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| Section | Objectives |
|---|---|
| Topic 1: Implement hybrid connectivity | - VPN and peering
|
| Topic 2: Manage, monitor, and optimize network operations | - Network monitoring and logging
|
| Topic 3: Implement virtual networks | - VPC configuration
|
| Topic 4: Design and plan a Google Cloud network | - VPC design and topology planning
|
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NEW QUESTION # 272
You are increasing your usage of Cloud VPN between on-premises and GCP, and you want to support more traffic than a single tunnel can handle. You want to increase the available bandwidth using Cloud VPN.
What should you do?
Answer: C
NEW QUESTION # 273
You are designing a security-focused network architecture on Google Cloud. Your company has deployed a central inspection VPC that contains a fleet of Cloud Next Generation Firewall (NGFW) appliances. The inspection VPC has a default route with next hop pointing to the passthrough Network Load Balancer with NGFW appliances as backends.
You also have two application VPCs (App-A and App-B) that are not allowed to directly communicate with each other, nor do they have a default route in their VPC. You need to ensure that all traffic originating from App-A and App-B are forced through the inspection VPC to be analyzed by the Cloud NGFW appliances.
What should you do?
Answer: D
Explanation:
Use Network Connectivity Center in a star topology, with the inspection VPC as the center group and the application VPCs as edge spokes. In NCC, a star topology is specifically used to prevent direct communication between spoke VPCs while still allowing them to reach shared services through the center. By having the inspection VPC advertise the default route, traffic from App-A and App-B can be forced toward the inspection VPC, where the Cloud NGFW appliances sit behind the passthrough Network Load Balancer. This matches the requirement to block direct App-A to App-B communication and steer all outbound traffic through centralized inspection.
NEW QUESTION # 274
You are using a 10-Gbps direct peering connection to Google together with the gsutil tool to upload files to Cloud Storage buckets from on-premises servers. The on-premises servers are 100 milliseconds away from the Google peering point. You notice that your uploads are not using the full 10-Gbps bandwidth available to you. You want to optimize the bandwidth utilization of the connection.
What should you do on your on-premises servers?
Answer: B
NEW QUESTION # 275
Your organization has multiple VMs running on Google Cloud within a VPC. The VMs require connectivity to certain Google APIs. You need to enable Private Google Access for VM connectivity to Cloud Storage. What should you do?
Answer: D
Explanation:
Private Google Access allows VMs in a VPC subnet to access Google APIs and services (such as Cloud Storage) without requiring an external IP address. The key steps to enable Private Google Access for VM connectivity to Cloud Storage are as follows:
Enable Private Google Access on the subnet: Private Google Access is configured at the subnet level, not at the project or VM level. This ensures that VMs within the subnet can access Google APIs privately through internal IPs.
Create a default route to the default internet gateway: While the VMs use Private Google Access for Google APIs, they still need the default route for any other internet-bound traffic. This ensures proper routing for all other traffic.
Enable the Cloud Storage API: Enabling the Cloud Storage API ensures that the required service is available for your project and accessible to your VMs.
NEW QUESTION # 276
Your company is planning a migration to Google Kubernetes Engine. Your application team informed you that they require a minimum of 60 Pods per node and a maximum of 100 Pods per node Which Pod per node CIDR range should you use?
Answer: C
Explanation:
To determine the Pod per node CIDR range, you need to calculate how many IP addresses are required for each node, and then choose the smallest CIDR range that can accommodate that number. A CIDR range of /n means that there are 2
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