An electronics store wants to identify a location for a warehouse that will ship to five retail stores. The coordinates and annual number of truckloads are given in the accompanying table. Develop a model to find the best location, assuming straight-line distances can be used between the locations. Experiment with the model by testing each of the possible best solutions, included, to find the best location. Click here to view the data for the store locations and annual numbers of truckloads, Click here to view some possible best solutions The best location is at (9,13) (Type an ordered pair. Round each coordinate to the nearest integer as needed) Possible Best So'utions The total weighted distance at the best location is (Round to two decimal places as needed) Store Locations and Truckloads Some possible best solutions to try are listed below. • Place the warehouse at (0,0). • Place the warehouse at the average X- and Y-coordinates of the stores, rounded to the nearest integer • Find the average X- and Y-coordinates of the stores, rounded to the nearest integer. Place the warehouse at the average of these coordinates and store D. • Place the warehouse at (9,13). Retail Store X-Coordinate Y-Coordinate Truckloads A 11 24 B 18 21 24 10 16 D 20 32 18 16 Print Done Print Done

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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An electronics store wants to identify a location for a warehouse that will ship to five retail stores. The coordinates and annual number of truckloads are given in the accompanying table. Develop a model to find the best location, assuming that
straight-line distances can be used between the locations. Experiment with the model by testing each of the possible best solutions, included, to find the best location.
Click here to view the data for the store locations and annual numbers of truckloads.
Click here to view some possible best solutions
The best location is at (9,13).
(Type an ordered pair. Round each coordinate to the nearest integer as needed.)
Possible Best Solutions
The total weighted distance at the best location is
(Round to two decimal places as needed)
Store Locations and Truckloads
Some possible best solutions to try are listed below.
• Place the warehouse at (0,0).
• Place the warehouse at the average X- and Y-coordinates of the stores, rounded
to the nearest integer
Find the average X- and Y-coordinates of the stores, rounded to the nearest
integer. Place the warehouse at the average of these coordinates and store D.
• Place the warehouse at (9,13).
Retail Store
X-Coordinate
Y-Coordinate
Truckloads
11
24
18
21
24
C.
3
10
16
1
20
32
18
9
16
Print
Done
Print
Done
Transcribed Image Text:Question Help An electronics store wants to identify a location for a warehouse that will ship to five retail stores. The coordinates and annual number of truckloads are given in the accompanying table. Develop a model to find the best location, assuming that straight-line distances can be used between the locations. Experiment with the model by testing each of the possible best solutions, included, to find the best location. Click here to view the data for the store locations and annual numbers of truckloads. Click here to view some possible best solutions The best location is at (9,13). (Type an ordered pair. Round each coordinate to the nearest integer as needed.) Possible Best Solutions The total weighted distance at the best location is (Round to two decimal places as needed) Store Locations and Truckloads Some possible best solutions to try are listed below. • Place the warehouse at (0,0). • Place the warehouse at the average X- and Y-coordinates of the stores, rounded to the nearest integer Find the average X- and Y-coordinates of the stores, rounded to the nearest integer. Place the warehouse at the average of these coordinates and store D. • Place the warehouse at (9,13). Retail Store X-Coordinate Y-Coordinate Truckloads 11 24 18 21 24 C. 3 10 16 1 20 32 18 9 16 Print Done Print Done
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