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Formulas 2-D-Co EOQ = U.Ci De = TS, + D25,2 SL = 1-2 f( k)c 0Q SS = koc EFDZ 0 = ROP = D

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Formulas 2-D-Co EOQ = U.Ci De = TS, + D25,2 SL = 1-2 f( k)c 0Q SS = koc EFDZ 0 = ROP = D *T + SS DS = AQ + XJ=Ill S'2 +SS1 + IT SS = VMI * S51 A, = (DS - !) - D, .0232 0182 0143 0111 .0085 -0065 0049 2.3 .0037 24 30027 . 1004 2.5 .0020 .0833 2.6 .0015 0688 2.7 .0011 0561 2.8 :0008 0455 2.9 .0005 -0356 3.0 .0004 .0293 31 0003 Figure 1. Loss integral for Standardized Normal DistributionPlastic AB distributes plastic buckets. The plant warehouse currently has 280 000 buckets on stock, 20 000 of these are retained as safety stock. Plastic AB also have three distribution centers, placed in Jonkoping, Gavle and Mora. Jonkoping has an inventory of 45 000 units and a daily demand of 19 100 units, Gavle has an inventory of 80 000 units and a daily demand of 30 000 units. Mora has an inventory of 90 000 units and a daily demand of 30 000 units. Given the above information use fair-share-allocation logic to determine the number of buckets that should be allocated to each DC. (4p)

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