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Google Professional-Cloud-Network-Engineer Exam is designed to test the skills and knowledge of professionals who specialize in designing, implementing and managing network solutions in the Google Cloud Platform. Google Cloud Certified - Professional Cloud Network Engineer certification is ideal for network engineers, network architects, and anyone who wants to demonstrate their expertise in networking in the cloud.
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Google Cloud Certified - Professional Cloud Network Engineer Sample Questions (Q219-Q224):
NEW QUESTION # 219
You have the networking configuration shown. In the diagram Two VLAN attachments associated With two Dedicated Interconnect connections terminate on the same Cloud Router (mycloudrouter). The Interconnect connections terminate on two separate on-premises routers. You advertise the same prefixes from the Border Gateway Protocol (BOP) sessions associated with each Of the VLAN attachments.
You notice an asymmetric traffic flow between the two Interconnect connections. Which of the following actions should you take to troubleshoot the asymmetric traffic flow?
- A. From the Cloud CLI, run gcloud compute -protect_ID router get-status mycloudrouter --region REGION and review the results.
- B. From the Cloud CLI. run gcloud compute routers describe mycloudrouter
--region REGION and review the results - C. From the Google Cloud console, navigate to the Hybrid Connectivity select the Cloud Router, and view BGP sessions.
- D. From the Google Cloud console, navigate to Cloud Logging to view VPC Flow Logs and review the results
Answer: C
Explanation:
The correct answer is B. From the Cloud CLI, run gcloud compute --project_ID router get-status mycloudrouter --region REGION and review the results.
This command will show you the BGP session status, the advertised and learned routes, and the last error for each VLAN attachment. You can use this information to troubleshoot the asymmetric traffic flow and identify any issues with the BGP configuration or the Interconnect connections.
The other options are not correct because:
* Option A will only show you the BGP session status, but not the advertised and learned routes or the last error for each VLAN attachment.
* Option C will only show you the VPC Flow Logs, which are useful for monitoring and troubleshooting network performance and security issues within your VPC network, but not for your Interconnect connections.
* Option D will only show you the basic information about the Cloud Router, such as its name, region, network, and BGP settings, but not the detailed status of each VLAN attachment.
NEW QUESTION # 220
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. Internal load balancer
- B. Network load balancer
- C. HTTP(S) load balancer
- D. TCP/SSL proxy load balancer
Answer: B
Explanation:
Reference:
https://cloud.google.com/load-balancing/docs/network
NEW QUESTION # 221
Your organization recently created a sandbox environment for a new cloud deployment. To have parity with the production environment, a pair of Compute Engine instances with multiple network interfaces (NICs) were deployed. These Compute Engine instances have a NIC in the Untrusted VPC (10.0.0.0/23) and a NIC in the Trusted VPC (10.128.0.0/9). A HA VPN tunnel has been established to the on-premises environment from the Untrusted VPC. Through this pair of VPN tunnels, the on-premises environment receives the route advertisements for the Untrusted and Trusted VPCs. In return, the on-premises environment advertises a number of CIDR ranges to the Untrusted VPC. However, when you tried to access one of the test services from the on-premises environment to the Trusted VPC, you received no response. You need to configure a highly available solution to enable the on-premises users to connect to the services in the Trusted VPC. What should you do?
- A. Add both multi-NIC VMs to a new unmanaged instance group, named nva-uig.
Create an internal passthrough Network Load Balancer in the Untrusted VPC, named ilb-untrusted, with the nva-uig unmanaged instance group designated as the backend.
Create a custom static route in the Untrusted VPC for destination 10.128.0.0/9 and the next hop ilb- untrusted.
Create an internal passthrough Network Load Balancer in the Trusted VPC, named ilb-trusted, with the nva-uig unmanaged instance group designated as the backend.
Create a custom static route in the Trusted VPC for destination 10.0.0.0/23 and the next hop ilb-trusted. - B. Add both multi-NIC VMs to a new unmanaged instance group, named nva-uig.
Create an internal passthrough Network Load Balancer in the Untrusted VPC, named ilb-untrusted, with the nva-uig unmanaged instance group designated as the backend.
Create a custom static route in the Untrusted VPC for destination 10.123.0.0/9 and the next hop ilb- untrusted.
Create an internal passthrough Network Load Balancer in the Trusted VPC, named ilb-trusted, with the nva-uig unmanaged instance group designated as the backend.
Create a custom static route in the Trusted VPC for destination 0.0.0.0/0 and the next hop ilb-trusted. - C. Add both multi-NIC VMs to a new unmanaged instance group, named nva-uigO.
Create an internal passthrough Network Load Balancer in the Untrusted VPC, named ilb-untrusted, with the nva-uigO as backend.
Create a custom static route in the Untrusted VPC for destination 10.128.0.0/9 and the next hop ilb- untrusted.
Add both multi-NIC VMs to a new unmanaged instance group, named nva-uigl.
Create an internal passthrough Network Load Balancer in the Trusted VPC, named ilb-trusted, with the nva-uigl as backend.
Create a custom static route in the Trusted VPC for destination 0.0.0.0/0 and the next hop ilb-trusted. - D. Add both multi-NIC VMs to a new unmanaged instance group, named nva-uig.
Create two custom static routes in the Untrusted VPC for destination 10.128.0.0/9 and set each of the VMs' NIC as the next hop.
Create two custom static routes in the Trusted VPC for destination 10.0.0.0/23 and set each of the VMs' NIC as the next hop.
Answer: A
Explanation:
Explanation: The solution requires creating internal passthrough load balancers for both VPCs, with custom static routes pointing to each load balancer. This ensures connectivity between the on-premises environment and the Trusted VPC via the Untrusted VPC.
NEW QUESTION # 222
You are troubleshooting connectivity issues between Google Cloud and a public SaaS provider. Connectivity between the two environments is through the public internet. Your users are reporting intermittent connection errors when using TCP to connect; however, ICMP tests show no failures. According to users, errors occur around the same time every day. You want to troubleshoot and gather information by using Google Cloud tools that are most likely to provide insights into what is occurring within Google Cloud. What should you do?
- A. Create a Connectivity Test by using TCP, the source IP address of your test VM, and the destination IP address of the public SaaS provider. Review the live data plane analysis and take the next steps based on the test results.
- B. Enable and review Cloud Logging for Cloud Armor. Look for logs with errors matching the destination IP address of the public SaaS provider.
- C. Enable the Firewall Insights API. Set the deny rule insights observation period to one day. Review the insights to assure there are no firewall rules denying traffic.
- D. Enable and review Cloud Logging on your Cloud NAT gateway. Look for logs with errors matching the destination IP address of the public SaaS provider.
Answer: A
Explanation:
Explanation: Creating a Connectivity Test using TCP in Network Intelligence Center allows you to simulate the connection to the public SaaS provider and receive real-time data plane analysis. This will help determine whether there are any issues with the network path for the specific TCP connection.
NEW QUESTION # 223
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 policy-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 match your local and remote networks.* Configure the appropriate static routes.
- C. * 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.
- D. * 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.
Answer: A
Explanation:
https://cloud.google.com/network-connectivity/docs/vpn/how-to/creating-static-vpns#creating_a_gateway_and_tunnel
NEW QUESTION # 224
......
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