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4) Use the bottleneck method for the following problem. Note: all times are given in minutes. Parts must be loaded and unloaded at each machine.

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4) Use the bottleneck method for the following problem. Note: all times are given in minutes. Parts must be loaded and unloaded at each machine. Parts are transported via a pallet fixture which require both a loaded move (LM) and an empty move (EM). After part E and additional move to final storage is required. | A 0.15 C 0.15 D 0.3 E 0.2 B 0.2 Jaib. 35 Toe Tic LiD 25 29 20 18 15 40 23 Part Style (1) Part-Mix Fraction i Station (i) Operation Servers (si) HMC MTC | 3 MTM 1 VMC 5 (n+1) Load/unload 6 (n+2) Transport (LM/EM) a. Determine the bottleneck station. 33 16 10 11 28 23 158 10/4 12/6 1.2/0.6 1.2/0.6 7 10/ 5 1.2/0.6 /11 1.2/0.6 11/5 1.2/0.6 b. Determine the maximum production rate. c. Determine the utilization at each station. d. Based on the utilization per station, what would you recommend to management if they were to make a capital investment on equipment or labor? 4) Use the bottleneck method for the following problem. Note: all times are given in minutes. Parts must be loaded and unloaded at each machine. Parts are transported via a pallet fixture which require both a loaded move (LM) and an empty move (EM). After part E and additional move to final storage is required. | A 0.15 C 0.15 D 0.3 E 0.2 B 0.2 Jaib. 35 Toe Tic LiD 25 29 20 18 15 40 23 Part Style (1) Part-Mix Fraction i Station (i) Operation Servers (si) HMC MTC | 3 MTM 1 VMC 5 (n+1) Load/unload 6 (n+2) Transport (LM/EM) a. Determine the bottleneck station. 33 16 10 11 28 23 158 10/4 12/6 1.2/0.6 1.2/0.6 7 10/ 5 1.2/0.6 /11 1.2/0.6 11/5 1.2/0.6 b. Determine the maximum production rate. c. Determine the utilization at each station. d. Based on the utilization per station, what would you recommend to management if they were to make a capital investment on equipment or labor

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