1Z0-1151-25 EXAMCOLLECTION DUMPS & 1Z0-1151-25 LATEST STUDY QUESTIONS

1Z0-1151-25 Examcollection Dumps & 1Z0-1151-25 Latest Study Questions

1Z0-1151-25 Examcollection Dumps & 1Z0-1151-25 Latest Study Questions

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Oracle 1Z0-1151-25 Exam Syllabus Topics:

TopicDetails
Topic 1
  • Core OCI Services Overview: This section evaluates the knowledge of Identity and Database Administrators in managing OCI's core services for multi-cloud integration. It covers the implementation of identity federation between OCI Identity Domains and external identity providers, ensuring secure authentication across multiple cloud environments. Candidates will also gain expertise in configuring Virtual Cloud Network (VCN) components and administering OCI database services, including Base Databases, Autonomous Databases, and HeatWave, to support scalable multi-cloud deployments.
Topic 2
  • Configure Multicloud Connection Options: This section assesses the abilities of Network Engineers in configuring connectivity solutions for OCI multi-cloud environments. It includes setting up secure networking options such as Site-to-Site VPN and FastConnect for seamless cloud integration. Candidates will also learn how to implement Oracle Interconnect services for establishing direct, high-performance connections between OCI and third-party cloud providers like Microsoft Azure and Google Cloud.
Topic 3
  • Implement Oracle Database@Google Cloud: This section measures the proficiency of Cloud Database Engineers in utilizing Oracle Database@Google Cloud. It explores the architecture and operational framework for running Oracle databases on Google Cloud. Candidates will learn about onboarding procedures, provisioning resources, and managing database services effectively to optimize performance and availability in a Google Cloud-integrated multi-cloud ecosystem.
Topic 4
  • Implement Oracle Database@Azure: This section tests the expertise of Database Solutions Architects in deploying and managing Oracle Database@Azure. It covers the architectural components and onboarding processes required for provisioning databases in Azure while maintaining Oracle’s advanced database capabilities. Candidates will also focus on configuring high availability and disaster recovery strategies to ensure business continuity and data resilience in a multi-cloud setup.
Topic 5
  • Introduction to Multicloud: This section of the exam measures the skills of Cloud Architects in understanding multicloud environments and their benefits. It covers the reasons organizations adopt multi-cloud strategies, including flexibility, cost optimization, and risk management. Candidates will learn about common multicloud use cases and how they are implemented in Oracle Cloud Infrastructure (OCI) to enhance interoperability and performance.

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Oracle Cloud Infrastructure 2025 Multicloud Architect Professional Sample Questions (Q32-Q37):

NEW QUESTION # 32
Which of the following components is NOT part of the physical architecture of an OCI pod deployed within an Azure data center for Oracle Database@Azure?

  • A. Azure Virtual Machines acting as Database servers
  • B. High-speed, low-latency interconnect fabric
  • C. Exadata compute servers
  • D. Exadata storage servers

Answer: A

Explanation:
In the Oracle Database@Azure setup, the database servers are the Exadata compute servers. The entire Exadata system (compute, storage, and networking) resides within the OCI pod, which is physically located in a co-located data center (not within the Azure data center itself, but nearby with a direct interconnect). Azure VMs are used for the application tier and other Azure services that need to interact with the Oracle database, but the database itself runs on the Exadata infrastructure. Therefore, Azure VMs do not act as the database servers in this architecture.


NEW QUESTION # 33
A company operates in multiple regions and needs to comply with data residency regulations. They want to utilize both OCI and AWS for their application infrastructure, storing data in the region where it's generated. Which aspect of multicloud architecture is MOST critical for achieving this goal?

  • A. Network connectivity between cloud providers.
  • B. Provider-specific data storage and regional availability.
  • C. Unified identity management across clouds.
  • D. Centralized monitoring and logging.

Answer: B

Explanation:
Here's why:
Provider-specific data storage and regional availability: Data residency regulations mandate that data must be stored within specific geographic boundaries. Cloud providers offer services with regional availability, meaning data is stored within specific data centers in that region. Utilizing provider-specific storage services (like OCI Object Storage in a specific region and AWS S3 in a corresponding region) is the fundamental way to ensure data stays within the required geographic boundaries. This is the core requirement for data residency.
Why the other options are less critical for data residency specifically:
A). Network connectivity between cloud providers: While network connectivity is important for application functionality and data transfer between clouds (if needed), it doesn't directly address the requirement of where the data is stored. Good connectivity is important for other aspects of a multicloud architecture, but it's not the primary factor for data residency.
B). Unified identity management across clouds: Unified identity management simplifies user access and administration across multiple cloud environments. While important for security and operational efficiency, it doesn't directly enforce data residency. A user could have access to resources in multiple regions, but the data storage itself must be configured regionally.
C). Centralized monitoring and logging: Centralized monitoring and logging provide a unified view of application performance and security across clouds. While beneficial for operations and security, they don't directly enforce data residency requirements. Logs themselves might need to adhere to data residency rules, but the core issue is where the application data is stored.


NEW QUESTION # 34
Which of the following actions requires coordination with Oracle support when working with Oracle Database@Google Cloud?

  • A. Creating a new database within an existing Exadata VM Cluster.
  • B. Scaling up the compute resources of an Exadata VM Cluster.
  • C. Applying database patches to a CDB (Container Database).
  • D. Backing up a PDB (Pluggable Database) to OCI Object Storage.

Answer: B

Explanation:
Here's a breakdown:
A). Creating a new database within an existing Exadata VM Cluster: This is a standard database administration task that customers can perform themselves using SQL*Plus, SQL Developer, or other database management tools. It doesn't require Oracle support.
C). Applying database patches to a CDB (Container Database): While patching requires careful planning and execution, it's generally a customer responsibility within Oracle Database@Google Cloud. Oracle provides the patches, but the application is typically handled by the customer's database administrators.
D). Backing up a PDB (Pluggable Database) to OCI Object Storage: While OCI Object Storage might be involved, the backup operation itself is a standard database administration task that the customer performs. Configuring backups to external storage might require initial setup, but the backups themselves don't necessitate ongoing Oracle support coordination.
B). Scaling up the compute resources of an Exadata VM Cluster: Scaling compute resources (like adding more compute nodes or increasing CPU/memory) involves changes to the underlying infrastructure provided by Oracle. This requires coordination with Oracle support because it's not a self-service operation through the Google Cloud console. It's a managed infrastructure change.


NEW QUESTION # 35
Which of the following scenarios would NOT be a valid example of how multicloud might help in this objective?

  • A. Employing a multi-cloud container orchestration platform to effectively utilize existing resources across different environments.
  • B. Leveraging specific cloud providers that offer significant discounts on compute instances during off-peak hours.
  • C. Deploying workloads on cloud providers that offer better pricing for specific services used by the application.
  • D. Using a consistent pricing model for all services regardless of the cloud provider.

Answer: D

Explanation:
Here's why:
Pricing variability is key: A core principle of multicloud cost optimization is taking advantage of the differences in pricing models between cloud providers. If all providers had consistent pricing, there would be no cost advantage to choosing one over another for specific services or usage patterns. The ability to shop around and select the most cost-effective provider for a given workload or time of day is a key driver of multicloud cost savings.
Here's why the other options are valid examples:
a) Leveraging specific cloud providers that offer significant discounts on compute instances during off-peak hours: This is a classic example of multicloud cost optimization. By shifting workloads to providers with lower off-peak pricing, organizations can significantly reduce compute costs.
c) Deploying workloads on cloud providers that offer better pricing for specific services used by the application: Different cloud providers have different pricing strategies for various services. By analyzing these differences and deploying workloads accordingly, organizations can optimize costs. For example, one provider might have cheaper storage, while another has cheaper data transfer.
d) Employing a multi-cloud container orchestration platform to effectively utilize existing resources across different environments: Container orchestration platforms like Kubernetes can help optimize resource utilization across multiple clouds. By efficiently scheduling containers based on resource availability and cost, organizations can minimize waste and reduce overall cloud spending.


NEW QUESTION # 36
What is the significance of the "customer tenancy" in the context of provisioning Oracle Database@Azure?

  • A. It represents the OCI tenancy where the Exadata resources are provisioned.
  • B. It refers to the Azure subscription where the cross-connect is established.
  • C. It defines the network connectivity between the Exadata systems and the Azure Virtual Network.
  • D. It specifies the billing relationship between Oracle and the customer for the service.

Answer: A

Explanation:
In the context of Oracle Database@Azure, the "customer tenancy" refers to the customer's Oracle Cloud Infrastructure (OCI) tenancy. The Exadata infrastructure, which is a core component of the service, is provisioned and resides within this OCI tenancy. While the service is accessed and integrated with Azure, the underlying Exadata hardware and its management occur within the customer's designated space in OCI.


NEW QUESTION # 37
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