The Winston Company has four distribution centers (A, B, C, and D) that require 40,000, 60,000, 30,000, and 50,000 gallons of de-ionized water, respectively, per month for cleaning its long-haul trucks. Three de-ionized water wholesalers (1, 2, and 3) indicated their willingness to supply as many as 50,000, 70,000, and 60,000 gallons, respectively. The total cost (shipping plus price) of delivering 1,000 gallons of de-ionized water from each wholesaler to each distribution center is shown in the following table: Distribution Center Wholesaler A B C D 1 $1.30 $1.40 $1.80 $1.60 2 $1.30 $1.50 $1.80 $1.60 3 $1.60 $1.40 $1.70 $1.50 Determine the optimal solution. Show that all capacities have been exhausted and that all demands can be met with this solution. (use below table format, numbers are generic, erase them) Distribution Center Supply Wholesaler A B C D 1 xx xx x x 400-200-150-50=0 2 xx 3 xx Demand 200-200=0 What is the total cost of the solution?
The Winston Company has four distribution centers (A, B, C, and D) that require 40,000, 60,000, 30,000, and 50,000 gallons of de-ionized water, respectively, per month for cleaning its long-haul trucks. Three de-ionized water wholesalers (1, 2, and 3) indicated their willingness to supply as many as 50,000, 70,000, and 60,000 gallons, respectively. The total cost (shipping plus price) of delivering 1,000 gallons of de-ionized water from each wholesaler to each distribution center is shown in the following table:
Distribution Center |
||||
Wholesaler |
A |
B |
C |
D |
1 |
$1.30 |
$1.40 |
$1.80 |
$1.60 |
2 |
$1.30 |
$1.50 |
$1.80 |
$1.60 |
3 |
$1.60 |
$1.40 |
$1.70 |
$1.50 |
- Determine the optimal solution. Show that all capacities have been exhausted and that all demands can be met with this solution. (use below table format, numbers are generic, erase them)
Distribution Center |
Supply |
||||
Wholesaler |
A |
B |
C |
D |
|
1 |
xx |
xx |
x |
x |
400-200-150-50=0 |
2 |
xx |
||||
3 |
xx |
||||
Demand |
200-200=0 |
- What is the total cost of the solution?
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