Professional-Cloud-Network-Engineer Actual Dump & Latest Professional-Cloud-Network-Engineer Braindumps Files

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Evaluation and Its Structure

The Google Professional Cloud Network Engineer exam includes both multiple-choice and multiple-answer inquiries. The vendor doesn’t give details on the number of questions that the candidates will need to respond to. Still, it mentions that the allotted time for each candidate to accomplish the actual test will be 2 hours. Besides, the exam-takers will have to pay an enrollment fee of $200 plus any applicable tax that might be necessary. In addition, such an exam is available in the English language only. As for the delivery mode, the candidates can take the proctored exam online. Still, they should first check the testing requirements and make sure they comply with them for a smooth exam process. The second option would be to take the official validation in a test center so the exam-takers should check the closest testing center to their current location. When it comes to the prerequisites, Google doesn’t mention any specific conditions. However, as it was highlighted above, the vendor recommends that candidates have a minimum of 3 years of experience in the industry. During this period, they should have also gathered at least 1 year of experience in using GCP for solution management and design.

Google Professional-Cloud-Network-Engineer Certification Exam is designed to validate the skills and expertise of network engineers who work with Google Cloud Platform. Professional-Cloud-Network-Engineer exam tests the candidate's ability to design, implement, and manage secure, scalable, and highly available networks that meet the needs of a modern cloud-based infrastructure. Google Cloud Certified - Professional Cloud Network Engineer certification is intended for professionals who have experience in network engineering and are looking to enhance their skills in cloud networking.

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PDFBraindumps online digital Google Professional-Cloud-Network-Engineer exam questions are the best way to prepare. Using our Google Professional-Cloud-Network-Engineer exam dumps, you will not have to worry about whatever topics you need to master. To practice for a Google Professional-Cloud-Network-Engineer Certification Exam in the PDFBraindumps (free test), you should perform a self-assessment. The Professional-Cloud-Network-Engineer practice test PDFBraindumps keeps track of each previous attempt and highlights the improvements with each attempt.

Conclusion

Your chances to pass the Google Professional Cloud Network Engineer certification exam are higher if you follow an organized training routine. Thus, you can choose from different preparation resources found online. For example, you can start with the learning path provided by Google and get exposed to different areas dedicated to the Google Cloud platform and network processes. Also, you can complete your knowledge with the study guides and books available on Amazon. In all, with the comprehensive materials, we’ve covered above, you’ll easily clear the upcoming validation.

Google Cloud Certified - Professional Cloud Network Engineer Sample Questions (Q151-Q156):

NEW QUESTION # 151
You are migrating a three-tier application architecture from on-premises to Google Cloud. As a first step in the migration, you want to create a new Virtual Private Cloud (VPC) with an external HTTP(S) load balancer. This load balancer will forward traffic back to the on-premises compute resources that run the presentation tier. You need to stop malicious traffic from entering your VPC and consuming resources at the edge, so you must configure this policy to filter IP addresses and stop cross-site scripting (XSS) attacks. What should you do?

  • A. Create a VPC firewall ruleset, and apply it to all instances in unmanaged instance groups.
  • B. Create a hierarchical firewall ruleset, and apply it to the VPC's parent organization resource node.
  • C. Create a Google Cloud Armor policy, and apply it to a backend service that uses an unmanaged instance group backend.
  • D. Create a Google Cloud Armor policy, and apply it to a backend service that uses an internet network endpoint group (NEG) backend.

Answer: D


NEW QUESTION # 152
You are designing a new application that has backends internally exposed on port 800. The application will be exposed externally using both IPv4 and IPv6 via TCP on port 700. You want to ensure high availability for this application. What should you do?

  • A. Create a TCP proxy that uses backend services containing an instance group with two instances.
  • B. Create a network load balancer that uses a target pool backend with two instances.
  • C. Create a TCP proxy that uses a zonal network endpoint group containing one instance.
  • D. Create a network load balancer that used backend services containing one instance group with two instances.

Answer: A


NEW QUESTION # 153
You are planning a large application deployment in Google Cloud that includes on-premises connectivity. The application requires direct connectivity between workloads in all regions and on-premises locations without address translation, but all RFC 1918 ranges are already in use in the on-premises locations. What should you do?

  • A. Use non-RFC 1918 ranges with a single global VPC.
  • B. Use overlapping RFC 1918 ranges with multiple isolated VPC networks.
  • C. Use overlapping RFC 1918 ranges with multiple isolated VPC networks and Cloud NAT.
  • D. Use multiple VPC networks with a transit network using VPC Network Peering.

Answer: A


NEW QUESTION # 154
You have the networking configuration shown in the diagram. A pair of redundant Dedicated Interconnect connections (int-Igal and int-Iga2) terminate on the same Cloud Router The Interconnect connections terminate on two separate on-premises routers. You are advertising the same prefixes from the Border Gateway Protocol (BGP) sessions associated with the Dedicated Interconnect connections. You need to configure one connection as Active for both ingress and egress traffic. If the active Interconnect connection fails, you want the passive Interconnect connection to automatically begin routing all traffic Which two actions should you take to meet this requirement? (Choose Two)

  • A. Configure the advertised route priority as 200 for the BGP session associated With the passive Interconnect connection.
  • B. Advertise a lower MED on the passive Interconnect connection from the on-premises router
  • C. Advertise a lower MED on the active Interconnect connection from the on-premises router
  • D. Configure the advertised route priority > 10,200 on the active Interconnect connection.
  • E. Configure the advertised route priority as 200 for the BGP session associated Wlth the active Interconnect connection.

Answer: C,E

Explanation:
This answer meets the requirement of configuring one connection as Active for both ingress and egress traffic, and enabling automatic failover to the passive connection in case of failure. The reason is:
The advertised route priority is a value that Cloud Router uses to set the route priority when advertising routes to your on-premises router. The lower the value, the higher the priority1. By setting the advertised route priority as 200 for the active connection, you ensure that it has a higher priority than the passive connection, which has the default value of 1001. This way, your on-premises router will prefer the routes from the active connection over the passive one for ingress traffic.
The MED (Multi-Exit Discriminator) is a value that your on-premises router uses to indicate its preference for receiving traffic from Cloud Router. The lower the value, the higher the preference2. By advertising a lower MED on the active connection from your on-premises router, you ensure that Cloud Router will prefer sending traffic to the active connection over the passive one for egress traffic.
If the active connection fails, Cloud Router will stop receiving routes from it and will start using the routes from the passive connection for egress traffic. Similarly, your on-premises router will stop receiving routes with priority 200 from the active connection and will start using the routes with priority 100 from the passive connection for ingress traffic. This achieves automatic failover without any manual intervention.
Option A is incorrect because setting the advertised route priority > 10,200 on the active connection would deprioritize it globally in your VPC network, which is not what you want1. Option B is incorrect because advertising a lower MED on the passive connection would make Cloud Router prefer sending traffic to it over the active one, which is not what you want2. Option D is incorrect because setting the advertised route priority as 200 for both connections would make them equally preferred by your on-premises router, which is not what you want1.
Reference:
Update the base route priority | Cloud Router | Google Cloud
Configuring BGP sessions | Cloud Router | Google Cloud


NEW QUESTION # 155
Your company's web server administrator is migrating on-premises backend servers for an application to GCP. Libraries and configurations differ significantly across these backend servers. The migration to GCP will be lift-and-shift, and all requests to the servers will be served by a single network load balancer frontend. You want to use a GCP-native solution when possible.
How should you deploy this service in GCP?

  • A. Use GCP's ECMP capability to load-balance traffic to the backend servers by installing multiple equal-priority static routes to the backend servers.
  • B. Create a target pool, add all backend instances to this target pool, and deploy the target pool behind your load balancer.
  • C. Create a managed instance group from one of the images of the on-premises servers, and link this instance group to a target pool behind your load balancer.
  • D. Deploy a third-party virtual appliance as frontend to these servers that will accommodate the significant differences between these backend servers.

Answer: B


NEW QUESTION # 156
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