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Individuals who successfully pass the PMI PMI-RMP Certification Exam will receive a certificate that is valid for three years. To maintain their certification, individuals must earn at least 30 professional development units (PDUs) in risk management every three years.

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If you want to highlight your skills in identifying and assessing project risks, mitigating threats, and capitalizing on opportunities, the PMI Risk Management Professional certification is ideal for you. Obtaining this certificate places you aside from other specialists and brings honor to your organization. All you have to do is pass the associated exam, which is PMI-RMP. Thus, if you’re waiting for greater recognition, this test will evaluate your expertise and help you stand out to the stakeholders, peers, and employers.

Prestigious Positions to Get

The PMI-RMP Certification is the perfect boost you need to prove to your employers that you are well versed in all the techniques of project risk management. It places you at a higher competing ground among other risk management professionals. The individuals with this certificate can take up the job roles, such as a Risk Analyst, a Senior Risk Analyst, a Project Coordinator, a Risk Manager, a Project Manager, and a Program Manager, among others. The salary prospects for the Risk Analysts range from $80,730 to $106,991 per year, with an average remuneration of $93,469 per annum.

PMI Risk Management Professional Sample Questions (Q187-Q192):

NEW QUESTION # 187
Tom works as a project manager for BlueWell Inc. He is determining which risks can affect the project. Which of the following inputs of the identify risks process is useful in identifying risks, and provides a quantitative assessment of the likely cost to complete the scheduled activities?

Answer: C


NEW QUESTION # 188
You are working with Anna on your project to determine and map the probability distributions of risk within the project. You have indicated that you will use the uniform distribution method for a portion of the project.
Which part of your project is most likely to have a uniform risk distribution?

Answer: C


NEW QUESTION # 189
There are seven risk responses, a project manager can use to address risk events. Which one of the following is a risk response that is appropriate for positive or negative risk events depending on the scenario in the project?

Answer: B

Explanation:
Explanation


NEW QUESTION # 190
Towards the end of definitive design, project costs have increased to the point where it will be classified as a capital asset project. The customer has expressed they want one final total project completion date and will afford no extensions after it is established.
How should the risk manager proceed?

Answer: A

Explanation:
The risk manager should perform a quantitative risk analysis to determine the potential impact of risks on the project's completion date. This will help in providing a more accurate project completion date to the customer, considering the risks and their potential effects on the project schedule.
According to the PMI Risk Management Professional (PMI-RMP) Examination Content Outline1, one of the tasks in the domain of Risk Analysis is to perform quantitative risk analysis using techniques such as Monte Carlo simul-ation, decision tree analysis, sensitivity analysis, etc., to quantify the possible outcomes for the project and their probabilities, and to evaluate the cost and schedule impacts of risks1. In this scenario, the risk manager should perform a quantitative risk analysis and update the results, because the project costs have increased significantly and the customer has imposed a strict deadline for the project completion. A quantitative risk analysis will help the risk manager to estimate the probability of meeting the project objectives, such as cost and schedule, and to determine the appropriate contingency reserves for the project. A quantitative risk analysis will also provide more accurate and reliable information for the customer and the project team, and will support the risk response planning process2. References: 1: PMI Risk Management Professional (PMI-RMP) Examination Content Outline, page 92: A Guide to the Project Management Body of Knowledge (PMBOK Guide) - Sixth Edition, pages 431-432.


NEW QUESTION # 191
A risk manager reviews a Monte Carlo schedule risk analysis model before sharing the results with the project manager. The risk manager notices that activity correlations were not included in the model.
What is an effect of adding the correlation to the model?

Answer: A

Explanation:
Adding correlation to the model accounts for the relationship between activities, which can result in increased variability in the model's outcomes. This will increase the standard deviation, which is a measure of the uncertainty in the model.
According to the PMBOK Guide, 6th edition, Chapter 11: Project Risk Management1, an effect of adding the correlation to the Monte Carlo schedule risk analysis model is that it increases the standard deviation of the model. This is because:
* Correlation is the statistical relationship between two or more variables. In a schedule risk analysis, correlation can be used to model the dependency between the durations of different activities. For example, if two activities are positively correlated, it means that if one activity takes longer than expected, the other activity is also likely to take longer than expected. Conversely, if two activities are negatively correlated, it means that if one activity takes longer than expected, the other activity is likely to take shorter than expected.
* A Monte Carlo schedule risk analysis is a simul-ation technique that uses random values for uncertain variables, such as activity durations, to generate possible outcomes for the project schedule. The simul- ation is repeated many times to produce a probability distribution of the project completion date and duration. The standard deviation is a measure of the variability or dispersion of the distribution. A higher standard deviation means that the distribution is more spread out and less predictable.
* Adding correlation to the Monte Carlo schedule risk analysis model increases the standard deviation of the model because it introduces more variability and uncertainty to the simul-ation. Correlated activities can have a cumulative effect on the project schedule, either positively or negatively, depending on the direction and strength of the correlation. This can result in more extreme outcomes for the project completion date and duration, which increase the spread of the distribution and the standard deviation.
:
PMBOK Guide, 6th edition, Chapter 11: Project Risk Management1
Risk Management Professional (PMI-RMP)®Exam Cert Guide2


NEW QUESTION # 192
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