PROFESSIONAL-CLOUD-NETWORK-ENGINEER PREPARATION - PASS4SURE PROFESSIONAL-CLOUD-NETWORK-ENGINEER PASS GUIDE

Professional-Cloud-Network-Engineer Preparation - Pass4sure Professional-Cloud-Network-Engineer Pass Guide

Professional-Cloud-Network-Engineer Preparation - Pass4sure Professional-Cloud-Network-Engineer Pass Guide

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Google Professional-Cloud-Network-Engineer Exam is a certification test designed for individuals who want to demonstrate their skills and knowledge in designing, implementing, and managing complex network architectures on the Google Cloud Platform. Google Cloud Certified - Professional Cloud Network Engineer certification exam is intended for network professionals who want to validate their expertise in building and managing secure, scalable, and high-performance networks on the Google Cloud Platform.

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Google Cloud Certified - Professional Cloud Network Engineer Sample Questions (Q185-Q190):

NEW QUESTION # 185
You work for a university that is migrating to GCP.
These are the cloud requirements:
* On-premises connectivity with 10 Gbps
* Lowest latency access to the cloud
* Centralized Networking Administration Team
New departments are asking for on-premises connectivity to their projects. You want to deploy the most cost-efficient interconnect solution for connecting the campus to Google Cloud.
What should you do?

  • A. Use standalone projects, and deploy the VLAN attachments in the individual projects. Connect the VLAN attachment to the standalone projects' Interconnects.
  • B. Use Shared VPC, and deploy the VLAN attachments and Interconnect in the host project.
  • C. Use standalone projects and deploy the VLAN attachments and Interconnects in each of the individual projects.
  • D. Use Shared VPC, and deploy the VLAN attachments in the service projects. Connect the VLAN attachment to the Shared VPC's host project.

Answer: D


NEW QUESTION # 186
Your company's logo is published as an image file across multiple websites that are hosted by your company You have implemented Cloud CDN, however, you want to improve the performance of the cache hit ratio associated with this image file. What should you do?

  • A. Configure versioned IJRLs for each domain to serve users the *mage file before the cache entry expires
  • B. Configure Cloud Storage as a custom origin backend to host the image file, and select multi-region as the location type
  • C. Configure custom cache keys for the backend service that holds the image file, and clear the Host and Protocol checkboxes-
  • D. Configure the default time to live (TTL) as O for the image file.

Answer: C

Explanation:
This answer meets the requirement of improving the performance of the cache hit ratio associated with the image file. The reason is:
Custom cache keys allow you to control which parts of the request URL are used to build the cache key. The cache key is a unique identifier that Cloud CDN uses to store and retrieve cached content1.
By default, Cloud CDN uses the complete request URL, including the protocol (http or https) and the host (the domain name), to build the cache key. This means that if the same image file is requested from different domains or protocols, Cloud CDN will cache multiple copies of it, which reduces the cache hit ratio1.
By clearing the Host and Protocol checkboxes, you can tell Cloud CDN to ignore these parts of the request URL when building the cache key. This way, Cloud CDN will cache only one copy of the image file, regardless of which domain or protocol it is requested from, which improves the cache hit ratio1.
Option B is incorrect because configuring Cloud Storage as a custom origin backend does not affect the cache hit ratio. It only affects how Cloud CDN retrieves the content from the origin if it is not cached. Option C is incorrect because configuring versioned URLs for each domain does not improve the cache hit ratio. It actually worsens it, because it creates more variations of the request URL that Cloud CDN has to cache separately. Option D is incorrect because configuring the default TTL as 0 for the image file means that Cloud CDN will not cache it at all, which defeats the purpose of using Cloud CDN.
Reference:
Custom cache keys | Cloud CDN | Google Cloud


NEW QUESTION # 187
Your company runs an enterprise platform on-premises using virtual machines (VMS). Your internet customers have created tens of thousands of DNS domains panting to your public IP addresses allocated to the Vtvls Typically, your customers hard-code your IP addresses In their DNS records You are now planning to migrate the platform to Compute Engine and you want to use Bring your Own IP you want to minimize disruption to the Platform What Should you d0?

  • A. Create a VPC and request static external IP addresses from Google Cloud Assagn the IP addresses to the Compute Engine instances. Notify your customers of the new IP addresses so they can update their DNS
  • B. Create a VPC With the same IP address range as your on-premises network Asson the IP addresses to the Compute Engine Instances.
  • C. Verify ownership of your IP addresses. After the verification, Google Cloud advertises and provisions the IP prefix for you_ Assign the IP addresses to the Compute Engine Instances
  • D. Verify ownership of your IP addresses. Use live migration to import the prefix Assign the IP addresses to Compute Engine instances.

Answer: D

Explanation:
The correct answer is D because it allows you to use your own public IP addresses in Google Cloud without disrupting the platform or requiring your customers to update their DNS records. Option A is incorrect because it involves changing the IP addresses and notifying the customers, which can cause disruption and errors. Option B is incorrect because it does not use live migration, which is a feature that lets you control when Google starts advertising routes for your prefix. Option C is incorrect because it does not involve bringing your own IP addresses, but rather using Google-provided IP addresses.
Reference:
Bring your own IP addresses
Professional Cloud Network Engineer Exam Guide
Bring your own IP addresses (BYOIP) to Azure with Custom IP Prefix


NEW QUESTION # 188
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. 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.
  • D. 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.

Answer: D

Explanation:
Explanation/Reference: https://link.springer.com/chapter/10.1007/978-1-4842-1004-8_4


NEW QUESTION # 189
You need to create a GKE cluster in an existing VPC that is accessible from on-premises. You must meet the following requirements:
* IP ranges for pods and services must be as small as possible.
* The nodes and the master must not be reachable from the internet.
* You must be able to use kubectl commands from on-premises subnets to manage the cluster.
How should you create the GKE cluster?

  • A. * Create a VPC-native GKE cluster using user-managed IP ranges.
    * Enable a GKE cluster network policy, set the pod and service ranges as /24.
    * Set up a network proxy to access the master.
    * Enable master authorized networks.
  • B. * Create a VPC-native GKE cluster using user-managed IP ranges.
    * Enable privateEndpoint on the cluster master.
    * Set the pod and service ranges as /24.
    * Set up a network proxy to access the master.
    * Enable master authorized networks.
  • C. * Create a private cluster that uses VPC advanced routes.
    * Set the pod and service ranges as /24.
    * Set up a network proxy to access the master.
  • D. * Create a VPC-native GKE cluster using GKE-managed IP ranges.
    * Set the pod IP range as /21 and service IP range as /24.
    * Set up a network proxy to access the master.

Answer: A

Explanation:
Explanation/Reference: https://cloud.google.com/kubernetes-engine/docs/how-to/alias-ips


NEW QUESTION # 190
......

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