Question: QUESTION Consider the Problem Ch? 19 for the need question. Use the Pool Det TABLETE Chaco Fragola 10 Baco 5 Demandu Setup time hours we

QUESTION Consider the Problem Ch? 19 for the need
QUESTION Consider the Problem Ch? 19 for the need
QUESTION Consider the Problem Ch? 19 for the need
QUESTION Consider the Problem Ch? 19 for the need
QUESTION Consider the Problem Ch? 19 for the need
QUESTION Consider the Problem Ch? 19 for the need question. Use the Pool Det TABLETE Chaco Fragola 10 Baco 5 Demandu Setup time hours we ture po . We www. Suppose they operate with a production cycle of 150 ks ( 50 kg of fragola, 5k of chocolate and 25 kp of bacio What is a capacity of the lato making process in keperho? 4 points QUESTION 2 Suppose they operate with a production cycle of 150 ks (50 kg of fragola, 75 kg of chocolate and 25 kg of bacie). What is the utilization of the pelito-making process you number should look like this: 4455 for 44.55%) QUESTION 3 Suppose they operate with a production cycle of 150 kg 50 kg of fragola, 75 kg of chocolate, and 25 kg of bacio) What is the average inventory of chocolate? QUESTION 4 Suppose Bruno wants to minimize the amount of each flavor produced at one time while still satisfying the demand for each of the flavors. (He can choose a different quantity for each flavor) If we define a batch to be the quantity produced in a single run of each flavor, how many kg should he produce in cach batch (add up all flavors)? 4 points (EX QUESTIONS What is the percent of fragola to the total batch? (this is slightly different from the book question.) (your number should look like this: 4455 for 44.55%) Question comption Status Yaho QUESTION 7 Consider the Problem Ch 7 15 for the following questions. Use the Excel: 02 - Problem Calculator 5. Ketika Studies does custom metal sculptures of horses and other animals. A horse sculpture is composed of numerous parts. They use late to construct two types of parts. The "Body part is used to support the torso of the horse and the "Le part is used to support the legt. Each horse sculpture needs 1 Body part and 4 Les parts. Switching between tither of the types of parts requires 25 minutes. Once ready to produce the lathe produces a Body part in 4 minutes and a single Le part in 2 minutes. The lathe only makes horse parts. For parts(a)-(d) assume Keuka operates a cyclic schedule in which they make 100 Body parts and then 400 Leg parts. Furthermore, assume the lathe is the bottleneck What is the maximum number of horse scnlptures Keuka can make per hour? QUESTION 8 What is the utilization (%) of the lathe (assume flow rate equal capacity of lathe)? you number should look like this: 44.55 for 44.55%) QUESTION 9 Suppose Keuka is demand-constrained and they have I worker who is able to assemble a horse sculpture in 16 minutes. What is the average inventory of Body parts? QUESTION 10 Suppose Keuka is demand constrained and they have I worker who is able to assebleshone sculpture in 16 minutes. What is the weap inventory of Legx? QUESTION 11 Suppose Kouka is demand-constrained and they have I worker who is able to assemble a horse sculpture in 16 minutes. If Keuka designs a cycle for the lathe, how many Body parts should they make in each batch so as to minimize inventory while not constraining the flow through assembly? QUESTION 12 Suppose Keuka is demand-constrained and they have I worker who is able to assemble a horse sculpture in 16 minutes. If Keuka designs a cyclic schedule for the lathe, how many Legs should they make in each batch so as to minimize inventory while not constraining the flow through assembly? Set-Up Op Time (min) Rad/Set (min) 50 0.20 50 2 0.20 100 esas Details art A art B tal Process Time (min) 0.2 0.4 06 Batch Site for Part 429 858 Max Ave Inventory Irwentory 326.04 163.02 446.16 223.08 Process Step Resources Process Time Flow Units Press 1 Machine 0.6 min Boxes Assembly 12 Workers 10 min Boxes Batch Size Tarret Batch Size 429 Boxes 429 Bones Capacity 1.20 Boxes min 1.20 Boxes min Flow 1.20 Goues Rate Minimum of Demand or Boffeneck Capacity thriv 72.02 Boxes r 72 Boxes HO 0.83 min 8 Cycle Time 0,6 min Boxes 0.833 min Boxes Cycle Time Boes 100% Cotilation 72% QUESTION Consider the Problem Ch? 19 for the need question. Use the Pool Det TABLETE Chaco Fragola 10 Baco 5 Demandu Setup time hours we ture po . We www. Suppose they operate with a production cycle of 150 ks ( 50 kg of fragola, 5k of chocolate and 25 kp of bacio What is a capacity of the lato making process in keperho? 4 points QUESTION 2 Suppose they operate with a production cycle of 150 ks (50 kg of fragola, 75 kg of chocolate and 25 kg of bacie). What is the utilization of the pelito-making process you number should look like this: 4455 for 44.55%) QUESTION 3 Suppose they operate with a production cycle of 150 kg 50 kg of fragola, 75 kg of chocolate, and 25 kg of bacio) What is the average inventory of chocolate? QUESTION 4 Suppose Bruno wants to minimize the amount of each flavor produced at one time while still satisfying the demand for each of the flavors. (He can choose a different quantity for each flavor) If we define a batch to be the quantity produced in a single run of each flavor, how many kg should he produce in cach batch (add up all flavors)? 4 points (EX QUESTIONS What is the percent of fragola to the total batch? (this is slightly different from the book question.) (your number should look like this: 4455 for 44.55%) Question comption Status Yaho QUESTION 7 Consider the Problem Ch 7 15 for the following questions. Use the Excel: 02 - Problem Calculator 5. Ketika Studies does custom metal sculptures of horses and other animals. A horse sculpture is composed of numerous parts. They use late to construct two types of parts. The "Body part is used to support the torso of the horse and the "Le part is used to support the legt. Each horse sculpture needs 1 Body part and 4 Les parts. Switching between tither of the types of parts requires 25 minutes. Once ready to produce the lathe produces a Body part in 4 minutes and a single Le part in 2 minutes. The lathe only makes horse parts. For parts(a)-(d) assume Keuka operates a cyclic schedule in which they make 100 Body parts and then 400 Leg parts. Furthermore, assume the lathe is the bottleneck What is the maximum number of horse scnlptures Keuka can make per hour? QUESTION 8 What is the utilization (%) of the lathe (assume flow rate equal capacity of lathe)? you number should look like this: 44.55 for 44.55%) QUESTION 9 Suppose Keuka is demand-constrained and they have I worker who is able to assemble a horse sculpture in 16 minutes. What is the average inventory of Body parts? QUESTION 10 Suppose Keuka is demand constrained and they have I worker who is able to assebleshone sculpture in 16 minutes. What is the weap inventory of Legx? QUESTION 11 Suppose Kouka is demand-constrained and they have I worker who is able to assemble a horse sculpture in 16 minutes. If Keuka designs a cycle for the lathe, how many Body parts should they make in each batch so as to minimize inventory while not constraining the flow through assembly? QUESTION 12 Suppose Keuka is demand-constrained and they have I worker who is able to assemble a horse sculpture in 16 minutes. If Keuka designs a cyclic schedule for the lathe, how many Legs should they make in each batch so as to minimize inventory while not constraining the flow through assembly? Set-Up Op Time (min) Rad/Set (min) 50 0.20 50 2 0.20 100 esas Details art A art B tal Process Time (min) 0.2 0.4 06 Batch Site for Part 429 858 Max Ave Inventory Irwentory 326.04 163.02 446.16 223.08 Process Step Resources Process Time Flow Units Press 1 Machine 0.6 min Boxes Assembly 12 Workers 10 min Boxes Batch Size Tarret Batch Size 429 Boxes 429 Bones Capacity 1.20 Boxes min 1.20 Boxes min Flow 1.20 Goues Rate Minimum of Demand or Boffeneck Capacity thriv 72.02 Boxes r 72 Boxes HO 0.83 min 8 Cycle Time 0,6 min Boxes 0.833 min Boxes Cycle Time Boes 100% Cotilation 72%

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