Professional-Cloud-Network-Engineer Online Exam - Accurate Professional-Cloud-Network-Engineer Study Material
Professional-Cloud-Network-Engineer Online Exam - Accurate Professional-Cloud-Network-Engineer Study Material
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Tags: Professional-Cloud-Network-Engineer Online Exam, Accurate Professional-Cloud-Network-Engineer Study Material, Reliable Professional-Cloud-Network-Engineer Braindumps Book, Professional-Cloud-Network-Engineer Test Online, Reliable Professional-Cloud-Network-Engineer Test Online
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The most important feature of the online version of our Professional-Cloud-Network-Engineer learning materials are practicality. The online version is open to all electronic devices, which will allow your device to have common browser functionality so that you can open our products. At the same time, our online version of the Professional-Cloud-Network-Engineer Learning Materials can also be implemented offline, which is a big advantage that many of the same educational products are not able to do on the market at present.
Preparation Process
There is a host of study materials available on the Internet that the candidates can leverage to prepare for the Google Professional Cloud Network Engineer certification exam. However, if you want to be sure of the authenticity of the resources that you use, it is best to refer to the official platform. The first step in your preparation for the qualifying test should be the review of its guide. This document contains a detailed outline of the topics and subtopics that will be covered in the exam. The understanding of these will help you allocate your study time efficiently.
The Professional Network Engineer learning path offered on the certification website must be one of the most effective training tools. This is a combination of lessons and practical labs for comprehensive coverage of the exam content. You can also use the official sample questions as a final stage of your preparation. These will provide you with an idea of the question formats. Using the sample questions, you can also measure your current level of preparedness for the certification test.
>> Professional-Cloud-Network-Engineer Online Exam <<
Accurate Professional-Cloud-Network-Engineer Study Material, Reliable Professional-Cloud-Network-Engineer Braindumps Book
By these three versions we have many repeat orders in a long run. The PDF version helps you read content easier at your process of studying with clear arrangement, and the PC Test Engine version allows you to take stimulation exam to check your process of exam preparing, which support windows system only. Moreover, there is the APP version, you can learn anywhere at any time with it at your cellphones without the limits of installation. As long as you are willing to exercise on a regular basis, the exam will be a piece of cake, because what our Professional-Cloud-Network-Engineer practice materials include are quintessential points about the exam.
Google Professional-Cloud-Network-Engineer Exam is a certification program designed for individuals who want to demonstrate their proficiency in Google Cloud Network technologies. Google Cloud Certified - Professional Cloud Network Engineer certification is ideal for network engineers and professionals looking to validate their skills in designing, implementing, and managing network solutions on the Google Cloud Platform.
Google Cloud Certified - Professional Cloud Network Engineer Sample Questions (Q163-Q168):
NEW QUESTION # 163
Your company recently migrated to Google Cloud in a Single region. You configured separate Virtual Private Cloud (VPC) networks for two departments. Department A and Department B. Department A has requested access to resources that are part Of Department Bis VPC. You need to configure the traffic from private IP addresses to flow between the VPCs using multi-NIC virtual machines (VMS) to meet security requirements Your configuration also must
* Support both TCP and UDP protocols
* Provide fully automated failover
* Include health-checks
Require minimal manual Intervention In the client VMS
Which approach should you take?
- A. Create the VMS In the same zone, and configure static routes With IP addresses as next hops.
- B. Create an Instance template and a managed instance group. Configure a Single internal load balancer, and define a custom static route with the Internal TCP/UDP load balancer as the next hop
- C. Create an instance template and a managed instance group. Configure two separate internal TCP/IJDP load balancers for each protocol (TCP!UDP), and configure the client VIVIS to use the internal load balancers' virtual IP addresses
- D. Create the VMS in different zones, and configure static routes with instance names as next hops
Answer: C
Explanation:
The correct answer is D. Create an instance template and a managed instance group. Configure two separate internal TCP/UDP load balancers for each protocol (TCP/UDP), and configure the client VMs to use the internal load balancers' virtual IP addresses.
This answer is based on the following facts:
Using multi-NIC VMs as network virtual appliances (NVAs) allows you to route traffic between different VPC networks1. You can use NVAs to implement custom network policies and security requirements.
Using an instance template and a managed instance group allows you to create and manage multiple identical NVAs2. You can also use health checks and autoscaling policies to ensure high availability and reliability of your NVAs.
Using internal TCP/UDP load balancers allows you to distribute traffic from client VMs to NVAs based on the protocol and port3. You can also use health checks and failover policies to ensure that only healthy NVAs receive traffic.
Configuring the client VMs to use the internal load balancers' virtual IP addresses allows you to simplify the routing configuration and avoid manual intervention4. You do not need to create static routes or update them when NVAs are added or removed.
The other options are not correct because:
Option A is not suitable. Creating the VMs in the same zone does not provide high availability or failover. Using static routes with IP addresses as next hops requires manual intervention when NVAs are added or removed.
Option B is not optimal. Creating the VMs in different zones provides high availability, but not failover. Using static routes with instance names as next hops requires manual intervention when NVAs are added or removed.
Option C is not feasible. Creating an instance template and a managed instance group provides high availability and reliability, but using a single internal load balancer does not support both TCP and UDP protocols. You cannot define a custom static route with an internal load balancer as the next hop.
NEW QUESTION # 164
You are designing a hybrid cloud environment for your organization. Your Google Cloud environment is interconnected with your on-premises network using Cloud HA VPN and Cloud Router. The Cloud Router is configured with the default settings. Your on-premises DNS server is located at 192.168.20.88 and is protected by a firewall, and your Compute Engine resources are located at 10.204.0.0/24. Your Compute Engine resources need to resolve on-premises private hostnames using the domain corp.altostrat.com while still resolving Google Cloud hostnames. You want to follow Google-recommended practices. What should you do?
- A. Create a private zone in Cloud DNS for 'corp altostrat.com' called corp-altostrat-com.
Configure DNS Server Policies and create a policy with Alternate DNS servers to 192.168.20.88.
Configure your on-premises firewall to accept traffic from 35.199.192.0/19.
Set a custom route advertisement on the Cloud Router for 35.199.192.0/19. - B. Create a private forwarding zone in Cloud DNS for 'corp.altostrat.com' called corp-altostrat-com that points to 192.168 20.88.
Configure your on-premises firewall to accept traffic from 35.199.192.0/19 Set a custom route advertisement on the Cloud Router for 35.199.192.0/19. - C. Create a private forwarding zone in Cloud DNS for 'corp.altostrat.com' called corp-altostrat-com that points to 192.168.20.88.
Configure your on-premises firewall to accept traffic from 10.204.0.0/24.
Set a custom route advertisement on the Cloud Router for 10.204.0.0/24 - D. Create a private forwarding zone in Cloud DNS for 'corp .altostrat.com' called corp-altostrat-com that points to 192.168.20.88.
Configure your on-premises firewall to accept traffic from 10.204.0.0/24.
Modify the /etc/resolv conf file on your Compute Engine instances to point to 192.168.20 88
Answer: A
NEW QUESTION # 165
Your organization is implementing a new security policy to control how firewall rules are applied to control flows between virtual machines (VMs). Using Google-recommended practices, you need to set up a firewall rule to enforce strict control of traffic between VM A and VM B. You must ensure that communications flow only from VM A to VM B within the VPC, and no other communication paths are allowed. No other firewall rules exist in the VPC. Which firewall rule should you configure to allow only this communication path?
- A. Firewall rule direction: ingress
Action: allow
Target: VM A service account
Source ranges: VM B service account and VM B source IP address
Priority: 100 - B. Firewall rule direction: ingress
Action: allow
Target: VM B service account
Source ranges: VM A service account
Priority: 1000 - C. Firewall rule direction: ingress
Action: allow
Target: specific VM A tag
Source ranges: VM B tag and VM B source IP address
Priority: 100 - D. Firewall rule direction: ingress
Action: allow
Target: specific VM B tag
Source ranges: VM A tag and VM A source IP address
Priority: 1000
Answer: C
NEW QUESTION # 166
You want to establish a dedicated connection to Google that can access Cloud SQL via a public IP address and that does not require a third-party service provider.
Which connection type should you choose?
- A. Dedicated Interconnect
- B. Partner Interconnect
- C. copyright Peering
- D. Direct Peering
Answer: D
Explanation:
When established, Direct Peering provides a direct path from your on-premises network to Google services, including Google Cloud products that can be exposed through one or more public IP addresses. Traffic from Google's network to your on-premises network also takes that direct path, including traffic from VPC networks in your projects. Google Cloud customers must request that direct egress pricing be enabled for each of their projects after they have established Direct Peering with Google. For more information, see Pricing.
NEW QUESTION # 167
You recently deployed Cloud VPN to connect your on-premises data center to Google Cloud. You need to monitor the usage of this VPN and set up alerts in case traffic exceeds the maximum allowed. You need to be able to quickly decide whether to add extra links or move to a Dedicated Interconnect. What should you do?
- A. In the VPN section of the Google Cloud console, select the VPN under hybrid connectivity and then select monitoring to display utilization on the dashboard.
- B. In the Monitoring section of the Google Cloud console, use the Dashboard section to select a default dashboard for VPN usage.
- C. In Network Intelligence Center, check for the number of packet drops on the VPN.
- D. In the Google Cloud console, use Monitoring Query Language to create a custom alert for bandwidth utilization.
Answer: D
Explanation:
Explanation: Using Monitoring Query Language (MQL) to create a custom alert for bandwidth utilization gives you flexibility and precision in setting thresholds. This helps you quickly determine when VPN traffic exceeds the limits, allowing for timely decisions about adding more links or transitioning to a Dedicated Interconnect.
NEW QUESTION # 168
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