The annual demand of Maize Meal = 750 units (bigger size), Delivered purchase cost = R35/units, Annual carrying cost percentage= 25 percent, Order cost = R50/order. The lead time is 10 working days. Assuming 20 working days per month. calculate the optimal period calculate the optimal order quanity
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The annual demand of Maize Meal = 750 units (bigger size), Delivered purchase cost = R35/units, Annual carrying cost percentage= 25 percent, Order cost = R50/order. The lead time is 10 working days. Assuming 20 working days per month.
calculate the optimal period
calculate the optimal order quanity
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- The materials manager for a billiard ball maker must periodically place orders for resin, one of the raw materials used in producing billiard balls. She knows that manufacturing uses resin at a rate of 50 kilograms each day, and that it costs $.04 per day to carry a kilogram of resin in inventory. She also knows that the order costs for resin are $100 per order, and that the lead time for delivery is four days. If the order size was 1,000 kilograms of resin, what would be the average inventory level?A company stocks an SKU with a weekly demand of 600 units and a lead time of4 weeks. Management will tolerate one stockout per year. If sigma for the lead timeis 100 and the order quantity is 2500 units, what is the safety stock, the averageinventory, and the order point?The demand for a certain product is random. It has been estimated that the monthly demand of the product has a normal distribution with a mend of 390units. The unit price of product is ETB 25. Ordering cost is ETB 40 per order and inventory carrying cost is estimated to be 35 percent per year. Calculate economic order quantity (EOQ).
- A local distributor for Hankook tires Company expects to sell 12,600 R14 radial tires nest year. The estimated cost of keeping a R14 tire per annum is ȼ126 and ordering cost is ȼ70. a) What is the optimal order quantity? b) How many times per year does the distributor order R14 tires? c) What is the length of an order cycle, if the company does not operate on Saturdays and Sundays? d) What is the annual total cost if the optimal quantity is ordered?The annual demand of Maize Meal = 750 units (bigger size), Delivered purchase cost = R35/units, Annual carryingcost percentage= 25 percent, Order cost = R50/order. The lead time is 10 working days. Assuming 20 working days per month.Determine the Economic Order Quantity. Determine the reorder point .Determine the average inventory .Suppose orders are placed only at review time. Find the optimal period and the optimal order quantity.Catlea Merchandising is engaged in selling school shoesfor both boys and girls in their teenage years. Catlea needs 32,000 pairs of shoes in a year in order to satisfy the market demand. It costs ₱ 48 to place an order while ₱ 8 is needed to hold each quantity of shoe in Catlea's inventory. Upon checking on Catlea's supplier, it takes 8 days in between placing an order and eventually receiving it. a. Determine the Economic Order Quantityb. Determine the number of order per monthc. Determine the reorder point
- The annual demand of Maize Meal = 750 units (bigger size), Delivered purchase cost = R35/units, Annual carryingcost percentage= 25 percent, Order cost = R50/order. The lead time is 10 working days. Assuming 20 working days per month. Suppose orders are placed only at review time. Find the optimal period and the optimal order quantity.A drugstore uses fixed-order cycles for many of the items it stocks. The manager wants a service level of .99. The order interval is 12 days, and lead time is 4 days. Average demand for one item is 63 units per day, and the standard deviation of demand is 6 units per day. Given the on-hand inventory at the reorder time for each order cycle shown in the following table. Use Table. Cycle On Hand 1 38 2 10 3 93 Determine the order quantities for cycles 1, 2, and 3: (Round your answers to the nearest whole number) Cycle Units 1 1019 Numeric ResponseEdit Unavailable. 1019 incorrect. 2 1047 Numeric ResponseEdit Unavailable. 1047 incorrect. 3 964 Numeric ResponseEdit Unavailable. 964 incorrect.A company operates for 50 weeks a year and uses a fixed quantity inventory system for one of its most important items. Below are the characteristics for the item: Weekly demand follows normal distribution: mean of 400 units and standard deviation of 100 units Order Cost = $40 per order Annual Holding cost = $2/unit/year Desired service level = 95% (z = 1.645) Lead Time = 4 weeks Economic Order Quantity (EOO) = 894 units Now suppose that the management is considering switching to a fixed time inventory system where the time between orders is 2 weeks. Everything else being the same as the information provided for the original problem, which system (Q or P system) is likely to have more safety stock? Please explain why.
- Alina Limited is a manufacturer of widgets orders components for use in manufacturing. The estimated demand for the components during the coming year is 15,000. Order costs are $100 per order; carrying costs are $12 per component. Using the economic order quantity model What is Alina Ltd’s optimum order quantity? If the supplier guarantees a three (3) day delivery on any order that is placed, What is the re-order point?5. A product has an average daily demand of 400 units with standard deviation of 10.0 units. Lead-time is 1 day. If management would like to satisfy all demand in 80% of the cycles, what is the reorder point? 6. A product sells for $24 per unit and costs the retailer $12 per unit, unsold units by the end of the season are salvaged for $7.0. Demand is normally distributed with a mean of 1000 units and standard deviation of 100 units. How many units should the retailer order? 7. A product sells for $24 per unit and costs the retailer $12 per unit, unsold units by the end of the season are salvaged for $9.0. Demand is normally distributed with a mean of 1000 units and standard deviation of 100 units. How many units should the retailer order?For a specific farm implement ‘FI’ is to be ordered by a food processing company, following data is available: Monthly Demand= 800 units Purchase cost/unit = $40/unit Ordering costs= $60/ order Holding costs (Ch) = $12/unit/year, fire insurance = 6% of the unit cost, 2% other overheads. Determine optimal order quantity of ‘FI’ items and how frequently the order should be placed?