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Q1.

Refer to the exhibit.

q1_FCP_ZCS_AD-7.4

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.)

Answer: A, C

See the explanation below.

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


Q2.

Refer to the exhibit.

q2_FCP_ZCS_AD-7.4

An Azure Route Server and an active-passive FortiGate with Elastic Load Balancing (ELB) and Internal Load Balancing (ILB) have been deployed successfully and they are sharing and populating BGP routes in the Protected VNet.

A Linux server has been deployed in a new VNet spoke. It is expected that Azure Route Server

should inject the FortiGate BGP routes into the Linux server but that failed.

How can you diagnose the problem?

Answer: A

See the explanation below.

The Linux server in the spoke VNet cannot directly peer BGP with the Azure Route Server, as it is not a BGP-enabled device. Instead, Azure propagates routes to VMs through the effective route tables associated with their network interfaces (NICs). Therefore, to diagnose why BGP routes are not reaching the Linux VM, you should monitor the effective routes on the NIC to verify if the routes from the FortiGate (via the Route Server) are being injected properly.


Q3.

Refer to the exhibits.

q3_FCP_ZCS_AD-7.4

q3_FCP_ZCS_AD-7.4

q3_FCP_ZCS_AD-7.4

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.)

Answer: A, B

See the explanation below.

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.


Q4.

How are the configurations synchronized between two FortiGate VMs in an active-passive HA with SDN connector failover deployed from the Azure marketplace?

Answer: A

See the explanation below.

In an active-passive HA deployment of FortiGate VMs in Azure using the Marketplace template, configuration synchronization is handled via unicast FortiGate Clustering Protocol (FGCP). FGCP allows the primary unit to replicate its configuration and session information to the secondary unit, ensuring seamless failover.


Q5.

What characterizes the branch-to-branch topology in an Azure virtual WAN?

Answer: D

See the explanation below.

The branch-to-branch topology in Azure Virtual WAN is characterized by direct connectivity between branches through the Virtual WAN backbone, which reduces dependency on centralized hubs. This results in a simplified network architecture, lowering latency and optimizing routing between branch locations.


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