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Fortinet NSE6_FSW-7.2 Exam is designed to test the knowledge and skills of individuals in deploying, configuring, and managing FortiSwitch devices in a network environment. NSE6_FSW-7.2 exam focuses on the FortiSwitch 7.2 platform and covers topics such as VLANs, spanning tree protocol, link aggregation, and FortiLink. Fortinet NSE 6 - FortiSwitch 7.2 certification is aimed at network professionals who work with Fortinet products and want to demonstrate their expertise in configuring and managing FortiSwitch devices.
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The Fortinet NSE 6 - FortiSwitch 7.2 (NSE6_FSW-7.2) practice tests have customizable time and Fortinet NSE 6 - FortiSwitch 7.2 (NSE6_FSW-7.2) exam questions feature so that the students can set the time and Fortinet NSE 6 - FortiSwitch 7.2 (NSE6_FSW-7.2) exam questions according to their needs. The Fortinet NSE 6 - FortiSwitch 7.2 (NSE6_FSW-7.2) practice test questions are getting updated on the daily basis and there are also up to 1 year of free updates. Earning the Fortinet NSE 6 - FortiSwitch 7.2 (NSE6_FSW-7.2) certification exam is the way to grow in the modern era with high-paying jobs.
Fortinet NSE6_FSW-7.2 Certification Exam is designed to test the knowledge and skills of IT professionals in deploying, configuring, and maintaining FortiSwitch solutions in complex networking environments. NSE6_FSW-7.2 exam focuses on topics such as VLANs, link aggregation, access control, Virtual Wire Pairing, and FortiLink. Fortinet NSE 6 - FortiSwitch 7.2 certification is ideal for network and security administrators, solution architects, and technical support engineers who wish to demonstrate their expertise in FortiSwitch products.
Fortinet NSE 6 - FortiSwitch 7.2 Sample Questions (Q53-Q58):
NEW QUESTION # 53
Which statement about the use of the switch port analyzer (SPAN) packet capture method is true?
- A. SPAN can be configured only on a standalone FortiSwitch.
- B. Mirrored traffic can be sent across multiple switches.
- C. Traffic on the management interface can be mirrored and captured by the monitoring device.
- D. The monitoring device must be connected to the same switch where the traffic is being mirrored
Answer: B
Explanation:
The correct statement about using the Switch Port Analyzer (SPAN) packet capture method on FortiSwitch is that "Mirrored traffic can be sent across multiple switches (A)." This feature allows for extensive traffic analysis as it enables network administrators to configure SPAN sessions that span across different switches, thereby providing the capability to monitor traffic across a broad segment of the network infrastructure.
NEW QUESTION # 54
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)
- A. Switch 1. Switch 2, and Switch 3 are seen as one MCLAG peer group
- B. Switch 3 and switch 4 are seen as one MCLAG switch client
- C. Switch 3 and Switch 4 uplinks are treated as single interfaces.
- D. Switch 1 and Switch 2 both seen as one single switch.
Answer: A,C
Explanation:
In the context of the topology provided and the concepts of LAG (Link Aggregation Group) and MCLAG (Multi-Chassis Link Aggregation), the spanning tree protocol's perspective can be summarized as follows:
Switch 1, Switch 2, and Switch 3 are seen as one MCLAG peer group (Option A): In this configuration, Switches 1 and 2 form a Multi-Chassis Link Aggregation Group (MCLAG) which effectively allows them to act as a single logical entity from the perspective of downstream switches (in this case, Switch 3). This grouping enhances fault tolerance and bandwidth by pooling the link resources of the two switches.
Switch 3 and Switch 4 uplinks are treated as single interfaces (Option B): This option suggests that the connections between Switch 3 and Switch 4 (presumably using LAG) are perceived by the spanning tree protocol as a single logical connection. This perception is due to the LAG configuration, which combines multiple network cables/ports into a single logical link to provide redundancy and increase bandwidth.
Reference:
The use of LAG and MCLAG is well-documented in networking literature and Fortinet's own documentation, as these technologies are commonly employed to enhance redundancy and bandwidth. Fortinet's implementation of these protocols is designed to maintain compatibility with standard networking protocols, including Spanning Tree Protocol (STP).
NEW QUESTION # 55
Exhibit.
port24 is the only uplink port connected to the network where access to FortiSwitch management services is possible. However, FortiSwitch is still not accessible on the management interface. Which two actions should you take to fix the issue and access FortiSwitch? (Choose two.)
- A. You must add VLAN ID 200 to the allowed VLANS on internal.
- B. You must add port24 native VLAN as an allowed VLAN on internal.
- C. You should use VLAN ID 4094 as the native VLAN on port24.
- D. You must allow VLAN ID 4094 on port24, if management traffic is tagged.
Answer: B,D
Explanation:
To enable access to the FortiSwitch management interface from the network, certain configuration adjustments need to be made, particularly considering the VLAN settings displayed in the exhibit:
Adding port24 native VLAN to the allowed VLANs on internal (Option A): The management VLAN (VLAN 4094 in this case, as it is set as the native VLAN on the 'internal' interface of the FortiSwitch) must be included in the allowed VLANs on the interface that provides management connectivity. Since port24 is set with a different native VLAN (VLAN 100), VLAN 4094 (the management VLAN) should be allowed through to ensure connectivity.
Allow VLAN ID 4094 on port24 if management traffic is tagged (Option C): Management traffic is tagged on VLAN 4094. Since port24 is connected to the network and serves as an uplink, allowing VLAN 4094 ensures that management traffic can reach the management interface of the FortiSwitch through this port.
The changes align with Fortinet's best practices for setting up management VLANs and ensuring they are permitted on the relevant switch ports for proper management traffic flow.
Reference:
FortiGate Infrastructure and Security 7.2 Study Guides
Best practices for VLAN configurations in Fortinet's technical documentation
NEW QUESTION # 56
Refer to the configuration:
Which two conditions does FortiSwitch need to meet to successfully configure the options shown in the exhibit above? (Choose two.)
- A. The FortiSwitch model is equipped with a maximum of 54 interfaces
- B. The split port can be assigned to a native VLAN.
- C. FortiSwitch would need to be rebooted.
- D. The Dort full speed prior to the split was 100G QSFP+.
Answer: A,C
NEW QUESTION # 57
Refer to the exhibits
Traffic arriving on port2 on FortiSwitch is tagged with VLAN ID 10 and destined for PC1 connected on port1. PC1 expects to receive traffic untagged from port1 on FortiSwitch.
Which two configurations can you perform on FortiSwitch to ensure PC1 receives untagged traffic on port1? (Choose two.)
- A. Remove VLAN 10 from the allowed VLANs and add it to untagged VLANs on port1.
- B. Add VLAN ID 10 as a member of the untagged VLANs on port1.
- C. Add the MAC address of PCI as a member of VLAN 10.
- D. Enable Private VLAN on VLAN 10 and add VLAN 20 as an isolated VLAN.
Answer: B,C
Explanation:
The two reasons why port1 can be shut down are loop guard protection and Spanning Tree Protocol (STP).
Loop guard protection: This is a feature that helps to prevent switching loops in a network.expand_more A loop guard can be configured on a port to monitor for specific traffic patterns that indicate a loop. If loop guard protection detects a loop, it will shut down the port to prevent the loop from causing problems.
STP: STP is a protocol that helps to prevent switching loops.expand_more When multiple paths exist between two network devices, STP will block all but one of the paths, creating a loop-free topology.expand_more If STP detects a loop, it will shut down the ports that are involved in the loop.
In the exhibit, both ports 1 and 2 are configured with the same native VLAN 10. This configuration could create a switching loop if both ports are connected to devices on the same network segment. If a loop occurs, loop guard protection or STP could shut down port1 to prevent the loop from causing problems.
Reference:
Fortinet FortiSwitch 7.2 Administration Guide https://docs.fortinet.com/document/fortigate/7.4.3/administration-guide/954635/getting-started
NEW QUESTION # 58
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