A city has two high schools. The first school has a maximum enrollment of 900 students and the second school has a maximum enrollment of 550 students. The city is divided into two regions: Inner City and Suburbs. There are at least 500 students in the Inner City region and at least 800 students in the Suburbs region. The annual transportation cost varies by region as shown in the table. Transportation Costs   School 1 (Cost per student) School 2 (Cost per student) Inner City 220 260 Suburbs 200 280 Based on these constraints, what is the minimum possible annual transportation cost? Under what conditions does it occur? Start by defining the appropriate variables.   I don't understand how to solve. I have the objective and constraints but thats it

Practical Management Science
6th Edition
ISBN:9781337406659
Author:WINSTON, Wayne L.
Publisher:WINSTON, Wayne L.
Chapter6: Optimization Models With Integer Variables
Section: Chapter Questions
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A city has two high schools. The first school has a maximum enrollment of 900 students and the second school has a maximum enrollment of 550 students. The city is divided into two regions: Inner City and Suburbs. There are at least 500 students in the Inner City region and at least 800 students in the Suburbs region. The annual transportation cost varies by region as shown in the table.

Transportation Costs

  School 1 (Cost per student) School 2 (Cost per student)
Inner City 220 260
Suburbs 200 280

Based on these constraints, what is the minimum possible annual transportation cost? Under what conditions does it occur? Start by defining the appropriate variables.

 

I don't understand how to solve. I have the objective and constraints but thats it

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