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NEW QUESTION # 42
Exhibit.
LAG and MCLAG are used to increase the available network bandwidth and enable redundancy. How does spanning tree protocol see MCLAG and LAG if they are configured based on the physi-cal view shown in the exhibit? (Choose two)
Answer: A,C
Explanation:
According to theFortiSwitchOS 7.6 Administration Guideand theFortiSwitch 7.6 Study Guide, Multichassis Link Aggregation (MCLAG) and standard Link Aggregation Groups (LAG) are designed to provide link-level and node-level redundancy while presenting a simplified logical view to the Spanning Tree Protocol (STP).
In the provided topology:
* Logical Switch View (Option D):Switch 1 and Switch 2 are configured asMCLAG peersconnected via an Inter-Chassis Link (ICL). From the perspective of downstream devices and STP, these two physical switches act as a single logical entity. This prevents STP from seeing a loop between the two switches and the downstream Switch 3, as the redundant physical paths are bundled into a single logical MCLAG trunk.
* Logical Interface View (Option B):The exhibit shows Switch 4 connected to Switch 3 via two physical links bundled into aLAG, and Switch 3 connected to the MCLAG peers via split links. In both cases, STP treats the aggregated physical links as asingle logical interface. Because the multiple physical paths are managed by the Link Aggregation Control Protocol (LACP) as one trunk, STP does not block individual ports to prevent loops; instead, it sees one high-bandwidth path.
Regarding the incorrect options:Option Ais false because Switch 3 is an MCLAGclient, not a peer in the group.Option Cis incorrect because Switch 3 and Switch 4 are separate physical and logical nodes; they are not seen as a single client entity by the core.
NEW QUESTION # 43
What are two reasons why time synchronization between FortiGate and its managed FortiSwitch is critical in switch management? (Choose two.)
Answer: B,D
Explanation:
Time synchronization between FortiGate and its managed FortiSwitch devices is essential for several reasons:
* A. FortiSwitch does not retain its time after a reboot, which gets reset after each reboot.This characteristic of FortiSwitch underlines the importance of time synchronization with FortiGate. Since FortiSwitch loses its time settings upon reboot, synchronizing with FortiGate ensures that its system clock is accurate, which is vital for logging, troubleshooting, and security timestamping.
* C. FortiSwitch cannot complete the DTLS handshake used in the CAPWAP tunnel.Accurate time synchronization is crucial for security protocols such as DTLS, which rely on timestamped certificates for establishing a secure connection. If the time on FortiSwitch is not synchronized with FortiGate, the DTLS handshake used in the CAPWAP tunnel for secure communication may fail due to time discrepancies, impacting the management and operation of the switch.
NEW QUESTION # 44
Refer to the exhibits.
An administrator has deployed two FortiSwitch devices, Core-1 and Core-2, as multichassis link aggregation group (MCLAG) peers. These switches are connected to FortiGate for FortiLink and to an access switch (Access-1) using an inter-switch link (ISL). After configuration, the administrator notices that both Core-1 and Core-2 are claiming to be the root bridge in the Multiple Spanning Tree Protocol (MSTP) topology. What explains this behavior? (Choose one answer)
Answer: C
Explanation:
According to theFortiSwitchOS 7.6 Administration Guideand theFortiSwitch 7.6 Study Guide, Multichassis Link Aggregation (MCLAG) provides node-level redundancy by grouping two physical switches together so that theyappear as a single logical switchto the rest of the network. This logical representation is critical for preventing Spanning Tree Protocol (STP) from blocking redundant uplinks from downstream client switches.
To achieve this "single switch" appearance, the MCLAG peer switches synchronize their STP state andshare the same Bridge ID, which consists of a synchronized bridge MAC address and the same bridge priority. As shown in the exhibits for Core-1 and Core-2, both switches are configured with aBridge MAC of
02090f000701and aPriority of 20480. Because they possess identical identification parameters, each physical switch in the peer group locally recognizes itself as part of the root bridge entity for the MSTP region.
This behavior is intentional and is a fundamental characteristic of MCLAG design in FortiSwitchOS. It ensures that any downstream device, such as Access-1, receives BPDUs with the same bridge ID from both Core-1 and Core-2, thereby treating them as a single high-availability neighbor rather than two separate devices. Option A is incorrect as FortiGate typically does not participate in STP calculations. Option B is incorrect because this "duplicate" root behavior is the expected sign of acorrectlyfunctioning MCLAG control plane. Option D is incorrect as STP remains active to prevent loops elsewhere in the fabric; it is merely logically simplified for the MCLAG domain.
NEW QUESTION # 45
Which two statements about DHCP snooping enabled on a FortiSwitch VLAN are true? (Choose two.)
Answer: A,D
Explanation:
* Switch-controller-dhcp-snooping-verify-mac verifies the destination MAC address to protect against DHCP exhaustion attacks (B): This feature of DHCP snooping helps prevent DHCP exhaustion attacks by ensuring that the destination MAC addresses in DHCP packets match the MAC addresses learned by the switch. This check helps prevent attackers from overwhelming the DHCP server with requests from spoofed MAC addresses.
* Settings related to DHCP option 82 are only configurable through the CLI (D): DHCP Option 82 is used for "agent information," and it's typically used in network environments where additional information between DHCP clients and servers is necessary for policy and billing purposes.
Configuration of these settings in FortiSwitch is only available through the Command Line Interface (CLI), not the Graphical User Interface (GUI).
NEW QUESTION # 46
You need to deploy routing on a standalone FortiSwitch and want to maximize routing performance. Which type of routing is best for this deployment? (Choose one answer)
Answer: D
Explanation:
According to theFortiSwitchOS 7.6 Administration Guideand theFortiSwitch 7.6.1 Administration Guide- Standalone Mode, FortiSwitch units support two primary methods for processing Layer 3 traffic: software- based routing and hardware-based routing. To maximize performance, the documentation specifies thatHardware-based routing (Option A)is the superior choice for high-speed environments.
The primary technical reason for this performance advantage is the use ofApplication-Specific Integrated Circuits (ASICs). In hardware-based routing, the routing table and forwarding information are programmed directly into the switch ' s specialized hardware silicon. This allows the FortiSwitch to perform packet lookups and forwarding decisions at " wire speed, " which refers to the full throughput capacity of the physical ports.
By offloading these tasks to the ASIC, the switch minimizes latency and prevents the performance bottlenecks associated with general-purpose CPU processing.
In contrast,software-based routing(Options B and D) requires the main system CPU and kernel to process every packet, which is significantly slower and can lead to high CPU utilization during heavy traffic loads.
Option C is factually incorrect because hardware-based routing specifically avoids the kernel ' s software path to increase speed. Therefore, for a deployment focused on maximizing routing performance, especially in a backbone or high-density branch environment, utilizing the ASIC-driven hardware forwarding path is the recommended approach in FortiSwitchOS 7.6.
NEW QUESTION # 47
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