


Consider a project having the following six activities: Immediate Max Crash cost Activity Predecessors Time (weeks) Crash* per week A none 6 6 N/A B none 5 2 $500 C A 3 2 $1000 D A, B 4 2 $2000 E C, D 5 2 $1250 F D 6 2 $1000 *Shortest possible time for the task 1. Draw the project network and list...
Consider a project having the following six activities: Immediate Max Crash cost Activity Predecessors Time (weeks) Crash* per week A none 7 7 N/A B none 3 2 $500 C A 5 3 $1000 D A, B 6 4 $2000 E C, D 4 3 $1250 F D 3 2 $1000 *Shortest possible time for the task 1. Draw the project network and list...
A B Start E End C D Activity Normal time (days) Normal cost Crash time Cr 3 1 А B с D E 7 3 6 3 2 $300 $250 $400 $200 $300 4 2 1 ive the crash cost per day per activity. (5 points) Search 36_WA_Homework_EV_Problems_v1 (1) - Protected View - Saved References Mailings Review View Help PROBLEM 1 Use the network diagram below and the additional information provided to answer the corresponding questions. (10 points) B E...
Path A -> B -> F C-> D -> E ----^ Activity Normal Time Crash Time Crash Cost per day A 6 6 --- B 10 8 $100 C 5 4 $300 D 4 1 $700 E 9 7 $500 F 2 1 $650 a. Determine which activities should be crashed to shorten the project by 3 days. b. What is the associated crash cost?
QUESTION 1 G E. H. C A Finish Start D. Complete the network activity diagram using the table below to answer questions 1-15. The expected activity completion times are provided in days. Each question is 1 point. Most Probable Activity Optimistic Pessimistic A 7 B 12 C 5 12 7 E 10 15 20 6 9 18 G 6 13 H 11 What is the early start (ES) time for activity F? 13 12 10 None of the above are...
1. For the following schedule, Draw the AON network diagram for the project and calculate the schedule. а. Summarize the schedule in a tabular form, showing ES, EF, LS, LF, TF, and FF for each activity b. Denote the critical path on the network. C. d. Perform a cost analysis based on an early start, late start, and target schedule for the project. Plot the cumulative cost distribution for the three S-curves on one graph. e. f. Plot the cumulative...
Question 16 4 points Save Answe The following provides information about a project, including a list of activities and precedence relationships, activity durations (normal and "crash" times), direct activity costs (normal and "crash"), indirect costs for the project, as well as calculated crash costs/day and the maximum amount that each activity can be shortened (crashed) by. There are no penalty costs for this project. Total project cost (using normal times), a network diagram, and the four paths and durations have...
Consider the following project activities:
Calculate the expected time (te) for each
activity.
Draw an Activity on Node (AON) diagram to reflect the flow of
these activities.
Calculate the Early Start (ES), Early Finish (EF), Late Start
(LS), and Late Finish (LF) for each activity.
Calculate the slack for each activity.
Identify all activities on the Critical Path.
Use the data to calculate the probability the project will
finish in 20 weeks (Hint: z-score).
Activity A 8 с D E...
QUESTION 2: (20 marks) 2. Critical Path Method (CPM) is a network diagramming technique used to predict total project duration and to determine the critical path. a) Based on the table provided, create the CPM network diagram. Analyse and show the Early Start (ES), Early Finish (EF), Late Start (LS), Late Finish (LF) and the Float/Slack duration (14 marks) b) Analyse the diagram, state and circle the Critical Path clearly. (6 Marks) Activity Predecessor Duration A 6 B А 7...
The ABC Manufacturing Co. has made a decision to replace an existing production line with new equipment. This project will require several tasks (jobs) with precedence relationships and duration (days) as shown in the following table. The project will be finished when activities A-J are all finished. Activity predecessor Optimistic Most likely Pessimistic Expected A - 4 5 12 B A 3 4.5 15 C A 2 3 4 D C 6 8 22 E B 4 6 8 F...