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C90-06A - Cloud Architecture Lab - Dump Information

Vendor : SOA
Exam Code : C90-06A
Exam Name : Cloud Architecture Lab
Questions and Answers : 15 Q & A
Updated On : August 18, 2017
PDF Download Mirror : C90-06A Brain Dump
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C90-06A Questions and Answers

C90-06A SOA Cloud Architecture Lab http://killexams.com/pass4sure/exam-detail/C90-06A DEMO Find some pages taken from full version Following pages are for demo purpose only. Demo pages are randomly taken from full version. Full version can be different from the demo version. You can request the updated Demo by contacting support@killexams.com. For Details about Full version Click http://killexams.com/pass4sure/exam-detail/C90-06A servers between hypervisors within the same cluster. The Direct I/O Access pattern can then also be applied so that the virtual servers retain their network configurations regardless of which hypervisor within the cluster they reside on. C. The Non-Disruptive Service Relocation pattern can be applied to place a secondary copy of Ready-Made Environment A on Hypervisor B. The Persistent Virtual Network Configuration pattern can be applied so that virtual servers retain network configurations when moving to other hypervisors. D. The Load Balanced Virtual Server Instances and Persistent Virtual Network Configuration patterns can be applied together to ensure that the virtual servers retain their network configurations when moving to another hypervisor. The Redundant Storage pattern can further be applied to move the ready-made environment to another hypervisor without service impact. Answer: C QUESTION: 13 Cloud Service A is installed on Virtual Server A and the database it accesses is located on Cloud Storage Device A. Both Virtual Servers A and B are hosted by Hypervisor A. Requests from cloud service consumers are intercepted by an automated scaling listener that automatically routes subsequent requests to additional instances of Cloud Service A whenever the given usage of an instance exceeds two concurrent requests. Cloud Service Consumer A accesses Cloud Service A (1), which either sends a query or a read/write request to a database on Cloud Storage Device A (2). A usage and administration portal is available, enabling Cloud Consumer A to view the billing and usage historyof Virtual Servers A and B (3). Cloud Service Consumer A and Cloud Consumer A are owned by Organization A. which performs several tests on the cloud architecture that produce the following results: ݯ A stress test is performed to generate workloads on Virtual Servers A and B to gauge their load capacity. This test reveals that both virtual servers have firm workload thresholds. If the workload capacity on either virtual server reaches its threshold, further processing requests are rejected. ݯ An availability test shows that Cloud Service A becomes unavailable whenever Hypervisor A crashes. ݯ A security test is carried out during which the cloud architecture is accessed by a malicious cloud consumer that disables the path used by Cloud Service A to access Cloud Storage Device A, thereby causing all subsequent cloud service consumer requests to be replied to with data access errors. Which of the following statements describes a solution that addresses the concerns raised by the three tests? A. The Resource Reservation pattern can be applied to ensure that Virtual Servers A and B are not accessed by any cloud consumers other than Organization A, thereby enabling their respective capacity to be maximized. A second hypervisor can be implemented and the Synchronized Operating State pattern can be applied to emulate the usage of the resource cluster mechanism with the two hypervisors. This will prevent Cloud Service A from being affected if one of the hypervisors fails. The Service State Management pattern can be applied to establish a secondary cloud storage device that can be accessed by Cloud Service A whenever Cloud Storage Device A becomes inaccessible. B. The Elastic Resource Capacity pattern can be applied to enable resources to be assigned to the virtual servers dynamically. The Hypervisor Clustering pattern can be applied to avoid jeopardizing the availability of Cloud Service A when its underlying hypervisor fails. The Multipath Resource Access pattern can be applied to establish an alternative path to Cloud Storage Device A. Cloud Service A can then be designed to access Cloud Storage Device A via the alternative path whenever access via the original path fails. C. The Elastic Resource Capacity pattern can be applied to enable resources to be assigned to the virtual servers dynamically. The Resource Pooling pattern can be applied to allow Hypervisor A to be part of a larger hypervisor pool. The Cross-Storage D evice Vertical Tiering pattern can be applied to allow Cloud Service A to access Cloud Storage Device A via different tiers. D. None of the above. Answer: B QUESTION: 14 Cloud Service A accesses LUN Aon Cloud Storage Device A when it receives requests to process data from cloud consumers. Cloud Service A is hosted by Virtual Server A. The usage and administration portal can be used to access and manage the data in Cloud Storage Device B, which is also hosted by Virtual Server A. Virtual Server A is further hosted by Hypervisor A, which resides on Physical Server A. Virtual Server B is part of a virtual server cluster hosted by Hypervisor B. which resides on Physical Server B. Physical Server C is not in use and does not yet have an operating system installed. Cloud Service Consumer A sends a request to Cloud Service A (1), which accesses data in LUN Aon Cloud Storage Device A (2). Cloud Consumer B uses the usage and administration portal to upload new data (3). The data is placed in LUN B on Cloud Storage Device B (4). Cloud Service Consumer A and Cloud Consumer B belong to Organization A, which is leasing Virtual Server A and Virtual Server B from the cloud provider. Organization A also proceeds to lease Physical Server C as part of a new laaS agreement it signs with the cloud provider. Organization A wants to provision Physical Server C with a number of legacy systems that cannot be deployed on virtual servers. However, when it attempts to do so, it realizes that its laaS package only provides Physical Server C as an out-of-the-box hardware server without anything installed on it. In order to deploy its legacy systems Organization A requires that Physical Server C first has an operating system installed, but it has no means of remotely provisioning Physical Server C with an operating system. Organization A would like to deploy two of its legacy systems on Virtual Server A and to further extend Cloud Service A's functions so that it can be used as an external interface for cloud service consumers to access legacy system features. Additionally, Organization A would like to deploy three of its mission-critical legacy systems on Virtual Server B in order to take advantage of the additional performance and failover benefits provided by the virtual server cluster that Virtual Server B is part of. Each of the five legacy systems is comprised of dozens of components that need to be installed individually. Instead of manually installing each component of each legacy system, Organization A would like to customize workflows that can automate these deployment tasks. During the first few months of working with its cloud-based legacy systems. Organization A receives a number of complaints from users that the cloud-based legacy systems are at times behaving erratically. However, when cloud resource administrators with Organization A review the cloud provider's reports that log usage, downtime and other runtime characteristics, they do not find any indication of erratic behavior or any other comparable problems. After some further investigation, the cloud resource administrators determine that the nature of the erratic behavior is specific to proprietary features of the legacy systems and is therefore not monitored or logged by the cloud provider's standard audit monitor, pay-per-use monitor or automated scaling listener. The cloud resource administrators recommend that a new service agent be developed with features customized to monitor the legacy systems. Which of the following statements provides a solution that can address Organization A's requirements? A. The Bare-Metal Provisioning pattern can be applied to remotely provision Physical Server C with the operating system required to deploy the legacy systems. The Automated Administration pattern can be applied to enable Organization A to create custom scripts that can carry out the deployment of the legacy system components via the use of an intelligent automation engine. To provide Organization X with the tools to monitor IT resource usage and collect usage data so that security breaches and other impacts do not occur, the Usage Monitoring pattern can be applied to establish the required custom monitoring functionality. B. The Bare-Metal Provisioning pattern can be applied to enable Organization A to provisioning Physical Server C with legacy systems after the operating system has been installed. The Synchronized Operating State pattern can be applied to consolidate Organization A's legacy systems via a centralized administration portal from which it can then automate their deployment. The Automated Administration pattern can be applied to establish a series of workflow scripts customized to monitor and log proprietary legacy system behavior. C. The Rapid Provisioning pattern can be applied to enable Physical Server C to be remotely provisioned with the operating system and legacy systems. The Centralized RemoteAdministration pattern can be applied to enable Organization A's employees to remotely manage and administer legacy system deployment. The Pay-as-You-Go pattern can be applied to establish the custom monitoring functionality required by Organization A's legacy systems. D. None of the above. Answer: A QUESTION: 15 Cloud Service A is hosted by Virtual Server A, which is hosted by Hypervisor A on Physical Server A. Virtual Server B is hosted by Hypervisor B on Physical Server B. Cloud Service Consumer A accesses Cloud Service A and the request is intercepted by an SLA monitor (1). Cloud Service A receives the request (2) and accesses Cloud Storage Device A and Cloud Storage Device B (3). Cloud Service Consumer A belongs to Organization A, which is leasing all of the IT resources shown in the figure as part of an laaS environment. Cloud Storage Device B has a higher performance capacity than Cloud Storage Device A. Cloud Storage Device C has a higher performance capacity than Cloud Storage Device B. The requests being received by Cloud Service A from Cloud Service Consumer A have recently increased in both quantity and in the amount of data being queried, written and read from Cloud Storage Device A. As a result, Cloud Storage Device A's capacity is frequently reached and it has become unstable at times, timing out with some requests and rejecting other requests. Cloud Storage Device C is used by Organization A to store backup data on a daily basis. One day, a hardware failure within Cloud Storage Device C results in the permanent loss of data. Organization A requires a system that will prevent this type of failure from resulting in data loss. The cloud provider is planning to implement a routine maintenance schedule for Cloud Storage Devices A, B, and C and issues a notice stating that the new schedule will start next week. An outage of 30 minutes every Thursday and Sunday at 8:00 PM is needed for the maintenancetasks. Upon hearing this, Organization A complains that they cannot afford to have Cloud Storage Devices A and B become inoperable, especially not during the weekdays. Which of the following statements describes a solution that can address Organization A's issues? A. The Intra-Storage Device Vertical Data Tiering pattern can be applied to enable dynamic scaling between Cloud Storage Devices A, B and C. The Dynamic Failure Detection and Recovery pattern can be applied to establish a resilient watchdog system that is able to respond dynamically to prevent data loss. The Service State Management pattern can be applied to keep a copy of the data in Cloud Storage Devices A, B and C during the maintenance outages. B. The Cross-Storage Device Vertical Tiering pattern can be applied to enable dynamic scaling between Cloud Storage Devices A, B and C. The Redundant Storage pattern can be applied by designating Cloud Storage Device D as the secondary storage to which Organization A's data can be replicated. In order to prevent planned or unplanned outages from affecting Organization A's data access, the Storage Maintenance Window pattern can be applied to replicate the data in Cloud Storage Device D for retrieval before the outages begin. C. The Load Balanced Virtual Switches pattern can be applied to increase the bandwidth of Physical Server A so that data processing problems within Cloud Storage Device A can be prevented. The Non-Disruptive Service Relocation pattern can be applied to automatically relocate Cloud Storage Device A to Physical Server B so that data access is not interrupted. The Storage Maintenance Window pattern can be applied to replicate the data in Cloud Storage Device D for retrieval before the outages begin. D. None of the above. Answer: B For More exams visit http://killexams.com Kill your exam at First Attempt....Guaranteed!

SOA C90-06A Exam (Cloud Architecture Lab) Detailed Information

SOA Certified Professional certifications are formal accreditations that prove proficiency in specific areas of SOA computing. To obtain a certification, candidates are required to pass a set of exams. Some exams provide credit toward two or more certifications, whereas other exams are specific to one certification. To view a grid that shows an overview of the relationships between exams and certifications, visit the Matrix page.
Certified SOA Professional
A Certified SOA Professional has completed one specialized certification, multiple specialized certifications, or has met minimum SOACP qualifications by demonstrating proficiency in service-oriented computing fundamentals and one additional area.
Exams: S90.01 plus one additional SOACP exam
[ learn more ]
Certified SOA Consultant
A Certified SOA Consultant is required to obtain a balanced proficiency in a cross-section of the most important topic areas, with an emphasis on concepts, principles, practices, and technologies associated with service-oriented computing and service engineering.
Exams: S90.01, S90.02, S90.03, S90.04, S90.05
[ learn more ]
Certified SOA Analyst
A Certified SOA Analyst has demonstrated proficiency in the service-oriented analysis of conceptual services and service blueprints through the mastery of service modeling techniques, business service definition practices, service-orientation principles, and related methodology.
Exams: S90.01, S90.03, S90.04, S90.06, S90.07
[ learn more ]
Certified SOA Architect
A Certified SOA Architect has demonstrated proficiency in the mechanics of service-oriented computing through the mastery of patterns, principles, practices, and industry-standard technologies required to engineer modern-day service-oriented solutions.
Exams: S90.01, S90.02, S90.03, S90.08, S90.09
[ learn more ]
Certified SOA Java Developer
A Certified SOA Java Developer has proficiency with the development of distributed solutions using Java programming technologies and tools, and has attained proven mastery of applying service-orientation to the programming and implementation of services-based Java solutions.
Exams: S90.01, S90.02, S90.03, S90.05, S90.10, S90.11, S90.12
[ learn more | Available September 2016 ]
Certified SOA .NET Developer
A Certified SOA .NET Developer has proficiency with the development of distributed solutions using .NET programming technologies and tools, and has attained proven mastery of applying service-orientation to the programming and implementation of services-based .NET solutions.
Exams: S90.01, S90.02, S90.03, S90.05, S90.10, S90.13, S90.14
[ learn more | Available Q3/2016 ]
Certified SOA Governance Specialist
A Certified SOA Governance Specialist has demonstrated proficiency in defining, establishing, and evolving governance frameworks, precepts, and processes in support of organizational and technological SOA governance requirements.
Exams: S90.01, S90.03, S90.04, S90.15, S90.16, S90.17
[ learn more ]
Certified SOA Security Specialist
A Certified SOA Security Specialist has comprehensive knowledge of common threats and vulnerabilities associated with service-oriented solutions and modern service technologies, and has demonstrated proficiency in establishing security extensions for contemporary service-oriented architectures through the mastery of security patterns, practices, and industry technologies.
Exams: S90.01, S90.02, S90.03, S90.18, S90.19, S90.20
[ learn more ]
Certified SOA Quality Assurance Specialist
A Certified SOA Quality Assurance Specialist has proven expertise with testing techniques and practices specific to shared services and service-oriented solutions, and has further acquired proficiency with required quality assurance processes and assessment criteria.
Exams: S90.01, S90.03, S90.21, S90.22, S90.23
[ learn more | Available TBA ]
Certified SOA Trainer
A Certified SOA Trainer has completed at least one specialized certification with honors, has demonstrated exceptional communication abilities, and has sufficient hands-on project experience to meet the qualifications required to teach SOACP courses.
[ learn more ]
Benefits of Certification
A certification is a formal documentation of accomplishments that proves that a candidate has demonstrated theoretical knowledge and practical "know how" in a particular field. The attainment of a certification brings with it several benefits that allow successful candidates to:
Become Proficient with Vendor-Neutral, Real-World SOA
Focus on Mature and Proven Parts of the SOA Industry
Become a Project Ready SOA Professional
The SOA Certified Professional (SOACP) program is dedicated to excellence in the field of SOA and service-oriented computing. Through a series of seasoned course modules and exams, IT professionals have the opportunity to obtain a number of different certifications to recognize their accomplishment of gaining project-ready SOA proficiency.
This vendor-neutral program was developed in cooperation with best-selling SOA author Thomas Erl and several major SOA organizations and academic institutions. Through the involvement of an independent education committee, course contents and certification requirements are constantly reviewed and revised to stay current with developments in the service-oriented computing industry.
How To Get Trained
There are three options to receive training:
img
1. On-Site Training
An instructor can travel to your location to deliver a workshop for a class of students, based on your budget and preferences. To learn more, contact us.
img
2. Public Workshops
Certification workshops available for public registration are held on a quarterly basis in major cities around the world. Visit the Workshops page for the latest schedule.
img
3. Self-Study
Self-Study Kits are available for all exams. These kits allow you to study the materials remotely and at your own pace. Each kit includes study materials, Audio Tutor CDs, a Pearson VUE exam voucher and additional study aids. For more information, visit the Self-Study page.
How To Get Certified
To become certified you only need to pass the exams required for a given certification. The three training options can all help you prepare for these exams. To learn more, visit the Certifications page.
Note that testing and certification are optional. You can take any of the training courses without having to take the exams.
How To Take Exams
Exams are available worldwide via Pearson VUE testing centers and Online Proctoring. For descriptions of the exams and to learn more about exam scheduling and testing center locations, visit the Exams page.
img
img Curriculum Matrix (PDF) img Prentice Hall
Book Series Brochure (PDF) img Course Brochure (PDF) img Sample Testimonials (PDF) img
To have printed copies of any of these documents mailed to you, contact info@arcitura.com.
Certifications
The curriculum is comprised of a series of courses and formal exams that can be completed to achieve one or more of the following certifications:
Certified SOA Professional
Certified SOA Consultant
Certified SOA Analyst
Certified SOA Architect
Certified SOA Security Specialist
Certified SOA Java Developer
Certified SOA .NET Developer
Certified SOA Governance Specialist
Certified SOA Quality Assurance Specialist
To learn more about each certification, visit the Certifications page.
Courses
For each exam there is a corresponding one-day course module:
Module 1: Fundamental SOA & Service-Oriented Computing
Module 2: SOA Technology Concepts
Module 3: SOA Design & Architecture
Module 4: SOA Project Delivery & Methodology
Module 5: SOA Technology Lab
Module 6: Advanced SOA Analysis & Modeling
Module 7: SOA Analysis & Modeling Lab
Module 8: Advanced SOA Design & Architecture
Module 9: SOA Design & Architecture Lab
Module 10: Advanced Web-Based Service Technology
Module 11: Service Development with Java
Module 12: Service Development Lab with Java
Module 13: Service Development with .NET & Windows Azure
Module 14: Service Development Lab with .NET & Windows Azure
Module 15: Fundamental SOA Governance
Module 16: Advanced SOA Governance
Module 17: SOA Governance Lab
Module 18: Fundamental SOA Security
Module 19: Advanced SOA Security
Module 20: SOA Security Lab
Module 21: Fundamental SOA Quality Assurance
Module 22: Advanced SOA Quality Assurance
Module 23: SOA Quality Assurance Lab
For complete descriptions and outlines of the courses, visit the Courses page.
imgSome SOACP exams provide credit toward two or more certifications, whereas other exams are specific to one certification. To view a grid that shows an overview of the relationships between exams and certifications, visit the Matrix page
Certified SOA Architect
A Certified SOA Architect has demonstrated proficiency in the mechanics of SOA through the physical design of service-oriented technology architectures, service-oriented solutions, and related infrastructure.
To be considered an expert in this field requires a solid understanding of the service-orientation design paradigm including all related design principles and the effects of their application.
Fundamental SOA concepts and terminology need to become second nature to the SOA Architect and must be further supplemented with exposure to relevant SOA technologies. The different forms of service-oriented technology must also be fully understood, including the dependencies that exist between architectural levels.
SOA-certified architects will need to be prepared for a variety of design challenges and therefore must be proficient with the use of industry design patterns and service-oriented design processes. They must furthermore have an appreciation of how service design fits into the overall SOA project delivery lifecycle and how design approaches and techniques may ultimately affect service governance.
To achieve this certification, the following exams must be completed with a passing grade:
Exam S90.01: Fundamental SOA & Service-Oriented Computing
Exam S90.02: SOA Technology Concepts
Exam S90.03: SOA Design & Architecture
Exam S90.08: Advanced SOA Design & Architecture
Exam S90.09: SOA Design & Architecture Lab
Note that all certification requirements and course contents are reviewed and revised quarterly to stay in alignment with industry developments.

SOA C90-06A

C90-06A exam :: Article by ArticleForgeSOA C90-06A tests

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  • Stopping your TFS construct server from getting all sources Why you are looking to try this

    Bij default, a group groundwork build Server will, as probably the most first steps within the build proces, create a workspace and get the entire sources from a specific mission.

    For primary projects, this should be would becould very well be fine. despite the fact, if you beginning growing branches inside your undertaking, you could discover all these branches are additionally retrieved from the supply repository, whereas they on no account may be developed, as a minimum not right through a daily integration construct. also, there could be different artifacts to your source repository that don't seem to be mandatory for a daily CI construct.

    All this may create lots of overhead. At one factor, our build server became retrieving approximately 3 instances the quantity of sources it in fact necessary. This of route consumes house, but, extra importantly, it takes time, and one of the most key requirements of a CI build, personally, is that comments comes as right now as feasible.

    The answer is overriding the CoreGet assignment to your tfsbuild project file. The example under suggests you the way it may also be done. It first gets some prerequisits from supply control, like 3rd party libraries or different shared resources, and then it gets best those options from supply manage so that you can in fact be constructed.

    Prerequisits

    The instance under illustrates getting only a variety out of supply control. in this instance, the venture carries several modules that should be built, and branches were created for each module, like so:

    $/  MyProject    Module1      creation      maintenance      task    Module2      production      renovation      undertaking

    and many others. and so forth.we are able to no longer talk about if the above branching constitution is top-rated, we just anticipate here's what we need to deal with.

    To handle the distinct branches in our challenge, we are able to deserve to create some properties in our construct file we will check with in various construct steps and objectives. These residences may also be added to a PropertyGroup in your tfsbuild task:

    <!-- build the challenge branch --><department>assignment</department><!-- Get latest edition --><VersionToGet>T</VersionToGet>

     subsequent, we will add meta facts to our SolutionToBuild objects, so that you can specify the actual place of the information in source control. again, here's an example:

    <!-- if you have a distinct folder constitution in your mission, this path will differ --><SolutionToBuild    encompass="$(BuildProjectFolderPath)/../../Module1/$(department)/Module1.sln">    <targets></ambitions>    <houses>OutDir=$(BinariesRoot)\$(Configuration)\Module1\</properties>    <TfsModuleDir>Module1</TfsModuleDir>  <!-- our own meta records --></SolutionToBuild><SolutionToBuild    consist of="$(BuildProjectFolderPath)/../../Module1/$(department)/Module2.sln">    <aims></pursuits>    <properties>OutDir=$(BinariesRoot)\$(Configuration)\Module2\</houses>    <TfsModuleDir>Module2</TfsModuleDir>  <!-- our own meta records --></SolutionToBuild>

    next, we add the exact override of the CoreGet target in our tfsbuild undertaking.

    <!-- Override CoreGet, so handiest the solutions we need to build, are retrieved. --> <goal    identify="CoreGet"    situation=" '$(IsDesktopBuild)'!='genuine' "    DependsOnTargets="$(CoreGetDependsOn)" >

     <!-- Use the BuildStep assignment to supply comments in visual Studio --><BuildStep    identify="CoreGetStep"    TeamFoundationServerUrl="$(TeamFoundationServerUrl)"    BuildUri="$(BuildUri)"    Message="Getting edition $(VersionToGet) from branch $(branch)">    <Output TaskParameter="identification" PropertyName="StepId" /></BuildStep>

    <!-- Get libraries (which, during this instance,      are in $/MyProject/include --><Get    situation=" '$(SkipGet)'!='actual' "    Workspace="$(WorkspaceName)"    Recursive="$(RecursiveGet)"    force="$(ForceGet)"    version="$(VersionToGet)"    TeamFoundationServerUrl="$(TeamFoundationServerUrl)"    FileSpec="$/MyProject/encompass"/>

    <!-- Get other information if mandatory -->

    <!-- Get sources of options to construct. Thistask iterates via al gadgets in theSolutionToBuild ItemGroup that haveTfsModuleDir meta statistics set. --><Get    circumstance=" '$(SkipGet)'!='authentic' And '%(SolutionToBuild.TfsModuleDir)'!='' "    Workspace="$(WorkspaceName)"    Recursive="$(RecursiveGet)"    force="$(ForceGet)"    version="$(VersionToGet)"    TeamFoundationServerUrl="$(TeamFoundationServerUrl)"    FileSpec="$/MyProject/%(SolutionToBuild.TfsModuleDir)/$(department)"/>

     <!-- Set the state of our build Step to Succes --><BuildStep    TeamFoundationServerUrl="$(TeamFoundationServerUrl)"    BuildUri="$(BuildUri)"    identity="$(StepId)"    fame="Succeeded" />

    </goal>

    The influence may be that your construct server will best retrieve the sources of those options that you just want to be developed.





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