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- A project has four major activities. Activity A precedes activity B, activity C precedes activity D. 3-point estimates for activities are A(4.5, 9, 13.5 ), B( 2.5, 5, 7.5 ), C( 3, 3, 3 ), D( 3, 3, 3 ) weeks. What probability would you assign to a project duration of more than 14 weeks? a. 0.5 b. 0.1951 c. 1 d. 0.8175Your project to obtain charitable donations is now 30 days into a planned 40-dayproject. The project is divided into 3 activities. The i rst activity is designed to solicitindividual donations. It is scheduled to run the i rst 25 days of the project and to bring in $25,000. Even though we are 30 days into the project, we still see that we have only 90 percent of this activity complete. The second activity relates to company donations and is scheduled to run for 30 days starting on day 5 and extending through day 35. We estimate that, even though we should have 83 percent (25y30) of this activity complete, it is actually only 50 percent complete. This part of the project was scheduled to bring in $150,000 in donations. The i nal activity is for matching funds. This activity is scheduled to run the last 10 days of the project and has not started. It is scheduled to bring in an additional $50,000. So far $175,000 has actually been brought in on the project. Calculate the schedule…Consider a project to produce custom door moldings for GMC Acadia cross-over vehicles, described in the following table. Activity Time (weeks) 0 3 5 1 3 6 10 2 0 a. If you start the project immediately, when will it be finished? The critical path is path and the project duration is Activity START ABCDEFG FINISH Immediate Predecessor(s) weeks. (Enter your response as an integer.) START START BA A, B D, E C, E F, G
- The following table shows estimates of activity times (in weeks) for a project: b. What is the probability that the project will be completed within 33 weeks? c. What is the probability that the project will be completed in more than 34 weeks? Activity d. What is the probability that the project will be completed in 35 weeks? ABCDEFG А G Optimistic Most Probable Time Time 5 6 3.5 4 3 6 7 5 9 4 6.5 Suppose that the critical path is A-C-E-F-G. Use Appendix A to answer the questions. Do not round intermediate calculations. Round your answers to three decimal places. a. What is the probability that the project will be completed within 36 weeks? 6 10.5 Pessimistic Time 7 4.5 5 10 9 7 15you decide to estimate duration and standard deviation of a project using PERT method. the project has 3 steps the following are the optimistic, most likely and pessimistic durations in weeks:step 1: 2,5,10Step 2: 1,3,13Step3: 7,8,11,what is the estimated duration and standard deviation of the project duration?Estimated Duration =16 standard Deviation =4.9Estimated Duration =18 standard Deviation =4.9Estimated Duration =18 standard Deviation =2.49Estimated Duration =16 standard Deviation =24Project lifecycle 1. With the use of a diagram, show (illustrate) the typical levels of project staffingrelated to each phase and throughout a project. 2. For each project phase identified in 1(a) above, identify and describe at least one (1)major deliverable (output) of the phase.
- Select the best answer for the following questions: 1) An ongoing process that evaluates and implements functions that drive a business is: a) Mission impossible b) Continuous improvement c) Quality control d) Cost effectiveness 2) Project Schedules are meant to provide a path forward to guide the project planning process, but not all activities are on the 'critical' path. Those activities not on the Critical Path are distinguished by including: a) Cost of activity b) Total Float c) Long Lead time d) Negative Lag 3) At what point in an engineering project is the Engineer involved? a) Conceptual Development b) Providing specifications c) Design Development d) Financial pro-forma 4) Engineers are characteristically good at all of the following but: a) Analyzing critical data b) Providing alternate solutions to process development c) Delegating tasks for a project d) Provide Quality control during design.The optimistic, most likely and pessimistic times for the tasks comprising a project are shown below. Use the data to compute the expected completion time and variance for each task. Task to tm tp A 5 10 19 B 2 16 19 C 7 10 14 D 6 22 29 E 20 26 29 Find the expected completion time and variance for each task and fill in the table below (enter your responses rounded to two decimal places). Task to tm tp te s2t A 5 10 19Project Scope Management Khan, (2006) (see below) states that, "Managing the scope of a project is the most important function of a project manager ... Effective scope management of a project also ensures the success of key completion areas, including time, cost, and quality. Project scope management can be further subdivided into its components which include: project initiation, scope planning, scope definition, scope verification, and scope change control." Based on your Integrated Project: Select two of the subdivisions above and discuss the primary issues that could arise from the process. Your response should begin with a definition of the selected subdivision before detailing the selected process
- You are the manager of a project to improve a billing process at your firm. The table below contains the data you will need to conduct a cost analysis of the project. Indirect costs are $1,800 per week, and penalty costs are $800 per week after week 12. Activity A BCDEF Immediate Predecessor(s) - A B B, C Normal Time (weeks) Crash Time (weeks) 4 1 3 1 3 6 6 5 1 6 7 Normal Cost Crash Cost ($) ($) 5,000 8,500 7,500 9,500 4,000 4,000 6,500 12,500 3,500 7,000 4,000 7,000 a. What is the minimum-cost schedule for this project? The minimum-cost schedule is weeks. (Enter your response as an integer.) b. What is the difference in total project costs between the earliest completion time of the project using "normal" times and the minimum-cost schedule you derived in part (a)? The minimum-cost schedule costs $ less than using the "normal" times. (Enter your response as an integer.)The following bar chart shows the activities for a project. The total project cost is $1,545. Time (weeks) 6 7 Total Activity Cost 2 3 4 8 | 9 10 A $120 В $35 $80 D $270 E $60 F $180 $270 $90 G J $160 K $60 L $220 $1,545 After three weeks, Activities A, C, E, half of B, quarter of F, and two thirds of H are completed for a cost of $435. At this point in time (three weeks after the start date), what is the status of the project in terms of budget (over or under budget) and schedule (ahead or behind schedule)? Use SPI and CPI to determine your answers.Hi, I need help answering the last question. Rob Smith is managing a small project at Boston University. He is under pressure to shorten the overall duration of the project by 4 weeks and he wants to do so at the lowest cost possible. In order to meet this objective a number of activities must be crashed. Activity Normal Time (weeks) Crashed Time (weeks) Normal Cost Crashed Cost Predecessor(s) A 5 3 $800 $1,200 - B 6 5 $300 $450 - C 6 5 $550 $775 - D 3 2 $750 $950 A E 6 3 $1,350 $2,250 C F 5 3 $675 $875 B What is the total cost of crashing the project 4 weeks (just the additional cost, not total project cost)? (Display your answer to two decimal places.)