Exercise 2.1 in Table A call centre has the following minimal daily requirements for personnel as shown Table Minimum Requirements for Personnel Time of the day (24-hour clock) Period Minimum number of people required 2-6 1 20 6-10 2 15 10-14 14-18 18-22 22-24 3 4 5 6 8 6 12 30 Formulate a linear programming model to find an optimal schedule. Note: Consider Period 1 as following immediately after Period 6. Each person works eight consecutive hours.

Algebra and Trigonometry (6th Edition)
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Author:Robert F. Blitzer
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ChapterP: Prerequisites: Fundamental Concepts Of Algebra
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Problem 1MCCP: In Exercises 1-25, simplify the given expression or perform the indicated operation (and simplify,...
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Exercise 2.1
in Table
A call centre has the following minimal daily requirements for personnel as shown
Table Minimum Requirements for Personnel
Time of the day (24-hour clock) Period Minimum number of people required
2-6
1
20
6-10
15
10-14
8
14-18
18-22
22-24
2
3
4
5
6
►
6
12
30
Formulate a linear programming model to find an optimal schedule.
Note: Consider Period 1 as following immediately after Period 6.
Each person works eight consecutive hours.
Transcribed Image Text:Exercise 2.1 in Table A call centre has the following minimal daily requirements for personnel as shown Table Minimum Requirements for Personnel Time of the day (24-hour clock) Period Minimum number of people required 2-6 1 20 6-10 15 10-14 8 14-18 18-22 22-24 2 3 4 5 6 ► 6 12 30 Formulate a linear programming model to find an optimal schedule. Note: Consider Period 1 as following immediately after Period 6. Each person works eight consecutive hours.
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