TOP ACTUAL PROFESSIONAL-CLOUD-NETWORK-ENGINEER TEST PDF | VALID GOOGLE PROFESSIONAL-CLOUD-NETWORK-ENGINEER: GOOGLE CLOUD CERTIFIED - PROFESSIONAL CLOUD NETWORK ENGINEER 100% PASS

Top Actual Professional-Cloud-Network-Engineer Test Pdf | Valid Google Professional-Cloud-Network-Engineer: Google Cloud Certified - Professional Cloud Network Engineer 100% Pass

Top Actual Professional-Cloud-Network-Engineer Test Pdf | Valid Google Professional-Cloud-Network-Engineer: Google Cloud Certified - Professional Cloud Network Engineer 100% Pass

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Google Cloud Certified - Professional Cloud Network Engineer Sample Questions (Q13-Q18):

NEW QUESTION # 13
You have recently been put in charge of managing identity and access management for your organization. You have several projects and want to use scripting and automation wherever possible. You want to grant the editor role to a project member.
Which two methods can you use to accomplish this? (Choose two.)

  • A. gcloud projects add-iam-policy-binding Sprojectname --member user:Susername --role roles/editor
  • B. gcloud pubsub add-iam-policy-binding Sprojectname --member user:Susername -- role roles/editor
  • C. setIamPolicy() via REST API
  • D. GetIamPolicy() via REST API
  • E. Enter an email address in the Add members field, and select the desired role from the drop-down menu in the GCP Console.

Answer: A,E

Explanation:
https://cloud.google.com/iam/docs/granting-changing-revoking-access


NEW QUESTION # 14
Your company has 10 separate Virtual Private Cloud (VPC) networks, with one VPC per project in a single region in Google Cloud. Your security team requires each VPC network to have private connectivity to the main on-premises location via a Partner Interconnect connection in the same region. To optimize cost and operations, the same connectivity must be shared with all projects. You must ensure that all traffic between different projects, on-premises locations, and the internet can be inspected using the same third-party appliances. What should you do?

  • A. Consolidate all existing projects' subnetworks into a single VPC. Create separate VPC networks for on-premises and internet connectivity. Configure the third-party appliances with multiple interfaces, with each interface connected to a separate VPC network. Create the relevant routes on the third-party appliances and VPC networks.
  • B. Configure the third-party appliances with multiple interfaces and specific Partner Interconnect VLAN attachments per project. Create the relevant routes on the third-party appliances and VPC networks.
  • C. Configure the third-party appliances with multiple interfaces. Create a hub VPC network for all projects, and create separate VPC networks for on-premises and internet connectivity. Create the relevant routes on the third-party appliances and VPC networks. Use VPC Network Peering to connect all projects' VPC networks to the hub VPC. Export custom routes from the hub VPC and import on all projects' VPC networks.
  • D. Configure the third-party appliances with multiple interfaces, with each interface connected to a separate VPC network. Create separate VPC networks for on- premises and internet connectivity. Create the relevant routes on the third-party appliances and VPC networks.

Answer: C


NEW QUESTION # 15
You are designing an IP address scheme for new private Google Kubernetes Engine (GKE) clusters, Due to IP address exhaustion of the RFC 1918 address space in your enterprise, you plan to use privately used public IP space for the new dusters. You want to follow Google-recommended practices, What should you do after designing your IP scheme?

  • A. Create privately used public IP primary and secondary subnet ranges for the clusters. Create a private GKE cluster With the following options selected: --enab1e-ip-a1ias and --enable-private-nodes.
  • B. Create the minimum usable RFC 1918 primary and secondary subnet IP ranges for the clusters Re-use the secondary address range for the services across multiple private GKE clusters.
  • C. Create privately used public IP primary and secondary subnet ranges for the clusters. Create a private GKE cluster with the following options selected and - siable-default-snat, --enable-ip-alias, and - enable-private-nodes
  • D. Create the minimum usable RFC 1918 primary and secondary subnet IP ranges for the clusters. Re-use the secondary address range for the pods across multiple private GKE clusters.

Answer: C

Explanation:
The correct answer is D. Create privately used public IP primary and secondary subnet ranges for the clusters.
Create a private GKE cluster with the following options selected: --disable-default-snat, --enable-ip-alias, and
--enable-private-nodes.
This answer is based on the following facts:
* Privately used public IP (PUPI) addresses are any public IP addresses not owned by Google that a customer can use privately on Google Cloud1. You can use PUPI addresses for GKE pods and services in private clusters to mitigate address exhaustion.
* A private GKE cluster is a cluster that has no public IP addresses on the nodes2. You can use private clusters to isolate your workloads from the public internet and enhance security.
* The --disable-default-snat option disables source network address translation (SNAT) for the cluster3.
This option allows you to use PUPI addresses without conflicting with other public IP addresses on the internet.
* The --enable-ip-alias option enables alias IP ranges for the cluster4. This option allows you to use separate subnet ranges for nodes, pods, and services, and to specify the size of those ranges.
* The --enable-private-nodes option enables private nodes for the cluster5. This option ensures that the nodes have no public IP addresses and can only communicate with other Google Cloud resources in the same VPC network or peered networks.
The other options are not correct because:
* Option A is not suitable. Creating RFC 1918 primary and secondary subnet IP ranges for the clusters does not solve the problem of address exhaustion. Re-using the secondary address range for pods across multiple private GKE clusters can cause IP conflicts and routing issues.
* Option B is also not suitable. Creating RFC 1918 primary and secondary subnet IP ranges for the clusters does not solve the problem of address exhaustion. Re-using the secondary address range for services across multiple private GKE clusters can cause IP conflicts and routing issues.
* Option C is not feasible. Creating privately used public IP primary and secondary subnet ranges for the clusters is a valid step, but creating a private GKE cluster with only --enable-ip-alias and --enable- private-nodes options is not enough. You also need to disable default SNAT to avoid IP conflicts with other public IP addresses on the internet.


NEW QUESTION # 16
You are using the gcloud command line tool to create a new custom role in a project by coping a predefined role. You receive this error message:
INVALID_ARGUMENT: Permission resourcemanager.projects.list is not valid What should you do?

  • A. Add the resourcemanager.projects.setIamPolicy permission, and try again.
  • B. Try again with a different role with a new name but the same permissions.
  • C. Remove the resourcemanager.projects.list permission, and try again.
  • D. Add the resourcemanager.projects.get permission, and try again.

Answer: C

Explanation:
Reference:
https://cloud.google.com/iam/docs/understanding-custom-roles


NEW QUESTION # 17
Your team deployed two applications in GKE that are exposed through an external Application Load Balancer. When queries are sent to www.mountkirkgames.com/sales and www.mountkirkgames.com/get-an- analysis, the correct pages are displayed. However, you have received complaints that www.mountkirkgames.
com yields a 404 error. You need to resolve this error. What should you do?

  • A. Review the Service YAML file. Define a default backend. Reapply the YAML.
  • B. Review the Ingress YAML file. Define the default backend. Reapply the YAML.
  • C. Review the Service YAML file. Add a new path rule for the * character that directs to the base service.
    Reapply the YAML.
  • D. Review the Ingress YAML file. Add a new path rule for the * character that directs to the base service.
    Reapply the YAML.

Answer: B

Explanation:
Explanation: The 404 error is occurring because there is no default backend defined for requests to the root URL. Defining the default backend in the Ingress YAML file ensures that requests to www.mountkirkgames.
com are routed to the correct service.


NEW QUESTION # 18
......

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