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1Z0-1151-25 Test Discount, 1Z0-1151-25 Premium Files

1Z0-1151-25 Test Discount, 1Z0-1151-25 Premium Files

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Oracle 1Z0-1151-25 Exam Syllabus Topics:

TopicDetails
Topic 1
  • 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.
Topic 2
  • 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 3
  • 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 4
  • 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 5
  • 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.

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Oracle Cloud Infrastructure 2025 Multicloud Architect Professional Sample Questions (Q39-Q44):

NEW QUESTION # 39
During the onboarding process for Oracle Database@Azure, what role does the Customer-Managed Key (CMK) play?

  • A. It authenticates the connection between the OCI and Azure environments.
  • B. It authorizes access to the Exadata systems from Azure applications.
  • C. It encrypts the data at rest on the Exadata storage servers.
  • D. It encrypts the communication between the OCI control plane and the Exadata infrastructure.

Answer: C

Explanation:
In Oracle Database@Azure, the Customer-Managed Key (CMK) is used for Transparent Data Encryption (TDE).
1 This means the CMK is used to encrypt the database's data at rest, protecting it on the Exadata storage servers. By using a CMK, the customer maintains control over the encryption keys, enhancing security and meeting compliance requirements


NEW QUESTION # 40
What is the purpose of the Autonomous System Number (ASN) in a BGP configuration?

  • A. It uniquely identifies your network to the internet routing system, allowing for proper routing of traffic.
  • B. It determines the bandwidth allocated to your connection.
  • C. It is used to authenticate the connection between your on-premises network and OCI.
  • D. It is used to encrypt the traffic traversing the connection.

Answer: A

Explanation:
Here's why:
Autonomous System Number (ASN): An ASN is a unique number assigned to an autonomous system (AS), which is a network or a group of networks under a common administration that has a consistent routing policy. In the context of BGP (Border Gateway Protocol), ASNs are used to identify each network participating in BGP routing. When you configure BGP for your FastConnect connection, you and Oracle each provide an ASN. This allows routers on both sides to exchange routing information and ensure that traffic is correctly routed between your on-premises network and your OCI VCN.
Why the other options are incorrect:
A). It is used to encrypt the traffic traversing the FastConnect connection: Encryption is handled by other mechanisms, such as IPsec VPNs (if used in conjunction with FastConnect) or encryption at the application layer. The ASN itself does not provide encryption.
C). It determines the bandwidth allocated to your FastConnect connection: The bandwidth of your FastConnect connection is determined by the service level you purchase from Oracle, not by the ASN.
D). It is used to authenticate the connection between your on-premises network and OCI: While BGP does have some built-in authentication mechanisms (like MD5 authentication), the primary purpose of the ASN is network identification for routing, not authentication. The FastConnect circuit itself is authenticated through other means.


NEW QUESTION # 41
ABC Private Limited has been using Oracle Cloud Infrastructure (OCI) to host their mission-critical applications but has decided to start using Microsoft Azure for some of their workloads. They want to enable connectivity between OCI and Azure to create a multicloud architecture. What should ABC Private Limited do to enable connectivity between OCI and Microsoft Azure for a multicloud setup?

  • A. Use a VPN connection to connect the two clouds.
  • B. Use the OCI-Azure Interconnect to establish a private, high-bandwidth, low-latency connection between the two clouds.
  • C. Use a third-party cloud provider to host the workloads that need to communicate between the two clouds.
  • D. Use the public internet to connect the two clouds.

Answer: B

Explanation:
The OCI-Azure Interconnect (which utilizes Oracle FastConnect on the OCI side and Azure ExpressRoute on the Azure side) is specifically designed to create a direct, private, high-bandwidth, and low-latency connection between the two cloud environments. This is the recommended approach for establishing a robust and performant multicloud architecture between OCI and Azure.
Here's why the other options are not the best solution:
A). Use a third-party cloud provider to host the workloads that need to communicate between the two clouds: This introduces unnecessary complexity and potential performance bottlenecks. It adds another hop in the network path, increasing latency and potentially impacting security.
C). Use the public internet to connect the two clouds: While possible, using the public internet for inter-cloud communication has significant drawbacks:
Variable performance: Internet traffic is subject to fluctuations in bandwidth and latency, which can negatively impact application performance.
Security concerns: Data transmitted over the public internet is more susceptible to interception and other security threats.
D). Use a VPN connection to connect the two clouds: While VPNs provide secure connections, they typically offer lower bandwidth and higher latency compared to dedicated interconnects like the OCI-Azure Interconnect. This can be a bottleneck for applications that require high throughput or low latency.


NEW QUESTION # 42
Which is a valid statement for a private offer purchase option?

  • A. You must have an OCI account to create a private offer.
  • B. Consult Oracle Sales to create a private offer in Google Cloud Marketplace.
  • C. Consult Oracle Sales to create a private offer in OCI Marketplace.
  • D. Raise a purchase private offer directly from Google Cloud Marketplace.

Answer: B

Explanation:
For Oracle Database@Google Cloud, customers consult Oracle Sales to create a private offer in the Google Cloud Marketplace, aligning with the service's GCP integration. Option A incorrectly references OCI Marketplace, Option C misstates account requirements (an OCI account links post-purchase), and Option D skips the sales consultation step. Oracle's purchasing process documentation supports this for GCP-based services.


NEW QUESTION # 43
What does Oracle Base Database Service utilize in Oracle Cloud Infrastructure to ensure high availability and disaster recovery?

  • A. Availability domains and fault domains
  • B. Geography
  • C. Availability zone
  • D. Availability set

Answer: A

Explanation:
Availability Domains (ADs): These are independent data centers within an OCI region. Each region has multiple ADs. Placing database instances in different ADs protects against failures of an entire data center.
Fault Domains (FDs): Within each AD, there are fault domains. These are groupings of hardware and infrastructure designed to minimize the impact of hardware failures. Placing database instances in different FDs within the same AD protects against failures of physical hardware like power supplies or network switches.
By utilizing both Availability Domains and Fault Domains, Oracle Base Database Service ensures high availability by providing redundancy at multiple levels:
High Availability: Distributing instances across different FDs within an AD protects against local hardware failures.
Disaster Recovery: Distributing instances across different ADs protects against larger-scale events that might affect an entire data center.
Here's why the other options are not the primary mechanism:
Geography: While OCI regions are geographically separated, "geography" itself isn't a specific feature used for high availability within a region. Regions are used for broader disaster recovery strategies (e.g., replicating data to a different region).
Availability set: This is a concept used in other cloud providers (like Azure) but not in OCI.
Availability zone: This is a term used in other cloud providers (like AWS) and is conceptually similar to Availability Domains in OCI.


NEW QUESTION # 44
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