NSE5_FSW_AD-7.6資格関連題 & NSE5_FSW_AD-7.6日本語版トレーリング

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Fortinet NSE5_FSW_AD-7.6 認定試験の出題範囲:

トピック出題範囲
トピック 1
  • 導入と管理:この領域では、マルチテナント環境を含む、サポートされているトポロジーにおけるFortiSwitchのプロビジョニングと導入について説明します。適切な設定、拡張性、および集中管理を重視します。
トピック 2
  • レイヤ2の制御とセキュリティ:このセクションでは、スイッチドネットワークを保護するためのポートセキュリティ、フィルタリング、なりすまし対策、ACL、セキュリティプロファイル、VLANセキュリティメカニズムなどのレイヤ2セキュリティ機能に焦点を当てます。
トピック 3
  • 監視とトラブルシューティング:この分野では、パケットキャプチャ方法、FortiLinkのトラブルシューティング、およびトラフィックの監視とネットワーク問題の解決に使用される診断ツールについて説明します。
トピック 4
  • FortiSwitchの概念:このドメインでは、VLAN構成、QoS、LLDP-MED、スタッキング、スイッチングとルーティング、ループ防止のためのSTP、ポートとトランシーバーの構成など、FortiSwitchのコア機能を扱います。基本的なスイッチング操作とネットワーク統合に重点を置いています。

>> NSE5_FSW_AD-7.6資格関連題 <<

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Fortinet NSE 5 - FortiSwitch 7.6 Administrator 認定 NSE5_FSW_AD-7.6 試験問題 (Q115-Q120):

質問 # 115
What does the switchauto-networksetting control on FortiSwitch? (Choose one answer)

正解:B

解説:
According to theFortiSwitchOS 7.6 Administration Guideand theFortiSwitch 7.6 Study Guide, the auto- network setting (configured via config switch auto-network) is a global feature introduced to simplify the initial deployment of switches. Starting inFortiSwitchOS 7.6.0and continuing through7.6, this feature isenabled by defaulton all new and factory-reset units.1 The primary function of theauto-networksetting is to facilitate theautomatic discovery of the FortiGate and the establishment of the FortiLink interface (Option B). When enabled, the switch automatically scans its physical ports to detect a management entity, such as a FortiGate controller. This " zero-touch " discovery mechanism allows the switch to identify the correct uplink ports and automatically configure them as members of theFortiLinkfabric without manual CLI or GUI intervention.
Furthermore, the documentation notes that auto-network also managesauto-topology, which allows two switches to automatically form anInter-Switch Link (ISL)trunk between them.2This includes setting the management VLAN (typically VLAN 4094) and ensuring that DHCP snooping is trusted on these discovered links.3If an administrator intends to use the switch in a strictly standalone mode without any auto-discovery or FortiLink features, the documentation specifies that they must manually disable the auto-network status and the auto-fortilink-discovery global settings to prevent the switch from attempting to join a managed fabric.
4
Regarding other options:Option Arefers to Dynamic Port Policy or NAC features.Option Cis a standard STP configuration unrelated to the auto-network discovery suite.Option Dis a broader management capability that depends on successful network discovery but is not the specific control point for the auto-network setting.


質問 # 116
Exhibit.

What conditions does a FortiSwitch need to have to successfully configure the options shown in the exhibit above? (Choose two.)

正解:C、D

解説:
Regarding the configuration of a FortiSwitch to split a port into multiple smaller interfaces:
* The CLI commands are enabling a split port into four 10Gbps interfaces (Option B): The command shown in the exhibit is typically used to configure a high-speed port (like a 40Gbps or 100Gbps interface) to be divided into smaller, independent 10Gbps interfaces. This feature allows more flexible use of the switch's physical resources.
* The port full speed prior to the split was 100G SFP+ (Option C): Given the context of splitting the port into multiple 10Gbps interfaces, the original port configuration likely supported a high-speed transceiver such as 100G SFP+. This would make it technically feasible to divide the interface into multiple 10Gbps channels, enhancing connectivity options without requiring additional physical interfaces.
These configurations and capabilities are typical in modern network setups, especially in environments requiring high density and flexibility in connectivity, allowing network administrators to optimize physical infrastructure efficiently.


質問 # 117
Refer to the exhibit.

You configured Switched Port Analyzer (SPAN) to monitor traffic from a source port on FortiSwitch 1, but the monitoring device is connected to FortiSwitch 2. After port mirroring configuration on FortiSwitch 1, the monitoring device is not receiving any mirrored traffic.
What is the most likely reason the mirrored traffic is not reaching the monitoring device? (Choose one answer)

正解:A

解説:
Comprehensive and Detailed Explanation From Exact Extract of knowledge of FortiAnalyzer 7.6 Study guide documents:
* Standard SPAN Limitation: Switched Port Analyzer (SPAN) is a local port mirroring technology. By design, SPAN copies traffic from one or more source ports (or VLANs) to a destination port on the same physical switch.
* Traffic Forwarding: Standard SPAN traffic is not encapsulated and does not have the necessary headers to be routed or switched across a network fabric or trunk links between multiple switches.
Therefore, if the source port is on FortiSwitch 1 and the monitoring device is on FortiSwitch 2, the mirrored frames will not reach the destination.
* Alternative Solutions: To monitor traffic across multiple switches (multi-hop), technologies such as Remote SPAN (RSPAN)orEncapsulated Remote SPAN (ERSPAN)must be used. RSPAN uses a specific VLAN to carry the mirrored traffic across switches, while ERSPAN encapsulates the traffic in GRE packets so it can be routed across Layer 3 boundaries.
* Troubleshooting Conclusion: Since the scenario describes a standard SPAN configuration and the traffic is failing to traverse from FortiSwitch 1 to FortiSwitch 2, the most likely reason is that basic SPAN does not support forwarding mirrored traffic across multiple switches.


質問 # 118
Which statement about 802.1X security profiles using MAC-based authentication mode is true?

正解:D

解説:
Pag 232, FortiSwitch_7.6_Study_Guide-Online " However, if you want to authenticate each device behind a port, and optionally, grant each device a different access level based on the credentials provided, then MAC- based is required. " According to theFortiSwitchOS 7.6 Administration Guideand theFortiLink Guide (FortiOS 7.6), FortiSwitch supports two primary modes for 802.1X authentication:port-basedandMAC-based.
In802.1X port-based authentication, once a single supplicant (user or device) successfully authenticates, the physical port is transitioned to an " authorized " state, allowing all traffic from any device connected to that port (e.g., through a hub or unmanaged switch) to pass through. This is summarized by Option D, which is incorrect for MAC-based mode.
In contrast,802.1X MAC-based authentication(Option B) treats each device ' s MAC address as a distinct session. The switch maintains a table of authenticated MAC addresses for each port and applies security policies to each one individually. This granular approach allows the FortiSwitch to grantdifferent access levelsto different devices on the same physical port. For example, a laptop might be assigned to a corporate VLAN with a specific Dynamic Access Control List (DACL), while an IP phone on the same port is assigned to a Voice VLAN.
Furthermore, FortiSwitchOS 7.6 documentation specifies that MAC-based mode can support up to20 devices per port. Each device must provide its own credentials (or be validated via MAC Authentication Bypass), enabling the switch to enforce specific security attributes-such as VLAN IDs, QoS marking, and ingress ACLs-tailored to each uniquely identified device. While the switch typically communicates with aRADIUS server(Option C) for these credentials, MAC-based mode ' s primary functional advantage is this individual session management and authorization flexibility.


質問 # 119
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)

正解:B、C

解説:
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.


質問 # 120
......

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