PROFESSIONAL-CLOUD-NETWORK-ENGINEER EXAM BRAINDUMPS: GOOGLE CLOUD CERTIFIED - PROFESSIONAL CLOUD NETWORK ENGINEER & PROFESSIONAL-CLOUD-NETWORK-ENGINEER DUMPS GUIDE

Professional-Cloud-Network-Engineer Exam Braindumps: Google Cloud Certified - Professional Cloud Network Engineer & Professional-Cloud-Network-Engineer Dumps Guide

Professional-Cloud-Network-Engineer Exam Braindumps: Google Cloud Certified - Professional Cloud Network Engineer & Professional-Cloud-Network-Engineer Dumps Guide

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Earning the Google Professional-Cloud-Network-Engineer certification can open up many career opportunities for individuals in the field of cloud networking. Google Cloud Certified - Professional Cloud Network Engineer certification recognizes the skills and knowledge of professionals who can design, implement, and manage cloud network solutions. It can also help individuals differentiate themselves in a competitive job market and demonstrate their expertise to potential employers. Overall, the Google Professional-Cloud-Network-Engineer Exam is a valuable certification for anyone who wants to advance their career in cloud networking.

The Google Professional-Cloud-Network-Engineer exam tests candidates on their knowledge of various networking concepts, such as routing, switching, load balancing, and network security. It also covers topics such as virtual private clouds, hybrid connectivity, and network monitoring and optimization. The Google Professional-Cloud-Network-Engineer Certification is designed to help candidates showcase their expertise in designing and implementing robust and scalable network solutions on the Google Cloud Platform.

To be eligible for the Professional-Cloud-Network-Engineer exam, candidates must have experience in designing and implementing complex network solutions on the Google Cloud Platform. They should also be familiar with various network protocols and technologies such as TCP/IP, BGP, OSPF, MPLS, and VPN. Google recommends that candidates have at least three years of experience in network engineering and a basic understanding of cloud computing concepts.

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Google Cloud Certified - Professional Cloud Network Engineer Sample Questions (Q53-Q58):

NEW QUESTION # 53
You are deploying a global external TCP load balancing solution and want to preserve the source IP address of the original layer 3 payload.
Which type of load balancer should you use?

  • A. Network load balancer
  • B. Internal load balancer
  • C. HTTP(S) load balancer
  • D. TCP/SSL proxy load balancer

Answer: A

Explanation:
Reference:
https://cloud.google.com/load-balancing/docs/network


NEW QUESTION # 54
You want to deploy a VPN Gateway to connect your on-premises network to GCP. You are using a non BGP-capable on-premises VPN device. You want to minimize downtime and operational overhead when your network grows. The device supports only IKEv2, and you want to follow Google-recommended practices.
What should you do?

  • A. * Create a Cloud VPN instance.* Create a route-based VPN tunnel.* Configure the appropriate local and remote traffic selectors to match your local and remote networks.* Configure the appropriate static routes.
  • B. * Create a Cloud VPN instance.* Create a route-based VPN tunnel.* Configure the appropriate local and remote traffic selectors to 0.0.0.0/0.* Configure the appropriate static routes.
  • C. * Create a Cloud VPN instance.* Create a policy-based VPN tunnel per subnet.* Configure the appropriate local and remote traffic selectors to match your local and remote networks.* Create the appropriate static routes.
  • D. * Create a Cloud VPN instance.* Create a policy-based VPN tunnel.* Configure the appropriate local and remote traffic selectors to match your local and remote networks.* Configure the appropriate static routes.

Answer: D

Explanation:
https://cloud.google.com/network-connectivity/docs/vpn/how-to/creating-static-vpns#creating_a_gateway_and_tunnel


NEW QUESTION # 55
Your organization uses a hub-and-spoke architecture with critical Compute Engine instances in your Virtual Private Clouds (VPCs). You are responsible for the design of Cloud DNS in Google Cloud. You need to be able to resolve Cloud DNS private zones from your on-premises data center and enable on-premises name resolution from your hub-and-spoke VPC design. What should you do?

  • A. Configure a private DNS zone in the hub VPC, and configure DNS forwarding to the on-premises server.
    Configure DNS peering from the spoke VPCs to the hub VPC.
  • B. Configure a DNS policy in the spoke VPCs, and configure your on-premises DNS as an alternate DNS server.
    Configure the hub VPC with a private zone, and set up DNS peering to each of the spoke VPCs.
  • C. Configure a DNS policy in the hub VPC to allow inbound query forwarding from the spoke VPCs.
    Configure the spoke VPCs with a private zone, and set up DNS peering to the hub VPC.
  • D. Configure a DNS policy in the hub VPC, and configure the on-premises DNS as an alternate DNS server.
    Configure the spoke VPCs with a private zone, and set up DNS peering to the hub VPC.

Answer: B


NEW QUESTION # 56
Your company has recently expanded their EMEA-based operations into APAC. Globally distributed users report that their SMTP and IMAP services are slow. Your company requires end-to-end encryption, but you do not have access to the SSL certificates.
Which Google Cloud load balancer should you use?

  • A. SSL proxy load balancer
  • B. HTTPS load balancer
  • C. Network load balancer
  • D. TCP proxy load balancer

Answer: A

Explanation:
https://cloud.google.com/security/encryption-in-transit/


NEW QUESTION # 57
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. 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.
  • 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. 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.

Answer: C


NEW QUESTION # 58
......

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