ACTUAL FORTINET FCP_ZCS_AD-7.4 EXAM QUESTIONS WITH SAVE TIME AND MONEY

Actual Fortinet FCP_ZCS_AD-7.4 Exam Questions with Save Time and Money

Actual Fortinet FCP_ZCS_AD-7.4 Exam Questions with Save Time and Money

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Fortinet FCP_ZCS_AD-7.4 Exam Syllabus Topics:

TopicDetails
Topic 1
  • Fortinet Product Deployment: This section of the exam measures skills of a Network Security Engineer and covers the implementation of Fortinet products within Azure environments. The topics include deploying individual FortiWeb and FortiGate instances, integrating FortiGate with Azure’s software-defined networking, and applying best practices for secure and efficient deployments of Fortinet solutions in the cloud.
Topic 2
  • Azure Virtual WAN: This section of the exam measures skills of a Cloud Engineer and explains the concept and deployment of Azure Virtual WAN. It focuses on building large-scale, optimized, and automated branch connectivity with Azure regions and services using virtual WAN hubs, improving cloud-based networking efficiency and scalability.
Topic 3
  • High Availability (HA): This section of the exam measures skills of a Network Security Engineer and focuses on maintaining system resilience within Azure. Candidates are required to demonstrate knowledge of setting up FortiGate-based high availability in Azure, configuring Azure-native load balancing, and implementing autoscaling features to ensure continuous service availability and optimal performance.
Topic 4
  • VPN Solutions in Azure: This section of the exam measures skills of a Network Security Engineer and addresses secure connectivity between Azure and on-premises environments. Candidates will review the different site-to-site VPN options available in Azure, configure tunnels between FortiGate devices and Azure VPN gateways, and understand how Azure Virtual WAN enhances global connectivity.
Topic 5
  • Azure Route Server Use Cases: This section of the exam measures skills of a Cloud Engineer and explores real-world applications of the Azure Route Server. It includes identifying scenarios where Route Server is used to streamline routing operations, support hybrid connectivity, and improve manageability in complex network topologies.

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Fortinet FCP - Azure Cloud Security 7.4 Administrator Sample Questions (Q38-Q43):

NEW QUESTION # 38
Refer to the exhibit.

You are troubleshooting a network connectivity issue between two VMs that are deployed in Azure.
One VM is a FortiGate that has one interface in the DMZ subnet, which is in the Production VNet. The other VM is a Windows Server in the Servers subnet, which is also in the Production VNet. You cannot ping the Windows Server from the FortiGate VM.
What is the reason for this?

  • A. The firewall in the Windows VM is blocking the traffic
  • B. You have not created a VPN to allow traffic between those subnets
  • C. You have not configured a user-defined route for this traffic
  • D. By default, Azure does not allow ICMP traffic between subnets

Answer: A

Explanation:
The FortiGate VM and the Windows Server VM are in different subnets but within the same Production virtual network, which means they can communicate by default unless restricted. Azure allows ICMP between subnets, but Windows VMs have ICMP blocked by default in their firewall settings. Therefore, the likely reason for the ping failure is that the Windows Server's firewall is blocking ICMP (ping) traffic.


NEW QUESTION # 39
You deployed a FortiGate active-active with ELB/ILB solution using the template from Azure Marketplace.
What is the purpose of the inbound NAT rules configured in the external load balancer in this deployment?

  • A. To filter inbound traffic before it reaches the FortiGate instances
  • B. To load balance the incoming traffic between both FortiGate VMs
  • C. To allow administrative access to the FortiGate VMs
  • D. To forward the health probes to both FortiGate VMs

Answer: C

Explanation:
In an active-active FortiGate ELB/ILB deployment, the inbound NAT rules configured on the external load balancer are used to allow administrative access (e.g., HTTPS, SSH) to the individual FortiGate VMs. Since the public IP is associated with the load balancer, NAT rules are required to map specific ports to backend FortiGate instances for management access.


NEW QUESTION # 40
Refer to the exhibits.



Two new dynamic firewall addresses have been configured on the FortiGate VM using the external connector to Integrate within the same Azure environment.
The debug output shows that one IP address can be resolved successfully, but the second is empty.
Which steps could you perform to correct the misconfiguration? (Choose all that apply.)

  • A. Verify the Microsoft Entra ID role assignment access rights
  • B. Check for a mistyped Microsof Entra ID subscription
  • C. Verify the filter used for the dynamic firewall address
  • D. Verify the tags on the target VM
  • E. Verify the NSG for the target VM

Answer: C,D

Explanation:
The debug output shows that the UbuntuServer address object successfully resolved an IP, while the webServer did not. The most likely cause is a mismatch in the dynamic address filter or missing tags on the target VM.
Verify the filter used for the dynamic firewall address - The filter category=windows may not match any VM metadata, resulting in no matched addresses.
Verify the tags on the target VM - Ensure that the VM has the correct tags (e.g., category=windows) that match the dynamic address filter to enable resolution.


NEW QUESTION # 41
What capability does Azure Route Server provide to enterprise networks?
Response:

  • A. Seamless route exchange with Azure virtual networks
  • B. Intrusion detection and prevention
  • C. Data lifecycle management
  • D. Automated patch management

Answer: A


NEW QUESTION # 42
Refer to the exhibits, which show the outputs of two commands taken on a Windows VM running in Azure.

Which statement is true about the device with the IP address 10.0.2.4?

  • A. It is reachable through FortiGate in transparent mode
  • B. It is provided by Azure for routing traffic among subnets
  • C. It is on the same VNET as the Windows VM
  • D. It is on the same subnet as the Windows VM

Answer: C

Explanation:
The trace output shows only one hop to reach 10.0.2.4, indicating that the destination is in the same Azure virtual network (VNet) as the Windows VM. Since the VM's IP is 10.0.1.4 and the destination is 10.0.2.4, they are in different subnets, but Azure allows direct routing between subnets within the same VNet without additional hops.


NEW QUESTION # 43
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