GCP Professional Cloud Network Engineer Certification Dumps
August 12,2020
Are you ready to take your Google Professional Cloud Network Engineer Certification Exam? Passcert GCP Professional Cloud Network Engineer Certification Dumps will help prepare you for the certification exam so you can get all exam objectives to pass your Professional Cloud Network Engineer Exam successfully.You are guaranteed to pass your Google Cloud Certified Professional Cloud Network Engineer Exam with ease on your first attempt.
Google Cloud Certified Professional Cloud Network Engineer Exam
The Google Certified Professional Cloud Network Engineer certification is designed for students with at least 1 year’s hands-on experience with the Google Cloud Platform. By leveraging experience implementing VPCs, hybrid connectivity, network services, and security for established network architectures, this individual ensures successful cloud implementations using the command line interface or the Google Cloud Platform Console.
Google Cloud Professional Cloud Network Engineer- Exam Information
Length: 2 hours
Registration fee: $200 (plus tax where applicable)
Languages: English.
Exam format: Multiple choice and multiple select, taken in person at a test center. Locate a test center near you.
Prerequisites: None
Recommended experience: 3+ years of industry experience including 1+ years designing and managing solutions using GCP.
Google Professional Cloud Network Engineer Certificate Exam Topics
The Professional Cloud Network Engineer exam assesses your ability to:
Design, plan, and prototype a GCP Network
Implement a GCP Virtual Private Cloud (VPC)
Configure network services
Implement hybrid interconnectivity
Implement network security
Share Google Professional Cloud Network Engineer Certification Free Demo
1.You need to restrict access to your Google Cloud load-balanced application so that only specific IP addresses can connect.
What should you do?
A. Create a secure perimeter using the Access Context Manager feature of VPC Service Controls and restrict access to the source IP range of the allowed clients and Google health check IP ranges.
B. Create a secure perimeter using VPC Service Controls, and mark the load balancer as a service restricted to the source IP range of the allowed clients and Google health check IP ranges.
C. Tag the backend instances "application," and create a firewall rule with target tag "application" and the source IP range of the allowed clients and Google health check IP ranges.
D. Label the backend instances "application," and create a firewall rule with the target label "application" and the source IP range of the allowed clients and Google health check IP ranges.
Answer: C
2.Your end users are located in close proximity to us-east1 and europe-west1. Their workloads need to communicate with each other. You want to minimize cost and increase network efficiency.
How should you design this topology?
A. Create 2 VPCs, each with their own regions and individual subnets. Create 2 VPN gateways to establish connectivity between these regions.
B. Create 2 VPCs, each with their own region and individual subnets. Use external IP addresses on the instances to establish connectivity between these regions.
C. Create 1 VPC with 2 regional subnets. Create a global load balancer to establish connectivity between the regions.
D. Create 1 VPC with 2 regional subnets. Deploy workloads in these subnets and have them communicate using private RFC1918 IP addresses.
Answer: D
3.Your organization is deploying a single project for 3 separate departments. Two of these departments require network connectivity between each other, but the third department should remain in isolation. Your design should create separate network administrative domains between these departments. You want to minimize operational overhead.
How should you design the topology?
A. Create a Shared VPC Host Project and the respective Service Projects for each of the 3 separate departments.
B. Create 3 separate VPCs, and use Cloud VPN to establish connectivity between the two appropriate VPCs.
C. Create 3 separate VPCs, and use VPC peering to establish connectivity between the two appropriate VPCs.
D. Create a single project, and deploy specific firewall rules. Use network tags to isolate access between the departments.
Answer: C
4.You are migrating to Cloud DNS and want to import your BIND zone file.
Which command should you use?
A. gcloud dns record-sets import ZONE_FILE --zone MANAGED_ZONE
B. gcloud dns record-sets import ZONE_FILE --replace-origin-ns --zoneMANAGED_ZONE
C. gcloud dns record-sets import ZONE_FILE --zone-file-format --zoneMANAGED_ZONE
D. gcloud dns record-sets import ZONE_FILE --delete-all-existing --zone MANAGEDZONE
Answer: C
5.You created a VPC network named Retail in auto mode. You want to create a VPC network named Distribution and peer it with the Retail VPC.
How should you configure the Distribution VPC?
A. Create the Distribution VPC in auto mode. Peer both the VPCs via network peering.
B. Create the Distribution VPC in custom mode. Use the CIDR range 10.0.0.0/9. Create the necessary subnets, and then peer them via network peering.
C. Create the Distribution VPC in custom mode. Use the CIDR range 10.128.0.0/9. Create the necessary subnets, and then peer them via network peering.
D. Rename the default VPC as "Distribution" and peer it via network peering.
Answer: B
6.You are using a third-party next-generation firewall to inspect traffic. You created a custom route of 0.0.0.0/0 to route egress traffic to the firewall. You want to allow your VPC instances without public IP addresses to access the BigQuery and Cloud Pub/Sub APIs, without sending the traffic through the firewall.
Which two actions should you take? (Choose two.)
A. Turn on Private Google Access at the subnet level.
B. Turn on Private Google Access at the VPC level.
C. Turn on Private Services Access at the VPC level.
D. Create a set of custom static routes to send traffic to the external IP addresses of Google APIs and services via the default internet gateway.
E. Create a set of custom static routes to send traffic to the internal IP addresses of Google APIs and services via the default internet gateway.
Answer: AD
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