A company has four outlet stores. The number of customers at each outlet is shown in the table below and the company has a total of 101 sales associates to assign to the four stores. Use the Webster method of apportionment to determine how many sales associates should be sent to each outlet using 23.56 as the modified standard divisor. Outlet Store Number of Customers per Day A 318 B 527 C 665 D 896 Outlet Store Number of Sales Associates A 13 B 22 C 28 D 38 Outlet Store Number of Sales Associates A 13 B 22 C 29 D 37 Outlet Store Number of Sales Associates A 12 B 24 C 29 D 37 Outlet Store Number of Sales Associates A 13 B 22 C 27 D 39 Outlet Store Number of Sales Associates A 13 B 22 C 27 D 37
A company has four outlet stores. The number of customers at each outlet is shown in the table below and the company has a total of 101 sales associates to assign to the four stores. Use the Webster method of apportionment to determine how many sales associates should be sent to each outlet using 23.56 as the modified standard divisor. Outlet Store Number of Customers per Day A 318 B 527 C 665 D 896 Outlet Store Number of Sales Associates A 13 B 22 C 28 D 38 Outlet Store Number of Sales Associates A 13 B 22 C 29 D 37 Outlet Store Number of Sales Associates A 12 B 24 C 29 D 37 Outlet Store Number of Sales Associates A 13 B 22 C 27 D 39 Outlet Store Number of Sales Associates A 13 B 22 C 27 D 37
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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A company has four outlet stores. The number of customers at each outlet is shown in the table below and the company has a total of 101 sales associates to assign to the four stores. Use the Webster method of apportionment to determine how many sales associates should be sent to each outlet using 23.56 as the modified standard divisor.
Outlet Store | Number of Customers per Day |
A | 318 |
B | 527 |
C | 665 |
D | 896 |
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