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Google Professional-Cloud-Network-Engineer certification is an excellent way for IT professionals to demonstrate their expertise in cloud networking technologies and their ability to work with the Google Cloud Platform. Google Cloud Certified - Professional Cloud Network Engineer certification is valuable for those seeking to advance their careers in cloud networking or those looking to enhance their knowledge and skills in this area. Google Cloud Certified - Professional Cloud Network Engineer certification is also an excellent way for organizations to identify qualified candidates for cloud networking positions and to ensure their workforce has the necessary skills and knowledge to manage cloud networks effectively.
The Google Professional-Cloud-Network-Engineer Exam covers a wide range of topics including network design, network security, network monitoring and optimization, and network troubleshooting. It also requires candidates to have a good understanding of Google Cloud Platform services such as VPCs, Cloud VPNs, and Cloud Load Balancing.
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Google Cloud Certified - Professional Cloud Network Engineer Sample Questions (Q21-Q26):NEW QUESTION # 21
You are disabling DNSSEC for one of your Cloud DNS-managed zones. You removed the DS records from your zone file, waited for them to expire from the cache, and disabled DNSSEC for the zone. You receive reports that DNSSEC validating resolves are unable to resolve names in your zone.
What should you do?
  • A. Set the zone to the TRANSFER state.
  • B. Disable DNSSEC at your domain registrar.
  • C. Transfer ownership of the domain to a new registrar.
  • D. Update the TTL for the zone.
Answer: B
Explanation:
Before disabling DNSSEC for a managed zone you want to use, you must deactivate DNSSEC at your domain registrar to ensure that DNSSEC-validating resolvers can still resolve names in the zone.
Reference: https://cloud.google.com/dns/docs/dnssec-config

NEW QUESTION # 22
You need to configure a Google Kubernetes Engine (GKE) cluster. The initial deployment should have 5 nodes with the potential to scale to 10 nodes. The maximum number of Pods per node is 8. The number of services could grow from 100 to up to 1024. How should you design the IP schema to optimally meet this requirement?
  • A. Configure a /28 primary IP address range for the node IP addresses. Configure a (25 secondary IP range for the Pods. Configure a /22 secondary IP range for the Services.
  • B. Configure a /28 primary IP address range for the node IP addresses. Configure a /24 secondary IP range for the Pads. Configure a /22 secondary IP range for the Services.
  • C. Configure a /28 primary IP address range for the node IP addresses. Configure a /28 secondary IP range for the Pods. Configure a /21 secondary IP range for the Services.
  • D. Configure a /28 primary IP address range for the node IP addresses. Configure a /25 secondary IP range for the Pods. Configure a /21 secondary IP range for the Services.
Answer: A

NEW QUESTION # 23
You are designing a shared VPC architecture. Your network and security team has strict controls over which routes are exposed between departments. Your Production and Staging departments can communicate with each other, but only via specific networks. You want to follow Google-recommended practices.
How should you design this topology?
  • A. Create 2 shared VPCs within the shared VPC Host Project, and create a Cloud VPN/Cloud Router between them. Use Flexible Route Advertisement (FRA) to filter access between the specific networks.
  • B. Create 2 shared VPCs within the shared VPC Host Project, and enable VPC peering between them. Use firewall rules to filter access between the specific networks.
  • C. Create 1 VPC within the shared VPC Host Project, and share individual subnets with the Service Projects to filter access between the specific networks.
  • D. Create 2 shared VPCs within the shared VPC Service Project, and create a Cloud VPN/Cloud Router between them. Use Flexible Route Advertisement (FRA) to filter access between the specific networks.
Answer: C
Explanation:
Explanation/Reference: https://cloud.google.com/vpc/docs/shared-vpc

NEW QUESTION # 24
You have the following Shared VPC design VPC Flow Logs is configured for Subnet-1 In the host VPC. You also want to monitor flow logs for Subnet-2. What should you do?

  • A. Configure a firewall rule to permit Subnet-2 IP addresses outbound in the host protect VPC.
  • B. Configure Packet Mirroring in both the host and service project VPCs.
  • C. Configure a VPC Flow Logs filter for Subnet-2 in the host project VPC.
  • D. Configure VPC Flow Logs in the service project VPC for Subnet-2.

NEW QUESTION # 26
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