Question: Time (min) Precedence 1.27 1.25 Work element Description 1 Build the center connector subassembly 2 Build pair of seats 1 3 Build pair of seats

Time (min) Precedence 1.27 1.25 Work element Description 1 Build the center connector subassembly 2 Build pair of seats 1 3 Build pair of seats 2 4 Build pair of seats 3 5 Build pair of seats 4 6 Build standing support connector 1 7 Build standing support connector 2 8 Build the foundation 9 Connect all seats together 10 Connect seats subassembly and center connector 11 Attach standing support connector 12 Attach foundation 1.22 1.01 0.20 0.22 0.77 0.79 2,3,4,5 1,9 1,6,7 8, 10, 11 0.34 0.38 Given the list of work elements above, create the assembly line that will meet the desired aggregate production rate of 20/hour using: i. Ranked Positional Weight Method ii. Largest Candidate Rule ii. Kilbridge and Wester Column Method Assuming 100% uptime efficiency and 0.05 min repositioning time, find the throughput and efficiency balance of the line. What is the percent idle time in each station? Go To Se Time (min) Precedence 1.27 1.25 Work element Description 1 Build the center connector subassembly 2 Build pair of seats 1 3 Build pair of seats 2 4 Build pair of seats 3 5 Build pair of seats 4 6 Build standing support connector 1 7 Build standing support connector 2 8 Build the foundation 9 Connect all seats together 10 Connect seats subassembly and center connector 11 Attach standing support connector 12 Attach foundation 1.22 1.01 0.20 0.22 0.77 0.79 2,3,4,5 1,9 1,6,7 8, 10, 11 0.34 0.38 Given the list of work elements above, create the assembly line that will meet the desired aggregate production rate of 20/hour using: i. Ranked Positional Weight Method ii. Largest Candidate Rule ii. Kilbridge and Wester Column Method Assuming 100% uptime efficiency and 0.05 min repositioning time, find the throughput and efficiency balance of the line. What is the percent idle time in each station? Go To Se
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