••$11.8 Over the past 12 months, Super Toy Mart has expe- rienced a demand variance of 10,000 units and has produced an order variance of 12,000 units. a) What is the bullwhip measure for Super Toy Mart? b) If Super Toy Mart had made a perfect forecast of demand over the past 12 months and had decided to order 1/12 of that annual demand each month, what would its bullwhip measure have been?
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- Explain the ABC inventory classification system and indicate it's pros?Over t he past 5 weeks, dema nd for wine atWinston's Winery has averaged 1,890 bottles, and the varianceof demand has been 793,000 bottles. Winston has ordered anaverage of l ,900 bottles per week over that time period, with avariance of orders of I ,805,000 bottles.a) What is the bullwhip measure for glass bottles for Winston's Winery?b) Is Winston's Winery providing an amplify ing or smoothing effect?Company B is a retailer of mobile phones in Australia that works 250 days in a year. The manager is determining a minimum-cost inventory plan for an upcoming phone to be launched in the market. She has collected the following information:• Annual demand: 800 phones• Phone cost: $1,093 each• Phone RRP: $1,249 each• Net weight: 169 g each• Tare weight: 111 g each• Annual inventory holding cost: 25%• Cost per order to replenish inventory: $70• Annual in-transit holding cost: 10%• Freight rate: $8.10 per kg• Time to process order for freight: 1 days• Freight transit time: 2 daysSolve this problem using a non-linear programming (NLP) model to determine the followings:g. The total cost for this inventory planh. The number of ordersi. Ordering pointj. The profit from this inventory plan need answer for g to j along with excel solver solution
- Company B is a retailer of mobile phones in Australia that works 250 days in a year. The manager is determining a minimum-cost inventory plan for an upcoming phone to be launched in the market. She has collected the following information:• Annual demand: 800 phones• Phone cost: $1,093 each• Phone RRP: $1,249 each• Net weight: 169 g each• Tare weight: 111 g each• Annual inventory holding cost: 25%• Cost per order to replenish inventory: $70• Annual in-transit holding cost: 10%• Freight rate: $8.10 per kg• Time to process order for freight: 1 days• Freight transit time: 2 daysSolve this problem using a non-linear programming (NLP) model to determine the followings:j. The profit from this inventory planCompany B is a retailer of mobile phones in Australia that works 250 days in a year. Themanager would like you to determine a minimum-cost inventory plan for an upcoming mobilephone to be launched in the market. They have collected the following information:• Annual demand: 750 phones• Phone cost: $1,005 each• Phone RRP: $1,149 each• Net weight: 167 g each• Tare weight: 257 g each• Annual inventory holding cost: 27.5%• Cost per order to replenish inventory: $81.71• Annual in-transit holding cost: 10%• Freight rate (per kg): $8.10• Freight-related charges (per shipment): $276.50 (i.e. handling fee, dangerous goodfee, and lithium battery fee)• Time to process order for freight: 2 day• Freight transit time: 5 daysThe manager wants you to determine the following information:a. Economic order quantityb. The total purchasing costc. The total ordering costd. The total inventory holding coste. The total transportation cost (by weight)f. The total freight-related cost (by shipment)g. The total…Explain inventory position (IP)?
- Company B is a retailer of mobile phones in Australia that works 250 days in a year. The manager is determining a minimum-cost inventory plan for an upcoming phone to be launched in the market. She has collected the following information: • Annual demand: 1000 phones • Phone cost: $1,214 each • Phone RRP: $1,349 each • Net weight: 163 g each • Tare weight: 277 g each • Annual inventory holding cost: 15% • Cost per order to replenish inventory: $75 • Annual in-transit holding cost: 10% • Freight rate: $8.10 per kg • Time to process order for freight: 1 days • Freight transit time: 3 days Solve this problem using a non-linear programming (NLP) model to determine the followings:d. The total cost for holding the inventory e. The total cost for transportation f. The total cost for holding the phones during transit g. The total cost for this inventory plan h. The number of orders i. Ordering point j. The profit from this inventory planCompany B is a retailer of mobile phones in Australia that works 250 days in a year. The manager is determining a minimum-cost inventory plan for an upcoming phone to be launched in the market. She has collected the following information: • Annual demand: 1000 phones • Phone cost: $1,214 each • Phone RRP: $1,349 each • Net weight: 163 g each • Tare weight: 277 g each • Annual inventory holding cost: 15% • Cost per order to replenish inventory: $75 • Annual in-transit holding cost: 10% • Freight rate: $8.10 per kg • Time to process order for freight: 1 days • Freight transit time: 3 days Solve this problem using a non-linear programming (NLP) model to determine the followings: a. Economic order quantity for the phone in units and in kg b. The total cost for purchasing the phones c. The total cost for ordering d. The total cost for holding the inventory e. The total cost for transportation f. The total cost for holding the phones during transit g. The total cost for this inventory plan…Company B is a retailer of mobile phones in Australia that works 250 days in a year. The manager is determining a minimum-cost inventory plan for an upcoming phone to be launched in the market. She has collected the following information: Annual demand: 1000 phones• Phone cost: $1,214 each• Phone RRP: $1,349 each• Net weight: 163 g each• Tare weight: 277 g each• Annual inventory holding cost: 15%• Cost per order to replenish inventory: $75• Annual in-transit holding cost: 10%• Freight rate: $8.10 per kg• Time to process order for freight: 1 days• Freight transit time: 3 days Solve this problem using a non-linear programming (NLP) model to determine the followings:a. Economic order quantity for the phone in units and in kgb. The total cost for purchasing the phonesc. The total cost for orderingd. The total cost for holding the inventorye. The total cost for transportationf. The total cost for holding the phones during transitg. The total cost for this inventory planh. The number of…
- Company B is a retailer of mobile phones in Australia that works 250 days in a year. The manager would like you to determine a minimum-cost inventory plan for an upcoming mobile phone to be launched in the market. They have collected the following information: • Annual demand: 750 phones • Phone cost: $1,005 each• Phone RRP: $1,149 each• Net weight: 167 g each • Tare weight: 257 g each• Annual inventory holding cost: 27.5%• Cost per order to replenish inventory: $81.71• Annual in-transit holding cost: 10%• Freight rate (per kg): $8.10• Freight-related charges (per shipment): $276.50 (i.e. handling fee, dangerous good fee, and lithium battery fee)• Time to process order for freight: 2 day • Freight transit time: 5 days The manager wants you to determine the following information: a. Economic order quantityb. The total purchasing costc. The total ordering cost d. The total inventory holding coste. The total transportation cost (by weight)f. The total freight-related cost (by shipment) g.…19. SPRAY-PAINT INVENTORY The Graphic Hobby House made purchases of assorted colors of spray paint during the year as follows. Beginning inventory 200 cans at $2.20 March 400 cans at $2.40 May 700 cans at $2.00 August 500 cans at $2.30 November 300 cans at S2.60 At the end of the year, they had 450 cans of spray paint in stock. (a) Find the inventory value using the weighted-average method. (b) Find the inventory value using the FIFO method. (c) Find the inventory value using the LIFO method.Give 3 examples of inventory risk.