Interactive and interesting — the online version runs on all electronics. The SOA Cloud Architecture Lab dumps at Test4Cram: 15 practice questions for the C90.06 exam in three versions.
SOA C90.06 Exam Overview:
| Certification Vendor: | Arcitura Education / SOA School |
|---|---|
| Exam Name: | Cloud Architecture Lab |
| Exam Number: | C90.06 |
| Exam Format: | Multiple-choice, Scenario-based, Hands-on lab tasks, Performance-based |
| Real Exam Qty: | 45-55 |
| Passing Score: | 700/1000 (70%) |
| Available Languages: | English |
| Exam Duration: | 100 minutes |
| Exam Price: | $250–$300 USD |
| Related Certifications: | C90.04 C90.03 C90.02 C90.05 C90.01 |
| Certificate Validity Period: | 3 years |
| Recommended Training: | SOA School Official Training Arcitura Cloud Architecture Course |
| Exam Registration: | Arcitura Official Registration |
| Sample Questions: | ![]() |
| Exam Way: | Online proctored / Authorized testing centers |
| Pre Condition: | Recommended: Complete C90.01 to C90.05; prior cloud architecture knowledge required |
| Official Syllabus URL: | https://www.arcitura.com/certifications/exams/c90-06 |
SOA C90.06 Exam Syllabus Topics:
| Section | Weight | Objectives |
|---|---|---|
| Topic 1: Cloud Architecture Patterns & Design | 30% | - Cloud balancing, bursting, federation - Elastic, multitenant, resilient architectures - Serverless and distributed architecture |
| Topic 2: Cloud Service & Deployment Models | 25% | - Public, private, hybrid, community clouds - IaaS, PaaS, SaaS, XaaS |
| Topic 3: Security, Optimization & Implementation | 20% | - Hands-on deployment and configuration tasks - Performance, cost and resource optimization - Cloud security and compliance |
| Topic 4: Cloud Technology Concepts & Mechanisms | 25% | - Fundamental cloud characteristics
|
C90.06 Exam FAQ — Stand Out
Recommended: Complete C90.01 to C90.05; prior cloud architecture knowledge required Eligibility rules change over time, so verify the current requirements on the official page (official C90.06 exam page) before registering.
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100 minutes for 45-55 questions. Practice in the Test4Cram soft or online version until testing feels casual — simulation removes the nerves.
Yes:
After any course, stay efficient with the 15 practice questions for the SOA Cloud Architecture Lab — every answer expert-verified.
Soon after purchasing you can download the complete SOA Cloud Architecture Lab material — even on official holidays: the automatic email arrives within about a minute, and our 7*24 service replies within two hours if anything goes wrong. If you fail the corresponding C90.06 exam within 60 days of purchase, we refund in full: send a scanned enrollment slip plus the official Score Report PDF within 2 days of the exam, processed within 7 days. Excluded: exams within 3 days of purchase, candidate names that don't match the payer, and free or expired products. Or exchange for two equal-value products free.
The SOA Cloud Architecture Lab is SOA's certification exam for Certified Cloud Architect (CCA), Cloud Certified Professional (CCP), at the Specialist / Professional level. When a good opportunity appears, the certified hold the vital advantages. Related credentials include C90.01, C90.02, C90.03, C90.04, C90.05.
Through the vendor's official registration channels:
The SOA Cloud Architecture Lab is delivered Online proctored / Authorized testing centers — pick the arrangement that suits you when booking.
$250–$300 USD per attempt, 700/1000 (70%) to pass. Fail and you pay twice or more — save time and money with the 15 practice questions for the C90.06 exam at Test4Cram.
The SOA Cloud Architecture Lab blueprint spans 4 domains — including Cloud Service & Deployment Models (25%), Security, Optimization & Implementation (20%), Cloud Architecture Patterns & Design (30%). A cram sheet with direction beats aimless reading; the complete outline above lists every subtopic.
SOA Cloud Architecture Lab Sample Questions:
Cloud Service A requires access to Cloud Storage Device A and Cloud Storage Device B.
Cloud Service A is hosted by Virtual Server A.
Virtual Server A and Virtual Server B are hosted by Hypervisor A, which resides on Physical Server A.
Cloud Service Consumer A sends a request to access Cloud Service A (1). Cloud Service A retrieves data from Cloud Storage Device A and Cloud Storage Device B (2). Cloud Consumer A uses the usage and administration portal to access resource usage reports for Cloud Service A (3).
Cloud Service Consumer A and Cloud Consumer A belong to Organization A, which is leasing an laaS environment from the cloud provider.
The cloud provider makes Cloud Service A available to several new cloud service consumers. Additionally, new LUNs are created on Cloud Storage Devices A and B for new cloud consumers to perform regular data access functions. This increase in workload causes Virtual Server A to fail during peak usage periods. Organization A and the new cloud consumer organizations request that the cloud provider find a way to dynamically support the higher usage workloads.
Organization A keeps its master files and data in LUN B in Cloud Storage Device B.
One day, a cloud resource administrator accidentally changes the path used to access LUN B.
The original path cannot be retrieved. The cloud resource administrator informs Organization A's IT department that it must change any systems or tools it uses to access LUN B to the new path. This causes significant challenges, as well as a costly period of disruption. Organization A asks the cloud provider to create a system that would help avoid disruption in access to LUN B, if this was to ever happen again.
The cloud provider has made Cloud Storage Device A part of a resource pool of synchronized cloud storage devices. Organization A is sharing Cloud Storage Device A with another cloud consumer organization. When cloud consumers from both organizations access Cloud Storage Device A at the same time, they encounter a resource constraint condition that causes Cloud Storage Device A to fail. Organization A requests that the cloud provider extend the existing cloud architecture to prevent this situation from happening again.
Which of the following statements provides a solution that can address all of these problems?
- A. The Resource Reservation pattern can be applied to dynamically provision resources to Virtual Server A whenever its processing thresholds are being reached. The Persistent Virtual Network Configuration pattern can be applied to establish a persistent hyperlink to LUN B over the virtual network that cannot be lost. The Elastic Resource Capacity pattern can be applied to prevent Cloud Storage Device A from encountering resource constraints.
- B. None of the above.
- C. The Elastic Resource Capacity pattern can be applied to establish a system that can dynamically allocate resources to Virtual Server A.
The Multipath Resource Access pattern can be applied to establish a multipathing system that can provide an alternative path to LUN B in Cloud Storage Device B.
The Resource Reservation pattern can be applied to establish a system that enables Organization A to have exclusive access to pre-defined resources on Cloud Storage Device A for a given period of time. - D. The Elastic Network Capacity pattern can be applied to implement a system that dynamically assigns network ports to Virtual Server A before its processing capacity thresholds are reached. The Redundant Physical Connection for Virtual Servers pattern can be applied to create an alternative path to LUN B in Cloud Storage Device B.
The Resource Pooling pattern can be applied to synchronize Cloud Storage Device A with other cloud storage devices.
Correct Answer: C 🗳️
Cloud Service A is hosted by Virtual Server A.
Cloud Storage Device A contains LUN A.
Cloud Storage Device A is a multi-tiered cloud storage device with different types of disk groups that perform at different levels. LUN A is located in the disk group with the highest performance level. Cloud Service B is hosted by Virtual Server B.
Virtual Servers A and B are hosted by HypervisorA, which is installed on a physical server (not shown) that resides in Cloud A.
A redundant implementation of LUN A is replicated synchronously to Cloud Storage Device C.
Cloud Storage Device C does not support multiple types of disk groups and resides in Cloud B, which is located in a different geographic region than Cloud A.
Requests that cloud service consumers send to Cloud Services A and B are intercepted by an automated scaling listener responsible for initiating scaling activities.
Cloud Service Consumer A issues a request to Cloud Service A (1). To process the request, Cloud Service A accesses LUN Aon Cloud Storage Device A (2). Cloud Service Consumer B issues a request to Cloud Service B (3). To process the request, Cloud Service B accesses LUN B on Cloud Storage Device B (4).
When Cloud Service Consumer A accesses Cloud Service A, there is usually no noticeable performance fluctuation, even during peak usage periods. However, recently, Cloud Storage Device A became unexpectedly unavailable, requiring that Cloud Service A access LUN A on Cloud Storage Device C instead. During the following outage period for Cloud Storage Device A, Cloud Service Consumer A encounters inconsistent performance from Cloud Service A, including unusual delays that occur whenever the data requested by Cloud Consumer A isn't cached and Cloud Service A is required to retrieve the data from LUN A.
Which of the following statements describes a solution that can address this problem?
- A. None of the above.
- B. The Cloud Balancing pattern can be applied to enable Cloud Service A to switch over to Cloud Storage Device C if Cloud Storage Device A becomes unavailable. The Dynamic Data Normalization pattern can be further applied to streamline and reduce the quantity of the data being stored by LUN A within Cloud Storage Device A, so as to correspondingly reduce the performance impacts during high usage volumes.
- C. The Storage Maintenance Window pattern can be applied so that future outages of Cloud Storage Device A do not occur unexpectedly. The Resource Pooling and Resource Reservation patterns can be further applied to establish a resource pool on Cloud A that has resources reserved specifically for Cloud Service A.
This will prevent other cloud service consumers, such as Cloud Service Consumer B, from competing for Cloud Service A's resources. - D. The Shared Resources pattern can be applied to prevent Cloud Service A from encountering performance issues when IT resources hosted by Hypervisor A are accessed by other cloud service consumers. The Cross-Storage Device Vertical Tiering pattern can be applied to enable Cloud Storage Device A to scale to a higher performance disk type when an outage occurs.
Correct Answer: A 🗳️


