Question: Listen Reducing Project Duration Crash cost (slope), maximum crash time, normal time, and normal cost are provided below. The indirect costs for each project duration

Listen Reducing Project Duration Crash cost
Listen Reducing Project Duration Crash cost
Listen Reducing Project Duration Crash cost
Listen Reducing Project Duration Crash cost (slope), maximum crash time, normal time, and normal cost are provided below. The indirect costs for each project duration are: $550 (20 time units) $400. (19), $350 (18), $100 (17), and $50 (16), Acthy Crash Cost Slope) 25 Mas Crash Tine 1 Nom Noma The Cost 6 A B 70 90 2 4 5 3 D 20 65 105 0 1 3 1 1 0 1 6 3 F 100 80 100 140 80 90 210 40 G H 6 3 200 5 After crashing the project using the cost-duration graph method, determine the duration of the project associated with the optimum cost-time point. 15 16 ED Listen Reducing Project Duration Crash cost (slope), maximum crash time, normal time, and normal cost are provided below. The indirect costs for each project duration are: $550 (20 time units) $400 (19). $350 (18), $100 (17), and $50 (16) Acthy Crash Cost Slope Max Crush Time 1 Nom Noma Time Cost 5 A B 75 2 4 5 3 DALO 70 90 100 80 100 0 1 3 1 1 20 65 105 40 6 3 -D 6 3 140 80 90 210 200 1 5 After crashing the project using the cost-duration graph method, determine the duration of the project associated with the optimum cost-time point. 15 16 D Activity C Cost Slope) Normal Normal Te Cost Crash Time 1 A B 6 4 35 o 20 70 90 100 0 5 1 3 D E F D 6 1 105 40 80 100 140 80 90 210 3 6 3 1 0 1 H H 200 5 After crashing the project using the cost-duration graph method, determine the duration of the project associated with the optimum cost-time point. 15 16 18 17 20

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