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[General] New Professional-Cloud-Network-Engineer Exam Topics - Professional-Cloud-Network

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【General】 New Professional-Cloud-Network-Engineer Exam Topics - Professional-Cloud-Network

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The Google Professional-Cloud-Network-Engineer Exam covers a wide range of topics, including designing, configuring, and managing network infrastructure on Google Cloud. It tests the candidate's knowledge of Google Cloud networking services such as Virtual Private Cloud (VPC), Cloud Load Balancing, Cloud DNS, and Cloud CDN. It also evaluates the candidate's ability to troubleshoot network issues, optimize network performance, and implement network security best practices.
Google Professional-Cloud-Network-Engineer Certification Exam is intended for professionals who work with Google Cloud Platform technologies and have experience in cloud networking, network architecture, and network security. Google Cloud Certified - Professional Cloud Network Engineer certification is ideal for network engineers, network administrators, and cloud architects who are responsible for designing, implementing, and maintaining cloud network infrastructure. Google Cloud Certified - Professional Cloud Network Engineer certification exam tests the candidate's ability to design and implement network architectures that meet business requirements while ensuring network security and scalability.
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The certification exam will measure the skills and knowledge of the candidates across seven different domains. The highlights of these areas are as follows:Design, Plan, and Prototype GCP Networks
  • Design Virtual Private Cloud: This section covers the individuals’ skills in peering, multiple versus single, shared or standalone, CIDR range for the subnets, and IP address. It also focuses on the concepts, such as routes, firewall, and the differences between other Cloud platforms and Google Cloud Networking;
  • Design Hybrid Networks: The questions from this subtopic will measure the expertise of the learners in peering options, IPsec VPN, using interconnects, cross-organization access, standalone versus shared VPC interconnect access, Cloud router, as well as failover & disaster recovery strategy.
  • Design Overall Network Architectures: The consideration for this topic include alternatives for high availability, failover & disaster recovery plan, DNS strategy, container networking, hybrid connectivity, and optimizing for latency. The certification exam also requires competence in selecting the relevant load balancing options, meeting the business prerequisites, Micro-segmentation for security reasons, IAM & security, and understanding of the way quotas are applied based on project and VPC;
Google Cloud Certified - Professional Cloud Network Engineer Sample Questions (Q108-Q113):NEW QUESTION # 108
You are responsible for designing a new connectivity solution between your organization's on-premises data center and your Google Cloud Virtual Private Cloud (VPC) network Currently, there Is no end-to-end connectivity. You must ensure a service level agreement (SLA) of 99.99% availability What should you do?
  • A. Use a Direct Peering connection between your on-premises data center and Google Cloud. Configure Classic VPN with two tunnels and one Cloud Router.
  • B. Use HA VPN. Configure one tunnel from each Interface of the VPN gateway to connect to the corresponding interfaces on the peer gateway on-premises. Configure one Cloud Router and enable global routing in the VPC.
  • C. Use one Dedicated Interconnect connection in a single metropolitan area. Configure one Cloud Router and enable global routing in the VPC.
  • D. Use two Dedicated Interconnect connections in a single metropolitan area. Configure one Cloud Router and enable global routing in the VPC.
Answer: B
Explanation:
For Dedicated Interconnects: At least four Dedicated Interconnect connections, two connections in one metropolitan area (metro) and two connections in another metro. Connections that are in the same metro must be placed in different edge availability domains (metro availability zones) to achieve 99.99% availability.
For HA VPN:
HA VPN to peer VPN gateways Connect an HA VPN gateway to one or two separate peer VPN devices
99.99%
HA VPN between two Google Cloud networks Connect two Google Cloud VPC networks in a single region by using an HA VPN gateway in each network 99.99%

NEW QUESTION # 109
Your company's current network architecture has three VPC Service Controls perimeters:
One perimeter (PERIMETER_PROD) to protect production storage buckets
One perimeter (PERIMETER_NONPROD) to protect non-production storage buckets One perimeter (PERIMETER_VPC) that contains a single VPC (VPC_ONE) In this single VPC (VPC_ONE), the IP_RANGE_PROD is dedicated to the subnets of the production workloads, and the IP_RANGE_NONPROD is dedicated to subnets of non-production workloads. Workloads cannot be created outside those two ranges. You need to ensure that production workloads can access only production storage buckets and non-production workloads can access only non-production storage buckets with minimal setup effort. What should you do?
  • A. Develop a design that removes the PERIMETER_VPC perimeter. Update the PERIMETER_NONPROD perimeter to include the project containing VPC_ONE. Remove the PERIMETER_PROD perimeter.
  • B. Develop a design that removes the PERIMETER_VPC perimeter. Update the PERIMETER_PROD perimeter to include the project containing VPC_ONE. Remove the PERIMETER_NONPROD perimeter.
  • C. Develop a design that creates a new VPC (VPC_NONPROD) in the same project as VPC_ONE. Migrate all the non-production workloads from VPC_ONE to the PERIMETER_NONPROD perimeter. Remove the PERIMETER_VPC perimeter. Update the PERIMETER_PROD perimeter to include VPC_ONE and the PERIMETER_NONPROD perimeter to include VPC_NONPROD.
  • D. Develop a design that uses the IP_RANGE_PROD and IP_RANGE_NONPROD perimeters to create two access levels, with each access level referencing a single range. Create two ingress access policies with each access policy referencing one of the two access levels. Update the PERIMETER_PROD and PERIMETER_NONPROD perimeters.
Answer: D
Explanation:
Using IP range-based access levels for VPC Service Controls allows segmentation of production and non-production resources within the same VPC. By creating separate access levels and ingress policies for each IP range, you ensure that only production subnets access production buckets and non-production subnets access non-production buckets, providing the required isolation.

NEW QUESTION # 110
You recently deployed Cloud VPN to connect your on-premises data canter to Google Cloud. You need to monitor the usage of this VPN and set up alerts in case traffic exceeds the maximum allowed. You need to be able to quickly decide whether to add extra links or move to a Dedicated Interconnect. What should you do?
  • A. In the Network Intelligence Canter, check for the number of packet drops on the VPN.
  • B. In the Monitoring section of the Google Cloud Console, use the Dashboard section to select a default dashboard for VPN usage.
  • C. In the VPN section of the Google Cloud Console, select the VPN under hybrid connectivity, and then select monitoring to display utilization on the dashboard.
  • D. In the Google Cloud Console, use Monitoring Query Language to create a custom alert for bandwidth utilization.
Answer: A

NEW QUESTION # 111
You have the following routing design. You discover that Compute Engine instances in Subnet-2 in the asia-southeast1 region cannot communicate with compute resources on-premises. What should you do?

  • A. Change the VPC dynamic routing mode to Global.
  • B. Configure a custom route advertisement on the Cloud Router.
  • C. Enable IP forwarding in the asia-southeast1 region.
  • D. Add a second Border Gateway Protocol (BGP) session to the Cloud Router.
Answer: A

NEW QUESTION # 112
Your organization recently re-architected your cloud environment to use Network Connectivity Center. However, an error occurred when you tried to add a new VPC named vpc-dev as a spoke. The error indicated that there was an issue with an existing spoke and the IP space of a VPC named vpc-pre-prod. You must complete the migration quickly and efficiently. What should you do?
  • A. Remove the conflicting VPC spoke for vpc-pre-prod from the set of VPC spokes in Network Connectivity Center. Add the VPC spoke for vpc-dev. Add the previously removed vpc-pre-prod as a VPC spoke.
  • B. Exclude the conflicting IP range by using the --exclude-export-ranges flag in the hub when attaching the VPC spoke for vpc-dev.
  • C. Exclude the conflicting IP range by using the --exclude-export-ranges flag when creating the VPC spoke for vpc-dev.
  • D. Delete the VMs associated with the conflicting subnets, then delete the conflicting subnets in vpc-dev. Recreate the subnets with a new IP range and redeploy the previously deleted VMs in the new subnets. Add the VPC spoke for vpc-dev.
Answer: A
Explanation:
The most efficient way to resolve the conflict is to temporarily remove the conflicting vpc-pre-prod spoke, add the vpc-dev spoke, and then re-add vpc-pre-prod. This ensures that the migration happens quickly without the need to change IP ranges or delete resources.

NEW QUESTION # 113
......
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