xij, where each xij is either 0 or 1 for the arc from node i to node j.)
Min
s.t.Node 1 Flows
Node 2 Flows
Node 3 Flows
Node 4 Flows
Node 5 Flows
Node 6 Flows
Node 7 Flows
For all xij = 0, 1.
(b)
Find the shortest route from node 1 to node 7 in the network shown. (Enter your answers as a comma-separated list.)
path = 1,
, 7
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