Deck 24: Transportation Modeling
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Deck 24: Transportation Modeling
1
The transportation model seeks satisfactory,but not necessarily optimal,solutions for shipping goods from several origins to several destinations.
False
2
A feasible solution in transportation models is one in which all of the supply and demand constraints are satisfied.
True
3
For the problem data set below,what is the northwest-corner allocation to the cell Source 1-Destination 1? 
A)0
B)2
C)15
D)90
E)30

A)0
B)2
C)15
D)90
E)30
15
4
A transportation problem requires exactly as many origins as destinations.
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5
Which of the following is NOT information needed for a transportation problem?
A)the cost of shipping one unit from each origin to each destination
B)the set of destinations and the demand at each
C)the set of origins and the demand at each origin
D)the list of sources and the capacity at each
E)None of the above is needed.
A)the cost of shipping one unit from each origin to each destination
B)the set of destinations and the demand at each
C)the set of origins and the demand at each origin
D)the list of sources and the capacity at each
E)None of the above is needed.
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6
The intuitive method of generating an initial solution has different results for each problem solver because "intuition" varies from person to person.
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7
The purpose of the transportation approach for location analysis is to minimize which of the following?
A)total costs
B)total variable costs
C)total fixed costs
D)total shipping costs
E)the number of shipments
A)total costs
B)total variable costs
C)total fixed costs
D)total shipping costs
E)the number of shipments
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8
________ finds the least-cost means of shipping supplies from several origins to several destinations.
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9
The three information needs of a transportation problem are the origin points and the capacity at each,the destination points and the demand at each,and ________.
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10
The transportation model is a special class of linear programming models.
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11
The transportation method is a special case of the family of problems known as what?
A)regression problems
B)decision tree problems
C)linear programming problems
D)simulation problems
E)statistical problems
A)regression problems
B)decision tree problems
C)linear programming problems
D)simulation problems
E)statistical problems
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12
The elements of a transportation problem that supply goods are referred to as ________.
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13
Which of the following is NOT needed in order to use the transportation model?
A)the source points and their capacity
B)the fixed costs of source points
C)the destination points and their demand
D)the cost of shipping one unit from each source to each destination
E)All of these are needed.
A)the source points and their capacity
B)the fixed costs of source points
C)the destination points and their demand
D)the cost of shipping one unit from each source to each destination
E)All of these are needed.
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14
A firm has established a distribution network for the supply of a raw material critical to its manufacturing.Currently there are two origins for this raw material,which must be shipped to three manufacturing plants.The current network has the following characteristics:
The firm has identified two potential sites for a third raw material source;these are identified as Candidate A and Candidate B.From A,the costs to ship would be $9 to Plant 1,$10 to Plant 2,and $12 to Plant 3,respectively.From B,these costs would be $11,$14,and $8,respectively.The new source,wherever it is located,will have a capacity of 500 units.Set up this problem as two separate transportation matrices.(Do not solve the problem. )

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15
The transportation model is an excellent tool for minimizing shipping costs among existing facilities,but it is not useful when firms consider new facility locations.
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16
Neither the northwest-corner rule nor the intuitive method considers shipping cost in making initial allocations.
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17
Upon completion of the northwest-corner rule,which source-destination cell is guaranteed to be occupied?
A)top-left
B)top-right
C)bottom-left
D)bottom-right
E)the cell with the lowest shipping cost (or at least one of them if there's a tie)
A)top-left
B)top-right
C)bottom-left
D)bottom-right
E)the cell with the lowest shipping cost (or at least one of them if there's a tie)
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18
The northwest-corner rule is best used:
A)to minimize the total shipping cost from several origins to several destinations.
B)to calculate whether a feasible solution is also an optimal solution.
C)to calculate how much to transfer from one shipping route to another.
D)to generate an initial feasible solution to a transportation problem.
E)to resolve cases of degeneracy in transportation problems.
A)to minimize the total shipping cost from several origins to several destinations.
B)to calculate whether a feasible solution is also an optimal solution.
C)to calculate how much to transfer from one shipping route to another.
D)to generate an initial feasible solution to a transportation problem.
E)to resolve cases of degeneracy in transportation problems.
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19
The initial solution to a transportation problem can be generated several ways,so long as:
A)it minimizes cost.
B)it ignores cost.
C)all supply and demand conditions are satisfied.
D)degeneracy does not exist.
E)all cells are filled.
A)it minimizes cost.
B)it ignores cost.
C)all supply and demand conditions are satisfied.
D)degeneracy does not exist.
E)all cells are filled.
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20
What is transportation modeling?
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21
For the problem data set below,what is the northwest corner allocation to the cell Source 3-Destination 3? 
A)0
B)15
C)20
D)35
E)45

A)0
B)15
C)20
D)35
E)45
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22
What purpose does the northwest-corner rule serve?
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23
For the problem below,what is the quantity assigned to the cell Source 3-Destination 1 using the intuitive method for an initial feasible solution? 
A)3
B)13.333
C)30
D)45
E)50

A)3
B)13.333
C)30
D)45
E)50
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24
For the problem below,what is the quantity assigned to the cell Source 1-Destination 2 using the intuitive method for an initial feasible solution? 
A)1
B)5
C)30
D)45
E)50

A)1
B)5
C)30
D)45
E)50
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25
In a transportation minimization problem,the negative improvement index associated with a cell indicates that reallocating units to that cell would lower costs.
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26
In transportation model analysis,the stepping-stone method is used to:
A)identify a dummy origin point.
B)obtain an initial feasible solution.
C)evaluate empty cells for possible degeneracy.
D)balance supply and demand.
E)evaluate empty cells for potential solution improvements.
A)identify a dummy origin point.
B)obtain an initial feasible solution.
C)evaluate empty cells for possible degeneracy.
D)balance supply and demand.
E)evaluate empty cells for potential solution improvements.
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27
For the data below,construct an initial feasible solution using the northwest-corner rule. 

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28
For the transportation problem below,construct an initial feasible solution using the intuitive method. 

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29
A transportation problem has a feasible solution when:
A)all of the improvement indices are greater than or equal to zero.
B)all demand and supply constraints are satisfied.
C)the number of filled cells is one less than the number of rows plus the number of columns.
D)all the squares are used.
E)the solution yields the lowest possible cost.
A)all of the improvement indices are greater than or equal to zero.
B)all demand and supply constraints are satisfied.
C)the number of filled cells is one less than the number of rows plus the number of columns.
D)all the squares are used.
E)the solution yields the lowest possible cost.
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30
The ________ develops an initial feasible solution for a transportation model by starting at the upper left-hand cell of a table and systematically allocating units to shipping points.
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31
State,in order,the three steps in making an initial allocation with the northwest-corner rule.
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32
A transportation problem has an optimal solution when:
A)all of the improvement indices are greater than or equal to zero.
B)all demand and supply constraints are satisfied.
C)the number of filled cells is one less than the number of rows plus the number of columns.
D)all the squares are used.
E)all origin-destination combinations have been made equally low in cost.
A)all of the improvement indices are greater than or equal to zero.
B)all demand and supply constraints are satisfied.
C)the number of filled cells is one less than the number of rows plus the number of columns.
D)all the squares are used.
E)all origin-destination combinations have been made equally low in cost.
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33
When using the stepping-stone method,the improvement index for an unused cell equals the shipping cost associated with that cell.
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34
The total cost of the optimal solution to a transportation problem:
A)is calculated by multiplying the total supply (including any dummy values)by the average cost of the cells.
B)cannot be calculated from the information normally included in a transportation problem.
C)can be calculated based only on the entries in the filled cells of the solution.
D)can be calculated from the original northwest-corner solution.
E)is found by multiplying the amounts in each cell by the cost for that cell for each row and then subtracting the products of the amounts in each cell times the cost of each cell for the columns.
A)is calculated by multiplying the total supply (including any dummy values)by the average cost of the cells.
B)cannot be calculated from the information normally included in a transportation problem.
C)can be calculated based only on the entries in the filled cells of the solution.
D)can be calculated from the original northwest-corner solution.
E)is found by multiplying the amounts in each cell by the cost for that cell for each row and then subtracting the products of the amounts in each cell times the cost of each cell for the columns.
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35
When using the stepping-stone method for a minimization problem,the number of units that reallocates corresponds to the smallest number found in the cells containing minus signs.
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36
The stepping-stone method frequently achieves an optimal solution as soon as it calculates an initial feasible solution.
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37
The northwest-corner rule's biggest flaw is that:
A)it ignores costs.
B)it cannot generate feasible solutions.
C)it never generates ideal solutions.
D)it ignores shipping time.
E)There are no major flaws.
A)it ignores costs.
B)it cannot generate feasible solutions.
C)it never generates ideal solutions.
D)it ignores shipping time.
E)There are no major flaws.
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38
For the problem data set below,what is the northwest-corner allocation to the cell Source 1 - Destination 2? 
A)0
B)15
C)25
D)45
E)35

A)0
B)15
C)25
D)45
E)35
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39
The main difference between the intuitive lowest-cost method and the northwest-corner rule is that:
A)the intuitive lowest-cost method always generates a better solution.
B)the northwest-corner rule is faster.
C)the northwest-corner rule ignores cost.
D)only the intuitive lowest-cost method generates an optimal solution.
E)None of the above is accurate.
A)the intuitive lowest-cost method always generates a better solution.
B)the northwest-corner rule is faster.
C)the northwest-corner rule ignores cost.
D)only the intuitive lowest-cost method generates an optimal solution.
E)None of the above is accurate.
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40
When using the stepping-stone method,the closed path sometimes has the shape of a triangle as diagonal moves are permitted.
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41
A firm has established a distribution network for the supply of a raw material critical to its manufacturing.Currently there are two origins for this raw material,which must be shipped to three manufacturing plants.The current network has the following characteristics:
The firm has identified two potential sites for a third raw material source;these are identified as Candidate A and Candidate B.From A,the costs to ship would be $9 to Plant 1,$10 to Plant 2,and $12 to Plant 3.From B,these costs would be $11,$14,and $8.The new source,wherever it is located,will have a capacity of 500 units.Solve with the transportation method.Which site should be selected?

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42
Consider the transportation data set for a minimization problem below.
a.Calculate the initial solution using the northwest-corner rule.
b.Calculate improvement indices,iterate,and solve for the optimal shipping pattern.

b.Calculate improvement indices,iterate,and solve for the optimal shipping pattern.
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43
A manufacturer of semiconductor "wafers" has been attempting to convert its operations to practices more in keeping with JIT principles.The firm is now paying much more attention to the transit time between one processing stage and the next.The plant has a somewhat haphazard pattern of machine locations,partly because the machines were purchased and installed at different times,partly from a shortage of floor space,and partly from previous experiments with work cells.The bottom line is this: there are four machines that perform a certain processing phase,and three machines that perform the next phase.All units of a large class of wafers go through these two phases.The table below displays the transit time,in minutes,from each machine of the first phase to each machine of the second.Machine 3 is not really 100 minutes away from machine B;the company has prohibited that combination because of quality problems associated with that specific pairing.Supply and demand quantities are in wafers processed per week.Develop a transit time minimizing solution for this firm.What is the total transit time of this solution? Which machines are fully utilized? Which machines have some capacity unused or requirements unfilled? Was the prohibition on the 3-B combination honored? 

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44
The ________ is an iterative technique for moving from an initial feasible solution to an optimal solution in the transportation method.
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45
The stepping-stone method:
A)is an alternative to using the northwest-corner rule.
B)often involves tracing closed paths with a triangular shape.
C)is used to identify the relevant costs in a transportation problem.
D)is used to evaluate the cost effectiveness of shipping goods via transportation routes not currently in the solution.
E)helps determine whether a solution is feasible or not.
A)is an alternative to using the northwest-corner rule.
B)often involves tracing closed paths with a triangular shape.
C)is used to identify the relevant costs in a transportation problem.
D)is used to evaluate the cost effectiveness of shipping goods via transportation routes not currently in the solution.
E)helps determine whether a solution is feasible or not.
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46
The Shamrock Transportation Company has four terminals: A,B,C,and D.At the start of a particular day,there are 8,8,6,and 3 tractors available at those terminals,respectively.During the previous night,trailers were loaded at plants R,S,T,and U.The number of trailers at each plant is 2,12,5,and 6,respectively.The company dispatcher has determined the distances between each terminal and each plant,as follows.How many tractors should be dispatched from each terminal to each plant in order to minimize the total number of miles traveled? 

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47
Find the minimum cost shipping solution for the transportation problem data set in the table below.Provide a table of shipping quantities and the minimum value for the shipping cost. 

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48
What is the difference between a feasible solution and an optimal solution?
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49
What does the stepping-stone method do?
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50
Consider the transportation problem and its optimal solution in the tables below.What is total shipping cost? 
A)0
B)$169
C)300 units
D)$2,100
E)$3,140

A)0
B)$169
C)300 units
D)$2,100
E)$3,140
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51
Find the minimum cost solution for the transportation problem detailed in the table below.
Before your solution can be implemented,you discover that the combination Source 3 - Destination 1 is unavailable,due to political turmoil in the country where Source 3 is located.Solve the revised problem.How much is cost increased by this complication?

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52
A transportation problem has improvement indices of 5,4,0,and -3.Which of the following is always true?
A)The transportation model is at its ideal solution.
B)The transportation model is at a feasible solution.
C)The total cost saved by changing one unit on the route with an improvement index of 5 would be $5.
D)The transportation matrix has four empty squares.
E)Both B and D
A)The transportation model is at its ideal solution.
B)The transportation model is at a feasible solution.
C)The total cost saved by changing one unit on the route with an improvement index of 5 would be $5.
D)The transportation matrix has four empty squares.
E)Both B and D
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53
Find the minimum cost solution for the transportation problem detailed in the table below.Explain carefully the meaning of any quantity in a "dummy" row or column. 

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54
One difference in the stepping-stone method compared to the northwest-corner and intuitive methods is:
A)the stepping-stone method never finds a feasible solution.
B)the stepping-stone method ignores costs.
C)the stepping-stone method ALWAYS finds a lower-cost solution.
D)the stepping-stone method guarantees an optimal solution.
E)the stepping-stone method does not consider factory capacities.
A)the stepping-stone method never finds a feasible solution.
B)the stepping-stone method ignores costs.
C)the stepping-stone method ALWAYS finds a lower-cost solution.
D)the stepping-stone method guarantees an optimal solution.
E)the stepping-stone method does not consider factory capacities.
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55
In a minimization problem,a positive improvement index in a cell indicates that:
A)the solution is optimal.
B)the total cost will increase if units are reallocated to that cell.
C)there is degeneracy.
D)the total cost will decrease if units are reallocated to that cell.
E)the problem has no feasible solution.
A)the solution is optimal.
B)the total cost will increase if units are reallocated to that cell.
C)there is degeneracy.
D)the total cost will decrease if units are reallocated to that cell.
E)the problem has no feasible solution.
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56
An improvement index indicates:
A)whether a method other than the stepping-stone should be used.
B)whether a method other than the northwest-corner rule should be used.
C)how much total cost would increase or decrease if a single unit was reallocated to that cell.
D)whether the transportation cost in the upper left-hand corner of a cell is optimal.
E)how much total cost would increase or decrease if the largest possible quantity were reallocated to that cell.
A)whether a method other than the stepping-stone should be used.
B)whether a method other than the northwest-corner rule should be used.
C)how much total cost would increase or decrease if a single unit was reallocated to that cell.
D)whether the transportation cost in the upper left-hand corner of a cell is optimal.
E)how much total cost would increase or decrease if the largest possible quantity were reallocated to that cell.
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57
Consider the transportation problem and its optimal solution in the tables below.The cell Source 3 - Destination 3 is currently empty.What would be the change in the total shipping cost if the largest possible amount were shipped using that route,leaving all the supply and demand conditions unchanged? 
A)0
B)fifty units
C)a decrease of $9
D)an increase of $450
E)an increase of $630

A)0
B)fifty units
C)a decrease of $9
D)an increase of $450
E)an increase of $630
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58
Consider the transportation problem in the data set and optimal solution below.Verify by hand or by calculator (show your work)the value of the total shipping cost. 

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59
Consider the transportation problem and its initial solution in the table below.What is the improvement index for the empty cell Source 1 - Destination 3? 
A)0
B)-14
C)-23
D)-70
E)115

A)0
B)-14
C)-23
D)-70
E)115
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60
In a minimization problem,a negative improvement index in a cell indicates that the:
A)solution is optimal.
B)total cost will increase if units are reallocated to that cell.
C)current iteration is worse than the previous one.
D)total cost will decrease if units are reallocated to that cell.
E)problem has no feasible solution.
A)solution is optimal.
B)total cost will increase if units are reallocated to that cell.
C)current iteration is worse than the previous one.
D)total cost will decrease if units are reallocated to that cell.
E)problem has no feasible solution.
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61
A transportation problem has 4 origins and 2 destinations.The optimal solution of this problem will fill no more than ________ cells with quantities to be shipped.
A)5
B)6
C)8
D)20
E)All cells will be occupied.
A)5
B)6
C)8
D)20
E)All cells will be occupied.
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62
Suppose the solution for a transportation model fills 5 cells with quantities to be shipped.Which of the following combinations of sources and destinations would be degenerate?
A)2 sources,4 destinations
B)3 sources,3 destinations
C)4 sources,2 destinations
D)5 sources,1 destination
E)None of the above are degenerate.
A)2 sources,4 destinations
B)3 sources,3 destinations
C)4 sources,2 destinations
D)5 sources,1 destination
E)None of the above are degenerate.
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63
In a transportation problem,degeneracy means that:
A)the problem was improperly constructed,and it must be reformulated.
B)the assumptions of the transportation model have not been met.
C)the number of filled cells is too small to allow the calculation of improvement indices.
D)the total supply and the total demand are unbalanced.
E)the number of origins is not equal to the number of destinations.
A)the problem was improperly constructed,and it must be reformulated.
B)the assumptions of the transportation model have not been met.
C)the number of filled cells is too small to allow the calculation of improvement indices.
D)the total supply and the total demand are unbalanced.
E)the number of origins is not equal to the number of destinations.
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64
If demand exceeds supply in a transportation problem,the problem must be balanced by adding a dummy source with additional supply.
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65
A transportation problem with 8 sources and 6 destinations will have an optimal solution that uses at most 13 of the 48 possible routes.
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66
________ is an occurrence in transportation problems when too few shipping routes are being used to allow calculation of improvement indices.
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67
A transportation problem that has more units supplied than demanded will require a(n)________ to balance the problem.
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68
A transportation problem with a total supply of 500 and a total demand of 400 will have an optimal solution that leaves 100 units of supply unused.
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69
Degeneracy occurs when the number of occupied squares is less than the number of rows plus the number of columns minus one.
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70
Degeneracy in a transportation problem is when no closed path exists for evaluating an unused cell.
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71
When the number of shipments in a feasible solution is less than the number of rows plus the number of columns minus one:
A)the solution is optimal.
B)a dummy source must be created.
C)a dummy destination must be created.
D)there is degeneracy,and an artificial allocation must be created.
E)the closed path has a triangular shape.
A)the solution is optimal.
B)a dummy source must be created.
C)a dummy destination must be created.
D)there is degeneracy,and an artificial allocation must be created.
E)the closed path has a triangular shape.
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72
Total demand for a transportation model is 15 while total supply is 20.Which of the following should be included?
A)a dummy source of 20 units
B)a dummy destination of 5 units
C)a dummy source of 5 units
D)a dummy destination of 20 units
E)a dummy destination of 35 units
A)a dummy source of 20 units
B)a dummy destination of 5 units
C)a dummy source of 5 units
D)a dummy destination of 20 units
E)a dummy destination of 35 units
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73
To handle degeneracy,a very small quantity is placed in one of the unused squares.
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74
A transportation problem has 8 origins and 6 destinations.The optimal solution of this problem will fill no more than ________ cells with quantities to be shipped.
A)2
B)13
C)14
D)48
E)Cannot be calculated without knowing the supply and demand totals.
A)2
B)13
C)14
D)48
E)Cannot be calculated without knowing the supply and demand totals.
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75
The number of routes filled by a solution to a transportation problem is no larger than ________.
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76
A transportation problem has two origins: A can supply 20 units and B can supply 30 units.This problem has two destinations: C requires 25 units and D requires 35 units.Which of the following is true?
A)The problem will require a dummy demand with a capacity of 10 units.
B)The problem is unbalanced and cannot be solved by the transportation method.
C)The problem will require a dummy supply with a capacity of 10 units.
D)Destinations C and D must each receive 5 units less than they require.
E)None of the above is true.
A)The problem will require a dummy demand with a capacity of 10 units.
B)The problem is unbalanced and cannot be solved by the transportation method.
C)The problem will require a dummy supply with a capacity of 10 units.
D)Destinations C and D must each receive 5 units less than they require.
E)None of the above is true.
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77
Which of the following combinations of sources and destinations would fill no more than 25% of cells with quantities to be shipped for the optimal solution?
A)1 to 1
B)1 to 4
C)4 to 1
D)8 to 2
E)5 to 16
A)1 to 1
B)1 to 4
C)4 to 1
D)8 to 2
E)5 to 16
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78
When does degeneracy occur in a transportation model?
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79
A transportation model fills one-half of its cells under the non-degenerate optimal solution.Which of the following most closely describes the number of sources compared to the number of destinations?
A)1 to 1
B)2 to 2
C)3 to 3
D)4 to 3
E)4 to 4
A)1 to 1
B)2 to 2
C)3 to 3
D)4 to 3
E)4 to 4
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80
A large transportation problem has 220 origins and 1360 destinations.The optimal solution of this problem will fill no more than about ________ of cells with quantities to be shipped.
A)one-half of one percent
B)five percent
C)ten percent
D)twenty-five
E)All cells will be occupied.
A)one-half of one percent
B)five percent
C)ten percent
D)twenty-five
E)All cells will be occupied.
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