NSE6_FSW-7.2 CERTIFICATION EXAM | LATEST NSE6_FSW-7.2 TEST NOTES

NSE6_FSW-7.2 Certification Exam | Latest NSE6_FSW-7.2 Test Notes

NSE6_FSW-7.2 Certification Exam | Latest NSE6_FSW-7.2 Test Notes

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Fortinet NSE6_FSW-7.2 certification exam is designed to test the knowledge and skills of network administrators and security professionals in managing and configuring FortiSwitches. NSE6_FSW-7.2 exam focuses on the FortiSwitch 7.2 operating system and covers a range of topics, such as VLANs, STP, RSTP, MSTP, and link aggregation. Those who pass the exam will be recognized as experts in FortiSwitch management and will be able to configure and manage FortiSwitches to enhance network security.

Fortinet NSE6_FSW-7.2 Certification Exam is a comprehensive certification that validates a candidate's knowledge and skills in deploying, configuring, and troubleshooting FortiSwitch solutions. Fortinet NSE 6 - FortiSwitch 7.2 certification exam covers a wide range of topics and is designed for network professionals who are responsible for managing and maintaining FortiSwitch devices in their organizations. By passing the certification exam, candidates can demonstrate their expertise in managing and maintaining FortiSwitch devices, which can lead to career advancement and enhanced job opportunities.

To prepare for the Fortinet NSE6_FSW-7.2 Certification Exam, candidates must have a strong understanding of networking concepts, such as routing, switching, and VLANs. They should also have experience working with Fortinet’s FortiGate firewall products, as the FortiSwitch integrates closely with these devices. Candidates will need to demonstrate their ability to configure and manage the FortiSwitch using the FortiSwitch web-based management interface, as well as the FortiGate GUI. Upon passing the exam, candidates will earn their Fortinet NSE 6 - FortiSwitch 7.2 certification, which validates their ability to deploy and manage FortiSwitch products in enterprise environments.

>> NSE6_FSW-7.2 Certification Exam <<

Latest NSE6_FSW-7.2 Test Notes | NSE6_FSW-7.2 Exam Dumps.zip

Candidates who pass NSE6_FSW-7.2 Certification prove their worth in the Fortinet field. The Fortinet NSE 6 - FortiSwitch 7.2 certification is proof of their competence and skill. This skill is highly useful in big Fortinet companies that facilitate a candidate's career. To get certified, it is very important that you pass the Fortinet NSE 6 - FortiSwitch 7.2 certification exam to prove your skills to the tech company. For this task, you require high-quality and accurate prep material to help you out. And many people don't get reliable material and ultimately fail. Failure leads to a loss of time and money.

Fortinet NSE 6 - FortiSwitch 7.2 Sample Questions (Q18-Q23):

NEW QUESTION # 18
What are two reasons why time synchronization between FortiGate and its managed FortiSwitch is critical in switch management? (Choose two.)

  • A. FortiSwitch does not retain its time after a reboot, which gets reset after each reboot.
  • B. FortiSwitch will not be able to become an NTP server for downstream devices.
  • C. FortiSwitch will not allow other FortiSwitch devices in the chain be discovered by FortiGate.
  • D. FortiSwitch cannot complete the DTLS handshake used in the CAPWAP tunnel.

Answer: A,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 # 19
Which statement about using MAC, IP, and protocol-based VLANs on FortiSwitch is true?

  • A. lt is a scalable and secure solution in comparison to other Layer 2 security measures.
  • B. Endpoints are required to use the same FortiSwitch port to remain members of the VLAN.
  • C. It provides benefits that can be obtained when using 802.1X authentication.
  • D. FortiSwitch uses only the Ethernet type to assign traffic to VLANs.

Answer: C

Explanation:
It provides benefits that can be obtained when using 802.1X authentication (C): MAC, IP, and protocol-based VLANs on FortiSwitch are beneficial in network environments where additional granularity is needed in traffic segmentation and security, similar to what can be achieved through 802.1X authentication. These VLAN types allow for dynamic assignment of ports to VLANs based on the characteristics of the incoming traffic, enhancing both security and network efficiency.


NEW QUESTION # 20
Which two statements about DHCP snooping enabled on a FortiSwitch VLAN are true? (Choose two.)

  • A. Enabling DHCP snooping on a FortiSwitch VLAN ensures requests and replies are seen by all DHCP servers.
  • B. switch-controller-dhcp-snooping-verify-mac verifies the destination MAC address to protect against DHCP exhaustion attacks.
  • C. Settings related to DHCP option 82 are only configurable through the CLI
  • D. By default, all FortiSwitch ports are set to forward client DHCP requests to untrusted ports.

Answer: C,D


NEW QUESTION # 21
Refer to the exhibit.

The exhibit shows the current status of the ports on the managed FortiSwitch. Access-1.
Why would FortiGate display a serial number in the Native VLAN column associated with the port23 entry?

  • A. A standalone switch with the shown serial number is connected on port23.
  • B. Ports connected to adjacent FortiSwitch devices show their serial number as the native VLAN.
  • C. port23 is configured as the dedicated management interface.
  • D. port23 is a member of a trunk that uses the Access-1 FortiSwitch serial number as the name of the trunk.

Answer: A

Explanation:
The information in the "Native VLAN" column for port23 on the FortiSwitch indicates that a standalone switch is connected to it. This is because the column displays "$424MPTF20000027," which matches the format of a Fortinet device serial number.
Here's a breakdown of the evidence in the image:
Native VLAN: The "Native VLAN" column typically displays the VLAN ID for untagged traffic on a trunk port. However, in this case, it shows a serial number format ("$424MPTF20000027").
No Trunk Information: The "Trunk" column is blank for port23, indicating it's not configured as a trunk member.
Other Ports: Port1 and port2 show "default" in the "Native VLAN" column, which is the expected behavior for access ports.
Fortinet FortiSwitch devices typically don't display the serial number of adjacent FortiSwitch devices in the "Native VLAN" column. This column is reserved for VLAN information on trunk ports.


NEW QUESTION # 22
Refer to the exhibit.

The profile shown in the exhibit is assigned to a group of managed FortiSwitch ports, and these ports are connected to endpoints which are powered by PoE.
Which configuration action can you perform on the LLDP profile to cause these endpoints to exchange PoE information and negotiate power with the managed FortiSwitch?

  • A. Assign a new LLDP profile to handle different LLDP-MED TLVs.
  • B. Create new a LLDP-MED application type to define the PoE parameters.
  • C. Define an LLDP-MED location ID to use standard protocols for power.
  • D. Add power management as part of LLDP-MED TLVs to advertise.

Answer: D

Explanation:
To cause endpoints to exchange PoE information and negotiate power with the managed FortiSwitch via LLDP, you should configure the LLDP profile to include power management in the advertised LLDP-MED TLVs. Here are the steps:
Access the LLDP Profile Configuration:
Start by entering the LLDP profile configuration mode with the command:
config switch-controller lldp-profile
edit "LLDP-PROFILE"
Enable MED-TLVs:
Ensure that MED-TLVs (Media Endpoint Discovery TLVs) are enabled. These TLVs are used for extended discovery relating to network policies, including PoE, and are essential for PoE negotiation. They include power management which is crucial for the negotiation of PoE parameters between devices. The command to ensure network policies are set might look like:
set med-tlvs network-policy
Add Power Management TLV:
Specifically add or ensure the power management TLV is part of the configuration. This will advertise the PoE capabilities and requirements, enabling dynamic power allocation between the FortiSwitch and the connected devices (like VoIP phones or wireless access points). This can typically be done within the network-policy settings:
config med-network-policy
edit <policy_index>
set poe-capability
next
end
Save and Apply Changes:
Exit the configuration blocks properly ensuring changes are saved:
End
Verify Configuration:
It's always good practice to verify that your configurations have been applied correctly. Use the appropriate show or get commands to review the LLDP profile settings.
By adding the power management as part of LLDP-MED TLVs, the FortiSwitch will be able to communicate its power requirements and capabilities to the endpoints, thereby facilitating a dynamic power negotiation that is crucial for efficient PoE utilization.
Reference:
For more detailed information and additional configurations, you can refer to the FortiSwitch Managed Switches documentation available on Fortinet's official documentation site: Fortinet Product Documentation


NEW QUESTION # 23
......

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