Question: EX9-1 (Static) Use the information contained below... Use the following information to compress one-time unit per move using the least-cost method. Reduce the schedule




EX9-1 (Static) Use the information contained below... Use the following information to compress one-time unit per move using the least-cost method. Reduce the schedule until you reach the crash point of the network. For each move identify what activity(s) was crashed and the adjusted total cost. Note: The correct normal project duration, critical path, and total direct cost are provided. Activity Crash cost Maximum DABCDEF ID (Slope) Crash Time Normal time Normal cost 50 1 3 150 100 1 3 100 60 2 4 200 60 2 3 200 70 1 4 200 0 0 150 Total direct normal costs $1,000 3 AM B 3 D Initial 3 project duration: 12 C E 4 4 LL F 1x Total direct cost: $1,000 To compress from time period 12 to time 11 crash the following activity(s) (You may select more than one answer. Single click the box with the question mark to produce a check mark for a correct answer and double click the box with the question mark to empty the box for a wrong answer. Any boxes left with a question mark will be automatically graded as incorrect.) 7 A 7 B D E F What is the adjusted total cost at time period 11? To compress from time period 10 to time 9 crash the following activity(s) (You may select more than one answer. Single click the box with the question mark to produce a check mark for a correct answer and double click the box with the question mark to empty the box for a wrong answer. Any boxes left with a question mark will be automatically graded as incorrect.) 7 A 7 B 2 D E 7 F What is the adjusted total cost at time period 9? What is the crash point of the network? Time period Total cost weeks
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To address this problem well use the concept of project crashing which involves reducing the project time by incurring additional costs Heres how to g... View full answer
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