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Designing and Implementing Cloud-Native Applications Using Microsoft Azure Cosmos DB
- Exam Number/Code : DP-420
- Exam Name : Designing and Implementing Cloud-Native Applications Using Microsoft Azure Cosmos DB
- Questions and Answers : 213 Q&As
- Update Time: 2019-01-10
- Price:
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NEW QUESTION: 1
Scenario: Rollins Manufacturing
Please read this scenario prior to answering the question
Rollins Manufacturing is a major supplier in the automotive industry, headquartered in Cleveland, Ohio with manufacturing plants in Chicago, Sao Paulo, Stuttgart, Yokohama, and Seoul. Each of these plants has been operating its own Manufacturing Requirements Planning (MRPII) system, production scheduling, and custom developed applications that drive the automated production equipment at each plant.
Rollins is implementing lean manufacturing principles to minimize waste and improve the efficiency of all of its production operations. During a recent exercise held for internal quality improvement, it was determined that a significant reduction in process waste could be achieved by replacing the current MRPII and scheduling systems with a common Enterprise Resource Planning (ERP) system located in the Cleveland data center. This central system would provide support to each of the plants replacing the functionality in the existing systems.
It would also eliminate the need for full data centers at each of the plant facilities. A reduced number of IT staff could support the remaining applications. In some cases, a third-party contractor could provide those staff.
The Rollins Enterprise Architecture department has been operating for several years and has mature, well-developed architecture governance and development processes that are strongly based on TOGAF 9.At a recent meeting, the Architecture Review Board approved a Request for Architecture Work from the Chief Engineer of Global Manufacturing Operations who is the project sponsor. The request covered the initial architectural investigations and the development of a comprehensive architecture to plan the transformation.
The Common ERP Deployment architecture project team has now been formed, and the project team has been asked to develop an Architecture Vision that will achieve the desired outcomes and benefits. Some of the plant managers have expressed concern about the security and reliability of driving their MRPII and production scheduling from a central system located in Cleveland. The Chief Engineer wants to know how these concerns can be addressed.
Refer to the Rollins Manufacturing Scenario
You are serving as the Lead Enterprise Architect of the newly-formed Common ERP Deployment architecture project team.
As the Common ERP Deployment architecture project team assembles for its initial meeting, many of the participants have voiced concerns about the sweeping scope of the initiative. Others are confident that they know a solution that will work. During the meeting, a number of alternative recommendations for how to proceed are put forward by members of the team.
You have been asked to select the most appropriate recommendation to ensure that the team evaluates different approaches to the problem and clarifies the requirements for the architecture.
Based on TOGAF 9, which of the following is the best answer?
A. The team should hold a series of interviews at each of the manufacturing plants using the business scenario technique. This will then enable them to identify and document the characteristics of the architecture from the business requirements.
B. The team should create Baseline and Target Architectures for each of the manufacturing plants. A gap analysis between the architectures will then validate the approach, and determine the Transition Architecture needed to achieve the target state.
C. The team should exercise due diligence and carefully research vendor literature and conduct a series of briefings with vendors that are on the current approved supplier list. Based on the findings from the research, the team should define a preliminary target Architecture Vision. The team should then use that model to build consensus among the key stakeholders.
D. The team should conduct a pilot project that will enable vendors on the short list to demonstrate potential solutions that will access the concerns of the stakeholders. Based on the findings of that pilot project, a complete set of requirements can be developed that will arrive the evolution of the architecture.
Answer: A
NEW QUESTION: 2
A network engineer executes the command show ip eigrp vrf purple topology.
Which type of information is displayed as a result?
A. updates that were sent for a specific routing table
B. routes for a global routing table
C. route successors for a specific routing table
D. active neighbors for a global routing table.
Answer: C
NEW QUESTION: 3
Universal Containersは、コミュニティにモデレート設定をセットアップしています。彼らは、監視する7585個のキーワードを開発しました。 7585個のキーワードすべてに対応するために必要なキーワードリストの最小数はいくつですか?
次の1つ以上を選択します。
A. 0
B. 1
C. 2
D. 3
Answer: C
NEW QUESTION: 4
Which of the following division is defined in the TCSEC (Orange Book) as minimal protection?
A. Division B
B. Division A
C. Division C
D. Division D
Answer: D
Explanation:
The criteria are divided into four divisions: D, C, B, and A ordered in a hierarchical manner with the highest division (A) being reserved for systems providing the most comprehensive security.
Each division represents a major improvement in the overall confidence one can place in the system for the protection of sensitive information.
Within divisions C and B there are a number of subdivisions known as classes. The classes are also ordered in a hierarchical manner with systems representative of division C and lower classes of division B being characterized by the set of computer security mechanisms that they possess.
Assurance of correct and complete design and implementation for these systems is gained mostly through testing of the security- relevant portions of the system. The security-relevant portions of a system are referred to throughout this document as the Trusted Computing Base (TCB).
Systems representative of higher classes in division B and division A derive their security attributes more from their design and implementation structure. Increased assurance that the required features are operative, correct, and tamperproof under all circumstances is gained through progressively more rigorous analysis during the design process.
TCSEC provides a classification system that is divided into hierarchical divisions of assurance levels:
Division D - minimal security Division C - discretionary protection Division B - mandatory protection Division A - verified protection Reference: page 358 AIO V.5 Shon Harris
also
Source: KRUTZ, Ronald L. & VINES, Russel D., The CISSP Prep Guide: Mastering the Ten Domains of Computer Security, page 197.
Also:
THE source for all TCSEC "level" questions: http://csrc.nist.gov/publications/secpubs/rainbow/std001.txt