Question: QUESTION 1 2 points Save A company manufactures three models of TV's. Below are the relevant details: Space required Model Yearly for Number of No










QUESTION 1 2 points Save A company manufactures three models of TV's. Below are the relevant details: Space required Model Yearly for Number of No of Operations Processing time per of TV Production components per TV per component component( sec) processing (m2 per workstation) 10 000 300 c) 15 25 B a) b) 10 75 3 000 500 15 20 50 There are five times as many components in each Model C TV compared to each Model A TV. There are a total of 5 000 000 components required to produce all the TV's in the year and total operations 87 500 000. If the total processing time is 400 000hrs and each worker works 2000 hours per year, determine the answers for: a QUESTION 2 A company manufactures three models of TV's. Below are the relevant details: Space required for Model Yearly Number of No of Operations Processing time per of TV Production components per TV per component component( sec) processing (m2 per workstation) 10 000 300 c) 15 25 B a) b) 10 d) 75 C 3 000 500 15 20 50 N There are five times as many components in each Model C TV compared to each Model A TV. There are a total of 5 000 000 components required to produce all the TV's in the year and total operations = 87 500 000. If the total processing time is 400 000hrs and each worker works 2000 hours per year, determine the answers for: 1b) QUESTION 3 A company manufactures three models of TV's. Below are the relevant details: Space required for Model Yearly Number of No of Operations Processing time per processing (m2 of TV Production components per TV per component component( sec) per workstation) A 10 000 300 c) 15 a) b) 10 d) 75 3 000 500 20 50 There are five times as many components in each Model C TV compared to each Model A TV. There are a total of 5 000 000 components required to produce all the TV's in the year and total operations = 87 500 000. If the total processing time is 400 000hrs and each worker works 2000 hours per year, determine the answers for: c) QUESTION 4 A company manufactures three models of TV's. Below are the relevant details: Space required for Model Yearly Number of No of Operations Processing time per of TV Production components per TV per component component( sec) processing (m2 per workstation) 10 000 300 c) 15 25 B a) b) d) 75 c 3000 500 120 50 There are five times as many components in each Model C TV compared to each Model A TV. There are a total of 5 000 000 components required to produce all the TV's in the year and total operations = 87 500 000. If the total processing time is 400 000hrs and each worker works 2000 hours per year, determine the answers for: d) in seconds QUESTION 5 3 . A company manufactures three models of TV's. Below are the relevant details: Model of TV Yearly Production Number of components per TV No of Operations per component Processing time per component( sec) Space required for processing (m2 per workstation) A 10 000 300 c) 15 25 B UU a) 75 d) b) 500 IC 15 20 50 There are five times as many components in each Model C TV compared to each Model A TV. There are a total of 5 000 000 components required to produce all the TV's in the year and total operations 87 500 000. If the total processing time is 400 000hrs and each worker works 2000 hours per year, determine the answers for: e) the total number of workstations Save Answers Chile 41 Answers to save all ansuers. QUESTION 6 3 A company manufactures three models of TV's. Below are the relevant details: Model of TV Yearly Production Number of components per TV No of Operations per component Processing time per component( sec) Space required for processing (m2 per workstation) 10 000 300 c) 15 25 B a 10 d) 175 b) 500 IC 3 000 15 20 50 There are five times as many components in each Model C TV compared to each Model A TV. There are a total of 5 000 000 components required to produce all the TV's in the year and total operations = 87 500 000. If the total processing time is 400 000hrs and each worker works 2000 hours per year, determine the answers for. f) the total space required for processing( in m2) QUESTION 8 In a company which produces parts in large quantities, a part travels from Machine X, to Machine Y, and then to Machine Z The Industrial Engineer has noticed that parts are waiting to be processed at Machine Z whereas parts are processed without any delays at Machines X and Y. The times are as follows: Machine X= 3 seconds Machine Y= 2 seconds Machine Z= 5 seconds. The transfer time for a part through the three machines is 15 seconds. Determine 2b) MLT in minutes if the average nonoperation time is 30 min QUESTIONS QUESTION 7 In a company which produces parts in large quantities, a part travels from Machine X, to Machine Y, and then to Machine Z. The Industrial Engineer has noticed that parts are waiting to be processed at Machine Z whereas parts are processed without any delays at Machines X and Y. The times are as follows: Machine X= 3 seconds Machine Y= 2 seconds Machine Z= 5 seconds. The transfer time for a part through the three machines is 15 seconds. Determine 2a) the Tc in seconds QUESTION 9 In a company which produces parts in large quantities, a part travels from Machine X, to Machine Y, and then to Machine Z The Industrial Engineer has noticed that parts are waiting to be processed at Machine Z whereas parts are processed without any delays at Machines X and Y. The times are as follows: Machine X= 3 seconds Machine Y= 2 seconds Machine Z= 5 seconds. The transfer time for a part through the three machines is 15 seconds. Determine: 2c) Production Rate in pc/hr h QUESTION 10 QUESTION 10 In a company which produces parts in large quantities, a part travels from Machine X, to Machine Y, and then to Machine Z. The Industrial Engineer has noticed that parts are waiting to be processed at Machine Z whereas parts are processed without any delays at Machines X and Y. The times are as follows: Machine X= 3 seconds Machine Y= 2 seconds Machine Z= 5 seconds. The transfer time for a part through the three machines is 15 seconds. Determine 2d) the time (in hours) required to produce 90 000 units QUESTION 1 2 points Save A company manufactures three models of TV's. Below are the relevant details: Space required Model Yearly for Number of No of Operations Processing time per of TV Production components per TV per component component( sec) processing (m2 per workstation) 10 000 300 c) 15 25 B a) b) 10 75 3 000 500 15 20 50 There are five times as many components in each Model C TV compared to each Model A TV. There are a total of 5 000 000 components required to produce all the TV's in the year and total operations 87 500 000. If the total processing time is 400 000hrs and each worker works 2000 hours per year, determine the answers for: a QUESTION 2 A company manufactures three models of TV's. Below are the relevant details: Space required for Model Yearly Number of No of Operations Processing time per of TV Production components per TV per component component( sec) processing (m2 per workstation) 10 000 300 c) 15 25 B a) b) 10 d) 75 C 3 000 500 15 20 50 N There are five times as many components in each Model C TV compared to each Model A TV. There are a total of 5 000 000 components required to produce all the TV's in the year and total operations = 87 500 000. If the total processing time is 400 000hrs and each worker works 2000 hours per year, determine the answers for: 1b) QUESTION 3 A company manufactures three models of TV's. Below are the relevant details: Space required for Model Yearly Number of No of Operations Processing time per processing (m2 of TV Production components per TV per component component( sec) per workstation) A 10 000 300 c) 15 a) b) 10 d) 75 3 000 500 20 50 There are five times as many components in each Model C TV compared to each Model A TV. There are a total of 5 000 000 components required to produce all the TV's in the year and total operations = 87 500 000. If the total processing time is 400 000hrs and each worker works 2000 hours per year, determine the answers for: c) QUESTION 4 A company manufactures three models of TV's. Below are the relevant details: Space required for Model Yearly Number of No of Operations Processing time per of TV Production components per TV per component component( sec) processing (m2 per workstation) 10 000 300 c) 15 25 B a) b) d) 75 c 3000 500 120 50 There are five times as many components in each Model C TV compared to each Model A TV. There are a total of 5 000 000 components required to produce all the TV's in the year and total operations = 87 500 000. If the total processing time is 400 000hrs and each worker works 2000 hours per year, determine the answers for: d) in seconds QUESTION 5 3 . A company manufactures three models of TV's. Below are the relevant details: Model of TV Yearly Production Number of components per TV No of Operations per component Processing time per component( sec) Space required for processing (m2 per workstation) A 10 000 300 c) 15 25 B UU a) 75 d) b) 500 IC 15 20 50 There are five times as many components in each Model C TV compared to each Model A TV. There are a total of 5 000 000 components required to produce all the TV's in the year and total operations 87 500 000. If the total processing time is 400 000hrs and each worker works 2000 hours per year, determine the answers for: e) the total number of workstations Save Answers Chile 41 Answers to save all ansuers. QUESTION 6 3 A company manufactures three models of TV's. Below are the relevant details: Model of TV Yearly Production Number of components per TV No of Operations per component Processing time per component( sec) Space required for processing (m2 per workstation) 10 000 300 c) 15 25 B a 10 d) 175 b) 500 IC 3 000 15 20 50 There are five times as many components in each Model C TV compared to each Model A TV. There are a total of 5 000 000 components required to produce all the TV's in the year and total operations = 87 500 000. If the total processing time is 400 000hrs and each worker works 2000 hours per year, determine the answers for. f) the total space required for processing( in m2) QUESTION 8 In a company which produces parts in large quantities, a part travels from Machine X, to Machine Y, and then to Machine Z The Industrial Engineer has noticed that parts are waiting to be processed at Machine Z whereas parts are processed without any delays at Machines X and Y. The times are as follows: Machine X= 3 seconds Machine Y= 2 seconds Machine Z= 5 seconds. The transfer time for a part through the three machines is 15 seconds. Determine 2b) MLT in minutes if the average nonoperation time is 30 min QUESTIONS QUESTION 7 In a company which produces parts in large quantities, a part travels from Machine X, to Machine Y, and then to Machine Z. The Industrial Engineer has noticed that parts are waiting to be processed at Machine Z whereas parts are processed without any delays at Machines X and Y. The times are as follows: Machine X= 3 seconds Machine Y= 2 seconds Machine Z= 5 seconds. The transfer time for a part through the three machines is 15 seconds. Determine 2a) the Tc in seconds QUESTION 9 In a company which produces parts in large quantities, a part travels from Machine X, to Machine Y, and then to Machine Z The Industrial Engineer has noticed that parts are waiting to be processed at Machine Z whereas parts are processed without any delays at Machines X and Y. The times are as follows: Machine X= 3 seconds Machine Y= 2 seconds Machine Z= 5 seconds. The transfer time for a part through the three machines is 15 seconds. Determine: 2c) Production Rate in pc/hr h QUESTION 10 QUESTION 10 In a company which produces parts in large quantities, a part travels from Machine X, to Machine Y, and then to Machine Z. The Industrial Engineer has noticed that parts are waiting to be processed at Machine Z whereas parts are processed without any delays at Machines X and Y. The times are as follows: Machine X= 3 seconds Machine Y= 2 seconds Machine Z= 5 seconds. The transfer time for a part through the three machines is 15 seconds. Determine 2d) the time (in hours) required to produce 90 000 units
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