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Fortinet NSE6_FSW-7.2 certification exam is an excellent way for network professionals to demonstrate their knowledge and skills in deploying, configuring, and managing FortiSwitches. Fortinet NSE 6 - FortiSwitch 7.2 certification is highly regarded in the industry and can help professionals advance their careers in network security. With the growing importance of network security in today's digital world, the Fortinet NSE6_FSW-7.2 Certification is a valuable asset for any IT professional.
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Fortinet NSE 6 - FortiSwitch 7.2 Sample Questions (Q11-Q16):
NEW QUESTION # 11
Which two statements about DHCP snooping enabled on a FortiSwitch VLAN are true? (Choose two.)
Answer: A,B
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 # 12
Which QoS mechanism maps packets with specific CoS or DSCP markings to an egress queue?
Answer: B
Explanation:
"Classification: FortiSwitch maps packets with a given CoS or DSCP marking to an egress queue. There are eight egress queues on each port: queues 0 to 7." In Quality of Service (QoS) mechanisms, the process of mapping packets with specific CoS (Class of Service) or DSCP (Differentiated Services Code Point) markings to an egress queue involves two key steps: classification and queuing .
Classification : This occurs on the ingress side (incoming traffic). The switch examines the packet headers (e.g., CoS or DSCP values) to determine how the traffic should be treated. Based on this classification, the switch assigns the packet to a specific priority level or queue.
Queuing : Once the packet is classified, it is mapped to an egress queue based on its priority level. The egress queues are used to manage how traffic is transmitted out of the switch.
Option A (Queuing for egress traffic) refers to managing how packets leave the switch, but it does not involve the initial mapping of CoS/DSCP values to a queue.
Option C (Rate limiting for egress traffic) is about controlling the rate of outgoing traffic, which is unrelated to CoS/DSCP mapping.
Option D (Marking for ingress traffic) involves modifying the CoS or DSCP values of packets as they enter the switch, but it does not map them to an egress queue.
Thus, classification for ingress traffic is the mechanism that identifies and maps packets with specific CoS or DSCP markings to an appropriate egress queue.
NEW QUESTION # 13
To enhance service in emergency situations, to which LLDP-MED Type-Length-Values does Forti-Switch advertise to IP phones?
Answer: B
Explanation:
Location (C): FortiSwitch uses LLDP-MED (Link Layer Discovery Protocol - Media Endpoint Discovery) to advertise various attributes to IP phones, among which "Location" is crucial in emergency situations. This information helps emergency responders to determine the physical location of the calling device, which is vital for prompt response in critical situations.
NEW QUESTION # 14
Exhibit.
You need to manage three FortiSwitch devices using a FortiGate device. Two of the FortiSwitch devices initiated a reboot after the authorization process. However, the FortiSwitch device with the configuration shown in the exhibit. did not reboot All three devices completed FortiLink manage-ment authorization successfully.
Why did the FortiSwitch device shown in the exhibit not reboot to complete the authorization pro-cess?
The management mode was set to use FortiLink mode.
Answer: B
Explanation:
Regarding the scenario where a FortiSwitch did not reboot after the authorization process while the other devices did, the most likely cause, given the configuration settings in the exhibit, is:
The management mode was set to use FortiLink mode (Option B): If the FortiSwitch was already configured to use FortiLink for its management mode, it may not require a reboot to complete the authorization process as its management interface settings are already aligned with FortiLink requirements. This is unlike switches that might be transitioning from a standalone or another management mode, which would typically require a reboot to apply new management settings fully.
Reference:
FortiLink mode specifically tailors FortiSwitch to be managed via a FortiGate device, integrating its operation into the wider security fabric without needing a reboot if it is already set to this mode before authorization. This contrasts with other management modes where transitioning to FortiLink could necessitate a system restart to initialize the new configuration.
NEW QUESTION # 15
Which statement about the IGMP snooping querier when enabled on a VLAN is true?
Answer: B
NEW QUESTION # 16
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