(MULTI-PERIOD MODEL). We have a probabilistic inventory model where demand is accumulated and orders are received with zero delivery delays. delivery delays. The probability distribution function of the demand per period is uniform between 0 and 10. period is uniform between 0 and 10, and the cost parameters are - Selling price per unit $2 - Purchase price per unit $1 - Storage cost per unit per month $0.10 - Penalty cost per unit and per month $3 - Discount factor = 0.8 Determine the optimal inventory policy for the two periods, assuming that the starting inventory for period 1 is zero. initial inventory for period 1 is zero.
(MULTI-PERIOD MODEL). We have a probabilistic inventory model where demand is accumulated and orders are received with zero delivery delays. delivery delays. The probability distribution function of the demand per period is uniform between 0 and 10. period is uniform between 0 and 10, and the cost parameters are - Selling price per unit $2 - Purchase price per unit $1 - Storage cost per unit per month $0.10 - Penalty cost per unit and per month $3 - Discount factor = 0.8 Determine the optimal inventory policy for the two periods, assuming that the starting inventory for period 1 is zero. initial inventory for period 1 is zero.
A First Course in Probability (10th Edition)
10th Edition
ISBN:9780134753119
Author:Sheldon Ross
Publisher:Sheldon Ross
Chapter1: Combinatorial Analysis
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Problem 1.1P: a. How many different 7-place license plates are possible if the first 2 places are for letters and...
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(MULTI-PERIOD MODEL). We have a probabilistic inventory model where demand is accumulated and orders are received with zero delivery delays. delivery delays. The
- Selling price per unit $2
- Purchase price per unit $1
- Storage cost per unit per month $0.10
- Penalty cost per unit and per month $3
- Discount factor = 0.8
Determine the optimal inventory policy for the two periods, assuming that the starting inventory for period 1 is zero. initial inventory for period 1 is zero.
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