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In order to meet different needs of the candidates, three versions for NSE6_FSW-7.2 exam materials are available. You can choose the one you prefer for your training. NSE6_FSW-7.2 PDF version is printable, and you can print them into hard one if you like. NSE6_FSW-7.2 Soft test engine can install in more than 200 personal computers, it also support MS operating system. NSE6_FSW-7.2 Online Test engine can is convenient and easy to learn, it supports all web browsers, and you can have a general review of what you have learned through this version.
Fortinet NSE6_FSW-7.2 Exam is a challenging exam that requires a deep understanding of Fortinet network security technology. Candidates must have a good grasp of networking concepts and protocols, as well as experience with FortiSwitch 7.2 switches. They must be able to troubleshoot network issues and configure switches to optimize network performance.
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Fortinet NSE6_FSW-7.2 exam is administered by Fortinet, a leading provider of network security solutions. NSE6_FSW-7.2 exam is computer-based and consists of multiple-choice questions. NSE6_FSW-7.2 exam duration is 120 minutes, and a passing score of 70% is required to obtain certification. NSE6_FSW-7.2 exam can be taken at Pearson VUE test centers worldwide.
Fortinet NSE6_FSW-7.2 exam covers a range of topics, including FortiSwitch configuration and management, VLANs, STP, RSTP, MSTP, link aggregation, multicast, and port security. NSE6_FSW-7.2 Exam also covers advanced technologies such as FortiLink, FortiGate Integration, and FortiTelemetry. Candidates must have a deep understanding of these topics to pass the exam and earn the certification.
NEW QUESTION # 45
Which statement about the IGMP snooping querier when enabled on a VLAN is true?
Answer: B
NEW QUESTION # 46
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.)
Answer: A,B
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 # 47
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:
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 # 48
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?
Answer: C
NEW QUESTION # 49
Which is a requirement to enable SNMP v2c on a managed FortiSwitch?
Answer: C
NEW QUESTION # 50
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