100% PASS FORTINET - FCP_ZCS_AD-7.4 - FCP - AZURE CLOUD SECURITY 7.4 ADMINISTRATOR PASS-SURE INSTANT ACCESS

100% Pass Fortinet - FCP_ZCS_AD-7.4 - FCP - Azure Cloud Security 7.4 Administrator Pass-Sure Instant Access

100% Pass Fortinet - FCP_ZCS_AD-7.4 - FCP - Azure Cloud Security 7.4 Administrator Pass-Sure Instant Access

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Fortinet FCP_ZCS_AD-7.4 Exam Syllabus Topics:

TopicDetails
Topic 1
  • 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 2
  • Azure Public Cloud Concepts: This section of the exam measures skills of a Cloud Engineer and covers foundational knowledge of public cloud computing, with a focus on Azure. Candidates are expected to understand core cloud concepts and how Azure implements them through services such as compute, storage, and networking. It also includes basic elements of Azure networking and built-in security services that support cloud-native operations.
Topic 3
  • Azure Route Server Concepts: This section of the exam measures skills of a Cloud Engineer and covers the basics of Azure Route Server. The focus is on understanding what the Azure Route Server is, how it functions within a virtual network, and how it simplifies the management of dynamic routing by automating route exchange with network virtual appliances.
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.

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Fortinet FCP - Azure Cloud Security 7.4 Administrator Sample Questions (Q78-Q83):

NEW QUESTION # 78
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 filter used for the dynamic firewall address
  • B. Check for a mistyped Microsof Entra ID subscription
  • C. Verify the tags on the target VM
  • D. Verify the NSG for the target VM
  • E. Verify the Microsoft Entra ID role assignment access rights

Answer: A,C

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 # 79
After integrating a FortiGate VM with Azure Route Server, you detect that routes are not propagating successfully.
What initial step could you perform to diagnose the root cause?

  • A. Verify that the FortiGate VM is running the latest firmware version
  • B. Examine the Azure Microsoft Entra ID permissions associated with the FortiGate VM to ensure that correct authentication is being used for BGP peering
  • C. Monitor the network latency between the FortiGate VM and Azure Route Server to identify potential communication delays affecting route propagation
  • D. Verify the BGP peering status on both the FortiGate VM and Azure Route Server

Answer: D

Explanation:
The first and most direct diagnostic step is to verify the BGP peering status on both the FortiGate VM and Azure Route Server. If BGP peering is not established or is in an idle or down state, route propagation will fail. This check confirms whether the two systems are communicating and exchanging routes as expected.


NEW QUESTION # 80
What capability does Azure Route Server provide to enterprise networks?
Response:

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

Answer: D


NEW QUESTION # 81
Refer to the exhibit.

A high availability, active-active FortiGate with Elastic Load Balancing (ELB) and Internal Load Balancing (ILB) was deployed in your Azure environment.
Which tools can you use to configure synchronization? (Choose two.)

  • A. Autoscale
  • B. FortiManager
  • C. FortiGate Clustering Protocol (FGCP)
  • D. Heartbeat interfaces
  • E. Software-defined network (SDN) Fabric Connector

Answer: C,D

Explanation:
In a FortiGate active-active HA deployment in Azure, synchronization between instances is achieved using:


NEW QUESTION # 82
Refer to the exhibit.

Your company runs front-end web servers in Azure. You need to deploy a Linux VM to be used as a web server.
To protect your web servers with a web application firewall (WAF), you deploy FortiWeb to secure applications from web-based attacks.
Which FortiWeb operation mode can you implement for this scenario?

  • A. True transparent proxy
  • B. Reverse proxy
  • C. Passive monitoring
  • D. Transparent inspection

Answer: B

Explanation:
The Reverse Proxy mode is the most appropriate FortiWeb operation mode for this scenario. In this mode, FortiWeb sits between internet users and the Linux web servers, terminating client connections and then forwarding requests to the backend servers. This enables deep inspection, protection from web attacks (like SQL injection and XSS), and full WAF functionality, making it ideal for securing front-end web servers exposed to the internet.


NEW QUESTION # 83
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