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NEW QUESTION: 1
Fuel tanker A can fill the underground reservoir in 12 minutes. How long will it take fuel tanker A and fuel tanker B to fill up the same reservoir together?
(1) The reservoir contains 3000 liters of fuel.
(2) Fuel tanker B alone will require the same number of hours to fill the same reservoir.
A. Statement (2) BY ITSELF is sufficient to answer the question, but statement (1) by itself is not.
B. Statements (1) and (2) TAKEN TOGETHER are NOT sufficient to answer the question, requiring more data pertaining to the problem.
C. Statements (1) and (2) TAKEN TOGETHER are sufficient to answer the question, even though NEITHER statement BY ITSELF is sufficient.
D. Either statement BY ITSELF is sufficient to answer the question.
E. Statement (1) BY ITSELF is sufficient to answer the question, but statement (2) by itself is not.
Answer: A
Explanation:
Explanation/Reference:
Explanation:
Statement (1) is insufficient since the size of the reservoir is irrelevant.
Statement (2) is sufficient since it tells us that the second tanker has the same work rate as the first. So, it will take them both half the time it took the first tanker alone.
The correct answer is B.
NEW QUESTION: 2
A. Project schedule
B. Cost performance parameter
C. KPI
D. WBS
E. Corrective action plan
Answer: A,D
Explanation:
References: Kim Heldman, CompTIA Project+ Study Guide, 2nd Edition, Sybex, Indianapolis, 2017, p. 133
https://books.google.co.za/books?id=evR0gPFBHJ4C&pg=PA128&lpg=PA128&dq=comple te+a+project+sooner+-
+ update+WBS&source=bl&ots=O650UKpUEK&sig=mlexbBmFJKkAuXuftqO2YjLLOgo&hl= en&sa=X&ved=0ahUKEwi8uJXIj_DXAhUKuRQKHW3fDKAQ6AEIMTAC#v=onepage&q=co mplete%20a%20project%20sooner%20-%20update%20WBS&f=false
NEW QUESTION: 3
Please select which statement is the most accurate:
A. Agile Development and Scrum are synonyms for the same methodology
B. Agile Development and Scrum are contrasting methodologies
C. Scrum is an implementation of Agile Development
D. Agile Development is an implementation of Scrum
Answer: C
NEW QUESTION: 4
Which of the following is based on the premise that the quality of a software product is a direct function of the quality of its associated software development and maintenance processes?
A. The Spiral Model
B. The Waterfall Model
C. Expert Systems Model
D. The Software Capability Maturity Model (CMM)
Answer: D
Explanation:
The Capability Maturity Model (CMM) is a service mark owned by Carnegie
Mellon University (CMU) and refers to a development model elicited from actual data. The data was collected from organizations that contracted with the U.S. Department of
Defense, who funded the research, and became the foundation from which CMU created the Software Engineering Institute (SEI). Like any model, it is an abstraction of an existing system.
The Capability Maturity Model (CMM) is a methodology used to develop and refine an organization's software development process. The model describes a five-level evolutionary path of increasingly organized and systematically more mature processes.
CMM was developed and is promoted by the Software Engineering Institute (SEI), a research and development center sponsored by the U.S. Department of Defense (DoD).
SEI was founded in 1984 to address software engineering issues and, in a broad sense, to advance software engineering methodologies. More specifically, SEI was established to optimize the process of developing, acquiring, and maintaining heavily software-reliant systems for the DoD. Because the processes involved are equally applicable to the software industry as a whole, SEI advocates industry-wide adoption of the CMM.
The CMM is similar to ISO 9001, one of the ISO 9000 series of standards specified by the
International Organization for Standardization (ISO). The ISO 9000 standards specify an effective quality system for manufacturing and service industries; ISO 9001 deals specifically with software development and maintenance. The main difference between the two systems lies in their respective purposes: ISO 9001 specifies a minimal acceptable quality level for software processes, while the CMM establishes a framework for continuous process improvement and is more explicit than the ISO standard in defining the means to be employed to that end.
CMM's Five Maturity Levels of Software Processes
At the initial level, processes are disorganized, even chaotic. Success is likely to depend on individual efforts, and is not considered to be repeatable, because processes would not be sufficiently defined and documented to allow them to be replicated.
At the repeatable level, basic project management techniques are established, and successes could be repeated, because the requisite processes would have been made established, defined, and documented.
At the defined level, an organization has developed its own standard software process through greater attention to documentation, standardization, and integration.
At the managed level, an organization monitors and controls its own processes through data collection and analysis.
At the optimizing level, processes are constantly being improved through monitoring feedback from current processes and introducing innovative processes to better serve the organization's particular needs.
When it is applied to an existing organization's software development processes, it allows an effective approach toward improving them. Eventually it became clear that the model could be applied to other processes. This gave rise to a more general concept that is applied to business processes and to developing people.
CMM is superseded by CMMI
The CMM model proved useful to many organizations, but its application in software development has sometimes been problematic. Applying multiple models that are not integrated within and across an organization could be costly in terms of training, appraisals, and improvement activities. The Capability Maturity Model Integration (CMMI) project was formed to sort out the problem of using multiple CMMs.
For software development processes, the CMM has been superseded by Capability
Maturity Model Integration (CMMI), though the CMM continues to be a general theoretical process capability model used in the public domain.
CMM is adapted to processes other than software development
The CMM was originally intended as a tool to evaluate the ability of government contractors to perform a contracted software project. Though it comes from the area of software development, it can be, has been, and continues to be widely applied as a general model of the maturity of processes (e.g., IT Service Management processes) in IS/IT (and other) organizations.
Source:
http://searchsoftwarequality.techtarget.com/sDefinition/0,,sid92_gci930057,00.html and
http://en.wikipedia.org/wiki/Capability_Maturity_Model